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Delete biofinalset.json

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- [
2
- {
3
- "Title": "Prokaryotes ",
4
- "Link": "UHw6xCnv1UU"
5
- },
6
- {
7
- "Title": "Eukaryotes ",
8
- "Link": "LYvccVz5tew"
9
- },
10
- {
11
- "Title": "Autotrophs and Heterotrophs ",
12
- "Link": "FVfEThlRKq4"
13
- },
14
- {
15
- "Title": "Cell Nucleus",
16
- "Link": "QV3mOU84QNc"
17
- },
18
- {
19
- "Title": "Cell Membrane and Fluid Mosaic Model",
20
- "Link": "5ArOofhOAwI"
21
- },
22
- {
23
- "Title": "Electrochemical Gradient",
24
- "Link": "M66B7D5WwXk"
25
- },
26
- {
27
- "Title": "Cell Membrane Transport ",
28
- "Link": "hpECyJbtQ38"
29
- },
30
- {
31
- "Title": "Pinocytosis, Phagocytosis and Receptor-Mediated Endocytosis",
32
- "Link": "9tOGgB_mJPg"
33
- },
34
- {
35
- "Title": "Microfilaments, Intermediate Filaments, and Microtubules ",
36
- "Link": "kHLspuHXvK8"
37
- },
38
- {
39
- "Title": "Centrosome and Centrioles",
40
- "Link": "TE_n2p6dpUo"
41
- },
42
- {
43
- "Title": "Endoplasmic Reticulum and Golgi Apparatus",
44
- "Link": "3vBnZKRmikU"
45
- },
46
- {
47
- "Title": "Mitochondria ",
48
- "Link": "rPKywyTvua4"
49
- },
50
- {
51
- "Title": "Vacuoles, Lysosomes, and Microbodies ",
52
- "Link": "wyl9AHk_SWU"
53
- },
54
- {
55
- "Title": "Tight Junctions, Gap Junctions, and Desmosomes",
56
- "Link": "wGQabqD3HlI"
57
- },
58
- {
59
- "Title": "Tissue Types and Extracellular Matrix ",
60
- "Link": "Eev9Ui_8YPI"
61
- },
62
- {
63
- "Title": "Prokaryotic vs. Eukaryotic Flagella ",
64
- "Link": "8porJA2wrFU"
65
- },
66
- {
67
- "Title": "Bacterial Cell Envelope, Gram Positive and Gram Negative Bacteria ",
68
- "Link": "HvqRqqSLGvk"
69
- },
70
- {
71
- "Title": "Viruses, Lytic Cycle and Lysogenic Cycle ",
72
- "Link": "QHZ1Ir_UaZQ"
73
- },
74
- {
75
- "Title": "RNA and DNA Viruses ",
76
- "Link": "SMOO2WaMTiI"
77
- },
78
- {
79
- "Title": "Life Cycle of HIV ",
80
- "Link": "0hd1IuAPRSQ"
81
- },
82
- {
83
- "Title": "Introduction to Immune System ",
84
- "Link": "bW-eEBxJYaM"
85
- },
86
- {
87
- "Title": "Leukocytes of Immune System ",
88
- "Link": "ZQSzIOMRZMQ"
89
- },
90
- {
91
- "Title": "Innate (Non-specific) Immune System ",
92
- "Link": "os1oh8AprYw"
93
- },
94
- {
95
- "Title": "Interferons",
96
- "Link": "X2-LZ6LeqxA"
97
- },
98
- {
99
- "Title": "Adaptive Immune System ",
100
- "Link": "Kr9WsHUSnp4"
101
- },
102
- {
103
- "Title": "Classical Pathway of Complement System ",
104
- "Link": "ER0hzqJnt_s"
105
- },
106
- {
107
- "Title": "Alternative Pathway of Complement System ",
108
- "Link": "XW-qMHAUqUY"
109
- },
110
- {
111
- "Title": "Major Histocompatibility Complex ",
112
- "Link": "yDAGxVxY-L8"
113
- },
114
- {
115
- "Title": "Antibodies ",
116
- "Link": "H3LXXq05eko"
117
- },
118
- {
119
- "Title": "Activation of Lymphocytes ",
120
- "Link": "Dvs1lN_uKXc"
121
- },
122
- {
123
- "Title": "Antigen Presenting Cells ",
124
- "Link": "TadJkUCJLHo"
125
- },
126
- {
127
- "Title": "Mechanism of B-lymphocytes ",
128
- "Link": "pZLDjmfaJ0Y"
129
- },
130
- {
131
- "Title": "Alpha Beta T-cells ",
132
- "Link": "QLtPj0o5wsI"
133
- },
134
- {
135
- "Title": "Gamma Delta T-cells ",
136
- "Link": "NCNi9oDdxbw"
137
- },
138
- {
139
- "Title": "Primary vs. Secondary Immune Response ",
140
- "Link": "e2gT4nnETpc"
141
- },
142
- {
143
- "Title": "Immunization, Active Immunity and Passive Immunity",
144
- "Link": "3w9ylCxFAa0"
145
- },
146
- {
147
- "Title": "Grafting, Organ Transplants and Immunosuppression",
148
- "Link": "0y1UOq7EIMg"
149
- },
150
- {
151
- "Title": "ABO Blood Types ",
152
- "Link": "LAFvwRkeUQ8"
153
- },
154
- {
155
- "Title": "ABO Blood Types Part II",
156
- "Link": "2iEg1ZPY0jU"
157
- },
158
- {
159
- "Title": "Rh Factor and Rh Incompatibility",
160
- "Link": "1dpw8yoggYY"
161
- },
162
- {
163
- "Title": "Autoimmunity",
164
- "Link": "3XszVyYWZJE"
165
- },
166
- {
167
- "Title": "Innate and Adaptive Immune Systems ",
168
- "Link": "e2TCjFPn2g8"
169
- },
170
- {
171
- "Title": "HIV, AIDS, and Helper T-Cells ",
172
- "Link": "QqoezqZIA6c"
173
- },
174
- {
175
- "Title": "Allergens and Allergic Reactions ",
176
- "Link": "iicHiSbEx8U"
177
- },
178
- {
179
- "Title": "Immunosurveillance and Cancer Cells ",
180
- "Link": "oJnU20cwg8Q"
181
- },
182
- {
183
- "Title": "Lymphatic System ",
184
- "Link": "BOCv_WhLcD8"
185
- },
186
- {
187
- "Title": "Enzymes ",
188
- "Link": "3UlxoNrDtNM"
189
- },
190
- {
191
- "Title": "Cofactors, Lock-and-Key and Induced Fit Model ",
192
- "Link": "qO2DvzAvnPY"
193
- },
194
- {
195
- "Title": "Enzyme Activity",
196
- "Link": "FFViDx5TxUM"
197
- },
198
- {
199
- "Title": "Reversible and Irreversible Enzyme Inhibition",
200
- "Link": "ixDdTbeby6s"
201
- },
202
- {
203
- "Title": "Allosteric Regulation of Enzymes ",
204
- "Link": "ttiduKb_DQ4"
205
- },
206
- {
207
- "Title": "Proteolytic Cleavage and Reversible Covalent Modification ",
208
- "Link": "ifPhVmNRReg"
209
- },
210
- {
211
- "Title": "Glycolysis ",
212
- "Link": "bfhKGPRCu2o"
213
- },
214
- {
215
- "Title": "Pyruvate Decarboxylation Reaction ",
216
- "Link": "FJBNkXAajrk"
217
- },
218
- {
219
- "Title": "Citric Acid Cycle ",
220
- "Link": "nurJmumQ8FQ"
221
- },
222
- {
223
- "Title": "Electron Transport Chain ",
224
- "Link": "yil3EnXtyvI"
225
- },
226
- {
227
- "Title": "Summary of Aerobic Respiration ",
228
- "Link": "Jztm2tsAdtw"
229
- },
230
- {
231
- "Title": "Alcohol and Lactic Acid Fermentation ",
232
- "Link": "mQKTDw9Yeaw"
233
- },
234
- {
235
- "Title": "NAD+ and FAD+ Cofactors ",
236
- "Link": "eL_iVLHT9Q0"
237
- },
238
- {
239
- "Title": "Triglyceride Metabolism ",
240
- "Link": "BIHT5Ay-t-g"
241
- },
242
- {
243
- "Title": "Cell Cycle and Interphase ",
244
- "Link": "gBj_ZXCTa2U"
245
- },
246
- {
247
- "Title": "Mitosis and Cytokinesis",
248
- "Link": "XFdBvgykVCc"
249
- },
250
- {
251
- "Title": "Meiosis I ",
252
- "Link": "ZBqEtIoQmQY"
253
- },
254
- {
255
- "Title": "Meiosis II ",
256
- "Link": "9gQS-FnwmxI"
257
- },
258
- {
259
- "Title": "Nondisjunction of Chromosomes ",
260
- "Link": "a0-nmZz3r8g"
261
- },
262
- {
263
- "Title": "Conjugation, Transformation and Transduction ",
264
- "Link": "MR7yvRDL5iQ"
265
- },
266
- {
267
- "Title": "Spermatogenesis",
268
- "Link": "d5cQreR9h20"
269
- },
270
- {
271
- "Title": "Oogenesis",
272
- "Link": "Y6s3obXg8Gs"
273
- },
274
- {
275
- "Title": "Fertilization",
276
- "Link": "ze01boViRsk"
277
- },
278
- {
279
- "Title": "Anatomy of Reproductive Organs ",
280
- "Link": "c55qrVbwZTk"
281
- },
282
- {
283
- "Title": "Anatomy and Function of Female Breasts ",
284
- "Link": "ICQQC2KWinM"
285
- },
286
- {
287
- "Title": "The Menstrual Cycle ",
288
- "Link": "RQQ4KuH5XME"
289
- },
290
- {
291
- "Title": "Hormones in Menstrual Cycle",
292
- "Link": "EooU0vkt-r0"
293
- },
294
- {
295
- "Title": "Asexual Reproduction ",
296
- "Link": "6zEo0MmEevI"
297
- },
298
- {
299
- "Title": "Introduction to Embryological Development",
300
- "Link": "VxmTBhB2HkA"
301
- },
302
- {
303
- "Title": "Cleavage and Blastulation ",
304
- "Link": "W6Vwojq5b98"
305
- },
306
- {
307
- "Title": "Cell Determination and Differentiation",
308
- "Link": "W8xx975RtP4"
309
- },
310
- {
311
- "Title": "Morphogenesis",
312
- "Link": "dMkvezo9t2c"
313
- },
314
- {
315
- "Title": "Apoptosis",
316
- "Link": "aemXc6AtpR0"
317
- },
318
- {
319
- "Title": "Implantation of Blastocyst ",
320
- "Link": "hGEXLmPU5mw"
321
- },
322
- {
323
- "Title": "Gastrulation",
324
- "Link": "w9tJ7UiLrQs"
325
- },
326
- {
327
- "Title": "Neurulation ",
328
- "Link": "7z_8HYV41Bc"
329
- },
330
- {
331
- "Title": "Organogenesis",
332
- "Link": "jbkHi2UGMyU"
333
- },
334
- {
335
- "Title": "Extraembryonic Membranes ",
336
- "Link": "czjfWCaa4Fw"
337
- },
338
- {
339
- "Title": "Development and Function of Placenta ",
340
- "Link": "S_Y2ZMVzl4o"
341
- },
342
- {
343
- "Title": "Human Gestation and Birth",
344
- "Link": "p_JccNhopuQ"
345
- },
346
- {
347
- "Title": "Factors Affecting Fetal Development ",
348
- "Link": "iAF4FhnrE7A"
349
- },
350
- {
351
- "Title": "Fetal Circulation",
352
- "Link": "CWwkC5g-vnY"
353
- },
354
- {
355
- "Title": "Fetal Circulation After Birth",
356
- "Link": "29Mg9cgm9k4"
357
- },
358
- {
359
- "Title": "Circulation in Fetal Heart ",
360
- "Link": "OJ6KmqxKIU8"
361
- },
362
- {
363
- "Title": "Patent Ductus Arteriosus and Patent Foramen Oval ",
364
- "Link": "yjWjEORwQUU"
365
- },
366
- {
367
- "Title": "Gas Exchange in Placenta, Fetal Hemoglobin and Double Bohr Effect ",
368
- "Link": "EwvzSJUFMOE"
369
- },
370
- {
371
- "Title": "Introduction to DNA",
372
- "Link": "sLdJTcBnO3c"
373
- },
374
- {
375
- "Title": "DNA Replication: Helices and Unwinding",
376
- "Link": "9unpqe8087E"
377
- },
378
- {
379
- "Title": "DNA Replication: Leading and Lagging Strand ",
380
- "Link": "gxeak5TuRIk"
381
- },
382
- {
383
- "Title": "Summary of DNA Replication",
384
- "Link": "WONqRyoi49A"
385
- },
386
- {
387
- "Title": "mRNA, rRNA, and tRNA ",
388
- "Link": "dcvtHSFzKOQ"
389
- },
390
- {
391
- "Title": "RNA Transcription",
392
- "Link": "IsMHhnGILwg"
393
- },
394
- {
395
- "Title": "Post-transcriptional modifications of mRNA",
396
- "Link": "ertPYuifrQM"
397
- },
398
- {
399
- "Title": "The Genetic Code",
400
- "Link": "9OvzIpQhXTw"
401
- },
402
- {
403
- "Title": "Translation: Ribosomes and Initiation",
404
- "Link": "1fUswlOwslw"
405
- },
406
- {
407
- "Title": "Translation: Elongation and Termination",
408
- "Link": "5nMEpRG-az8"
409
- },
410
- {
411
- "Title": "Signal Sequences and Signal-Recognition Particles",
412
- "Link": "kp06l4zx7Pw"
413
- },
414
- {
415
- "Title": "Post Translational Modifications ",
416
- "Link": "PMsxwRCliBE"
417
- },
418
- {
419
- "Title": "Law of Dominance ",
420
- "Link": "OiZEfMe8NJk"
421
- },
422
- {
423
- "Title": "Law of Segregation",
424
- "Link": "FG3S2qxy8GE"
425
- },
426
- {
427
- "Title": "Genes, Alleles and Loci on Chromosomes",
428
- "Link": "GUS9qmG1wY4"
429
- },
430
- {
431
- "Title": "Genotypes, Phenotypes and Punnett square ",
432
- "Link": "-zZf8GXVuiU"
433
- },
434
- {
435
- "Title": "Monohybrid Test Cross",
436
- "Link": "gpAzz8f5k9I"
437
- },
438
- {
439
- "Title": "Test Cross",
440
- "Link": "0IGXRMEgI4I"
441
- },
442
- {
443
- "Title": "Sum and Product Rule in Genetics ",
444
- "Link": "QTGAk6hScGI"
445
- },
446
- {
447
- "Title": "Sum and Product Rule in Genetics Part II",
448
- "Link": "Qeu2-VKpEgc"
449
- },
450
- {
451
- "Title": "Genetic Probability Example ",
452
- "Link": "wmVPqpMyyAw"
453
- },
454
- {
455
- "Title": "Dihybrid Cross ",
456
- "Link": "y9P3WEalvkM"
457
- },
458
- {
459
- "Title": "Dihybrid Cross Part II",
460
- "Link": "mTO8xrGRbo8"
461
- },
462
- {
463
- "Title": "Law of Independent Assortment ",
464
- "Link": "VjPjyLwcYYQ"
465
- },
466
- {
467
- "Title": "Linked Genes, Crossing Over and Genetic Recombination",
468
- "Link": "99A6v-5_sFg"
469
- },
470
- {
471
- "Title": "Linked Genes",
472
- "Link": "B3GDK6mWaGU"
473
- },
474
- {
475
- "Title": "Linked Genes Part II",
476
- "Link": "vtd0GTJrslI"
477
- },
478
- {
479
- "Title": "Non-linked Genes and Offspring Distribution",
480
- "Link": "-RFNS5Xat1M"
481
- },
482
- {
483
- "Title": "Non-linked Genes and Offspring Distribution Part II",
484
- "Link": "FXPr0pI1_sI"
485
- },
486
- {
487
- "Title": "Gene Mapping, Percent Recombination and Map Units ",
488
- "Link": "asNgHpOuJmY"
489
- },
490
- {
491
- "Title": "Gene Mapping, Recombination and Map Units Part II",
492
- "Link": "exl4zSK0X4U"
493
- },
494
- {
495
- "Title": "Determining Gene Order ",
496
- "Link": "UKf9lcVmpK4"
497
- },
498
- {
499
- "Title": "Sex Chromosomes",
500
- "Link": "a9qrCtDeXf4"
501
- },
502
- {
503
- "Title": "Colorblind Genetics Example ",
504
- "Link": "e12A6y4QeyU"
505
- },
506
- {
507
- "Title": "Incomplete Dominance",
508
- "Link": "vIh-hiGQwR4"
509
- },
510
- {
511
- "Title": "Multiple Alleles and Codominance",
512
- "Link": "jnx16oERTg0"
513
- },
514
- {
515
- "Title": "Pleiotropy and Epistasis ",
516
- "Link": "XEltUZ0_gDQ"
517
- },
518
- {
519
- "Title": "Polygenic Inheritance",
520
- "Link": "tKnOvPtwZL4"
521
- },
522
- {
523
- "Title": "Pedigree Analysis",
524
- "Link": "Wgmgt_Ph6Ko"
525
- },
526
- {
527
- "Title": "Pedigree Analysis of Sex Linked Recessive Traits ",
528
- "Link": "9GpCOqFxjmw"
529
- },
530
- {
531
- "Title": "Pedigree Analysis for Autosomal Dominant Traits ",
532
- "Link": "TFhQFbYDwEw"
533
- },
534
- {
535
- "Title": "Pedigree Analysis for Autosomal Dominant Traits (Part II) ",
536
- "Link": "WzQX5f-zXyY"
537
- },
538
- {
539
- "Title": "Aneuploidy and Nondisjunction ",
540
- "Link": "BxmaH5LiIkg"
541
- },
542
- {
543
- "Title": "Aneuploidy and Nondisjunction (Part II) ",
544
- "Link": "WF_rsMh9YSU"
545
- },
546
- {
547
- "Title": "Chromosomal Depletion, Inversion, Duplication and Translocation ",
548
- "Link": "wEKQ1gQxR88"
549
- },
550
- {
551
- "Title": "Down syndrome (Trisomy 21 and Translocation)",
552
- "Link": "MLWs3h7Gf60"
553
- },
554
- {
555
- "Title": "Sex Chromosomal Abnormalities ",
556
- "Link": "gdXHq8FrfHI"
557
- },
558
- {
559
- "Title": "Autosomal Recessive Diseases",
560
- "Link": "t2QbbnOmc4w"
561
- },
562
- {
563
- "Title": "Point Mutations (Base-Pair Substitutions)",
564
- "Link": "aFwxHnuOGks"
565
- },
566
- {
567
- "Title": "Insertion, Deletions and Frameshift Mutations",
568
- "Link": "wv73LL6OaKU"
569
- },
570
- {
571
- "Title": "Summary of Gene Mutations ",
572
- "Link": "vfp0JUCTbdE"
573
- },
574
- {
575
- "Title": "Restriction Enzymes and Recombinant DNA",
576
- "Link": "mMIRBNUuX6I"
577
- },
578
- {
579
- "Title": "Gene Library",
580
- "Link": "vWhyUEzhvwE"
581
- },
582
- {
583
- "Title": "cDNA Library",
584
- "Link": "lXOVdIFPyjs"
585
- },
586
- {
587
- "Title": "Polymerase Chain Reaction",
588
- "Link": "HmkNzMrhIFQ"
589
- },
590
- {
591
- "Title": "Restriction Map and Gel Electrophoresis",
592
- "Link": "afdP3eWFj3k"
593
- },
594
- {
595
- "Title": "Gene Regulation and the Lac Operon",
596
- "Link": "UXI3_tbsi0E"
597
- },
598
- {
599
- "Title": "Tryptophan Operon",
600
- "Link": "O4SdDuBnoW4"
601
- },
602
- {
603
- "Title": "Gene Regulation in Eukaryotes ",
604
- "Link": "fabBvmzGBYw"
605
- },
606
- {
607
- "Title": "Types of Macromolecules ",
608
- "Link": "BkukWlEd_5Q"
609
- },
610
- {
611
- "Title": "Epithelial Tissue",
612
- "Link": "ON5ZNcaM4Gs"
613
- },
614
- {
615
- "Title": "Introduction to Digestive System ",
616
- "Link": "R6lTFi3lhOM"
617
- },
618
- {
619
- "Title": "Oral Cavity, Pharynx, and Esophagus",
620
- "Link": "5PteyUvJma8"
621
- },
622
- {
623
- "Title": "Stomach",
624
- "Link": "j7wTeakwo_g"
625
- },
626
- {
627
- "Title": "Small Intestine",
628
- "Link": "ry0ML_DZnuQ"
629
- },
630
- {
631
- "Title": "Digestive Enzymes of Small Intestine and Pancreas ",
632
- "Link": "0HsW6LVdRQ4"
633
- },
634
- {
635
- "Title": "Emulsification of Fats ",
636
- "Link": "Zqvr20ZOtvM"
637
- },
638
- {
639
- "Title": "Absorption of Carbohydrates by Small Intestine",
640
- "Link": "b6_IMnoAv3k"
641
- },
642
- {
643
- "Title": "Absorption of Proteins in Small Intestine",
644
- "Link": "S21NMwtsRFA"
645
- },
646
- {
647
- "Title": "Large Intestine",
648
- "Link": "GEfrHDQSgG8"
649
- },
650
- {
651
- "Title": "Absorption of Fats in Small Intestine ",
652
- "Link": "P1jiWxmqS-o"
653
- },
654
- {
655
- "Title": "Structure of the Nephron",
656
- "Link": "WTC1zXPotUs"
657
- },
658
- {
659
- "Title": "Structure of the Kidney",
660
- "Link": "ZwnEIooqpgk"
661
- },
662
- {
663
- "Title": "Filtration in Renal Corpuscle",
664
- "Link": "GHBDhMsUjWM"
665
- },
666
- {
667
- "Title": "Proximal Convoluted Tubule ",
668
- "Link": "IQGvjDDnrkw"
669
- },
670
- {
671
- "Title": "Countercurrent Multiplier System and Loop of Henle",
672
- "Link": "X0vVJecAFTo"
673
- },
674
- {
675
- "Title": "Distal Convoluted Tubule",
676
- "Link": "0rIQh4100bQ"
677
- },
678
- {
679
- "Title": "Collecting Duct ",
680
- "Link": "uEKe33kkup0"
681
- },
682
- {
683
- "Title": "Renal Clearance, Renal Plasma Flow and Glomerular Filtration Rate ",
684
- "Link": "yFx5Kqu_T54"
685
- },
686
- {
687
- "Title": "Function of the Liver",
688
- "Link": "a6s6mlju3_8"
689
- },
690
- {
691
- "Title": "Structure of Skin",
692
- "Link": "hjhlGMOFSZQ"
693
- },
694
- {
695
- "Title": "Function of the Skin ",
696
- "Link": "sEqSFWjj2_Q"
697
- },
698
- {
699
- "Title": "Neuron Structure and Function",
700
- "Link": "-_uIDESvr6Y"
701
- },
702
- {
703
- "Title": "Resting Membrane Potential of Neuron",
704
- "Link": "M0JWkOnnOVw"
705
- },
706
- {
707
- "Title": "Initiation of Action Potential",
708
- "Link": "N8lFrHo0FkM"
709
- },
710
- {
711
- "Title": "Propagation of Action Potential",
712
- "Link": "KWIWemjaHJA"
713
- },
714
- {
715
- "Title": "Myelination and Saltatory Conduction ",
716
- "Link": "X4hl5hKDmHw"
717
- },
718
- {
719
- "Title": "Synaptic Terminal ",
720
- "Link": "rxhqKXvkYXU"
721
- },
722
- {
723
- "Title": "Secondary Messenger Systems ",
724
- "Link": "jpimow0N0BU"
725
- },
726
- {
727
- "Title": "Neuroglia ",
728
- "Link": "n7YCZZ_wg2U"
729
- },
730
- {
731
- "Title": "Introduction to Nervous System ",
732
- "Link": "IEGphXyKJgI"
733
- },
734
- {
735
- "Title": "Central Nervous System ",
736
- "Link": "m8V9fldkDv8"
737
- },
738
- {
739
- "Title": "Somatic Nervous System ",
740
- "Link": "pbzbVM5W-Ak"
741
- },
742
- {
743
- "Title": "Autonomic Nervous System ",
744
- "Link": "-rGZfOoZgzI"
745
- },
746
- {
747
- "Title": "Structure of the Human Eye",
748
- "Link": "1PGIXXuFu14"
749
- },
750
- {
751
- "Title": "Structure of the Human Ear ",
752
- "Link": "3LyWqpknNFQ"
753
- },
754
- {
755
- "Title": "Sarcomere ",
756
- "Link": "YaCELjR7vxw"
757
- },
758
- {
759
- "Title": "Structure of Skeletal Muscle ",
760
- "Link": "DfKKf89-dFI"
761
- },
762
- {
763
- "Title": "Contraction of Skeletal Muscle ",
764
- "Link": "UhSSqToeMsI"
765
- },
766
- {
767
- "Title": "The Motor Unit ",
768
- "Link": "kSABUj48Yls"
769
- },
770
- {
771
- "Title": "Cardiac Muscle ",
772
- "Link": "UaWv5vYpiFs"
773
- },
774
- {
775
- "Title": "Smooth Muscle ",
776
- "Link": "WA5ybT8Xtj8"
777
- },
778
- {
779
- "Title": "Action Potential vs. Muscle Construction Graphs",
780
- "Link": "cxj3y5KAl9E"
781
- },
782
- {
783
- "Title": "Action Potential of Cardiac Muscle ",
784
- "Link": "uUbgcqo_IOg"
785
- },
786
- {
787
- "Title": "Slow Oxidative, Fast Oxidative and Fast Glycolytic Muscles ",
788
- "Link": "L_R7XHqWW_w"
789
- },
790
- {
791
- "Title": "Introduction to Human Skeletal System ",
792
- "Link": "TL2oRHsrpzs"
793
- },
794
- {
795
- "Title": "Compact Bone Structure and Osteon System ",
796
- "Link": "PQpYZ0RcAKM"
797
- },
798
- {
799
- "Title": "Structure of Long Bones ",
800
- "Link": "dJnud23zv8c"
801
- },
802
- {
803
- "Title": "Bone Metabolism",
804
- "Link": "ZTBH61OQZTU"
805
- },
806
- {
807
- "Title": "Cartilage and Joints",
808
- "Link": "wPfoKaRXYd0"
809
- },
810
- {
811
- "Title": "Agonist-Antagonist Muscle Pairs ",
812
- "Link": "x48DZ-ixxMk"
813
- },
814
- {
815
- "Title": "Long Bones, Short Bones, Flat Bones, Irregular Bones ",
816
- "Link": "VXsYri-d4QE"
817
- },
818
- {
819
- "Title": "Introduction to Endocrine System ",
820
- "Link": "wKRXfbbH-U8"
821
- },
822
- {
823
- "Title": "Anterior Pituitary Gland",
824
- "Link": "pilwS8vbqGk"
825
- },
826
- {
827
- "Title": "Posterior Pituitary Gland",
828
- "Link": "oQwE6WJQMeM"
829
- },
830
- {
831
- "Title": "Thyroid Gland",
832
- "Link": "IA09d-zN-2Y"
833
- },
834
- {
835
- "Title": "Parathyroid Gland",
836
- "Link": "MycQU9qw5yI"
837
- },
838
- {
839
- "Title": "Adrenal Gland",
840
- "Link": "9o2dqeajWsI"
841
- },
842
- {
843
- "Title": "Islets of Langerhans ",
844
- "Link": "O0Qz62nbDvA"
845
- },
846
- {
847
- "Title": "Thymus ",
848
- "Link": "vZpFsOvIe_U"
849
- },
850
- {
851
- "Title": "Renin-angiotensin-Aldosterone System",
852
- "Link": "NMWaKdO76NQ"
853
- },
854
- {
855
- "Title": "Endocrine Ability of Heart, Kidney, Liver and Skin ",
856
- "Link": "BE-CfPkONmo"
857
- },
858
- {
859
- "Title": "Testes",
860
- "Link": "mRjG7lciWvw"
861
- },
862
- {
863
- "Title": "Ovaries",
864
- "Link": "csxZj8fDh7Y"
865
- },
866
- {
867
- "Title": "Placenta ",
868
- "Link": "UznR0DsqhXE"
869
- },
870
- {
871
- "Title": "Hypoglycemia and Hyperglycemia ",
872
- "Link": "WszJHxsdpnI"
873
- },
874
- {
875
- "Title": "Introduction to Cardiovascular System ",
876
- "Link": "wiy23SyIK-g"
877
- },
878
- {
879
- "Title": "Composition of Blood",
880
- "Link": "c2B6C-W_tIg"
881
- },
882
- {
883
- "Title": "Types of Blood Vessels ",
884
- "Link": "-zjUZjkNLsI"
885
- },
886
- {
887
- "Title": "Blood Pressure in Arteries, Veins, and Capillaries",
888
- "Link": "PTYwFQq4loI"
889
- },
890
- {
891
- "Title": "Compliance of Blood Vessels",
892
- "Link": "uhYnKRH8Gho"
893
- },
894
- {
895
- "Title": "Resistance of Blood Vessels and Volume Flow Rate ",
896
- "Link": "-QclTMSvm3U"
897
- },
898
- {
899
- "Title": "Structure of the Heart",
900
- "Link": "KwbqTHEnJw0"
901
- },
902
- {
903
- "Title": "Blood Flow in the Heart ",
904
- "Link": "vWUvsX1OvbQ"
905
- },
906
- {
907
- "Title": "Electrical Conduction in the heart ",
908
- "Link": "4o2nHfVMfC8"
909
- },
910
- {
911
- "Title": "Introduction to Electrocardiogram ",
912
- "Link": "O04d0hZ1ofo"
913
- },
914
- {
915
- "Title": "Major Arteries of Circulation System ",
916
- "Link": "XqCi3dk18pI"
917
- },
918
- {
919
- "Title": "Osmosis Osmotic pressure and Hydrostatic Pressure ",
920
- "Link": "2ukQlpNA6-s"
921
- },
922
- {
923
- "Title": "Exchange Across Capillaries ",
924
- "Link": "bmQDAM-q2OM"
925
- },
926
- {
927
- "Title": "Recycling of Red Blood Cells ",
928
- "Link": "DjmWmbzUogM"
929
- },
930
- {
931
- "Title": "Blood Clotting Cascade",
932
- "Link": "SPSvc7-1dec"
933
- },
934
- {
935
- "Title": "Blood Clotting Cascade (Part II)",
936
- "Link": "VJm1kaVQI9E"
937
- },
938
- {
939
- "Title": "Amplification of Blood Clotting ",
940
- "Link": "zGlW29VuSkA"
941
- },
942
- {
943
- "Title": "Introduction to Human Respiratory System",
944
- "Link": "CGVOWh20ufA"
945
- },
946
- {
947
- "Title": "Respiration in the Lungs ",
948
- "Link": "ke48zGU9fQw"
949
- },
950
- {
951
- "Title": "Protective Capabilities of Lungs ",
952
- "Link": "L_VDawZa9EI"
953
- },
954
- {
955
- "Title": "Alveolar Structure and Gas Exchange ",
956
- "Link": "JSZH0rcR9cg"
957
- },
958
- {
959
- "Title": "Surfactant in Alveoli and Surface Tension",
960
- "Link": "dmjXQ05cSXw"
961
- },
962
- {
963
- "Title": "Hemoglobin Cooperativity and Oxygen Dissociation Curve ",
964
- "Link": "XcupwWwfsz8"
965
- },
966
- {
967
- "Title": "Hemoglobin and Bohr Effect",
968
- "Link": "K_bkjbtzdAw"
969
- },
970
- {
971
- "Title": "Effect of Temperature on Hemoglobin Dissociation Curve",
972
- "Link": "sd0rkzgOFC0"
973
- },
974
- {
975
- "Title": "2,3 BPG and Hemoglobin",
976
- "Link": "vYyIdE_BlQc"
977
- },
978
- {
979
- "Title": "Carbon Monoxide and Hemoglobin",
980
- "Link": "Lsq-zyrzXxE"
981
- },
982
- {
983
- "Title": "Chloride Shift in Red Blood Cells ",
984
- "Link": "3J3uaVPWmOY"
985
- },
986
- {
987
- "Title": "Factors that Affect Hemoglobin Dissociation curve",
988
- "Link": "mrETSLgRYeE"
989
- },
990
- {
991
- "Title": "Myoglobin Dissociation Curve ",
992
- "Link": "B8XmUpjCtik"
993
- },
994
- {
995
- "Title": "Lung Capacity and Volume ",
996
- "Link": "chMedJwp4wo"
997
- },
998
- {
999
- "Title": "Properties of Water and Hydrophobic Effect ",
1000
- "Link": "3vy__KvTi6I"
1001
- },
1002
- {
1003
- "Title": "Properties of Water and Hydrophobic Effect Part II",
1004
- "Link": "fuVbeVapafk"
1005
- },
1006
- {
1007
- "Title": "Intramolecular and Intermolecular Forces ",
1008
- "Link": "U_W-Ee3h12o"
1009
- },
1010
- {
1011
- "Title": "Intramolecular and Intermolecular Forces (Part II)",
1012
- "Link": "6WTQFiWUUgc"
1013
- },
1014
- {
1015
- "Title": "First and Second Law of Thermodynamics ",
1016
- "Link": "1kzsLGq3-14"
1017
- },
1018
- {
1019
- "Title": "Gibbs Free Energy ",
1020
- "Link": "ZuccSLJYSnk"
1021
- },
1022
- {
1023
- "Title": "Formation of DNA Double Helix ",
1024
- "Link": "uhsDspChg18"
1025
- },
1026
- {
1027
- "Title": "Acid-Base Reactions and pH ",
1028
- "Link": "CVC6tykua6A"
1029
- },
1030
- {
1031
- "Title": "pH disrupts double helix of DNA",
1032
- "Link": "85OUxwxBEgs"
1033
- },
1034
- {
1035
- "Title": "Biological Buffer Systems",
1036
- "Link": "id1yK29TTcc"
1037
- },
1038
- {
1039
- "Title": "Biological Buffer Systems Part II ",
1040
- "Link": "RdojMjPjuR0"
1041
- },
1042
- {
1043
- "Title": "Introduction to Proteins ",
1044
- "Link": "ZfsuDfui0oU"
1045
- },
1046
- {
1047
- "Title": "Introduction to Amino Acids ",
1048
- "Link": "LHNNOIMt5x0"
1049
- },
1050
- {
1051
- "Title": "Nonpolar and Uncharged Polar Amino Acids ",
1052
- "Link": "cL2_e83v3js"
1053
- },
1054
- {
1055
- "Title": "Basic and Acidic Amino Acids ",
1056
- "Link": "dF48PWHbA10"
1057
- },
1058
- {
1059
- "Title": "Ionizable Amino Acids ",
1060
- "Link": "eE4WgONS6-k"
1061
- },
1062
- {
1063
- "Title": "Peptide Bond Formation",
1064
- "Link": "4_2fA_W7snM"
1065
- },
1066
- {
1067
- "Title": "Primary Structure of Proteins ",
1068
- "Link": "KW8Uo8jsiGY"
1069
- },
1070
- {
1071
- "Title": "Primary Structure of Proteins (II)",
1072
- "Link": "qNWZCIoldWA"
1073
- },
1074
- {
1075
- "Title": "Secondary Structure of Proteins ",
1076
- "Link": "4YbwjjZWGPA"
1077
- },
1078
- {
1079
- "Title": "Tertiary Structure of Proteins ",
1080
- "Link": "p5Oi_yFfAhg"
1081
- },
1082
- {
1083
- "Title": "Quaternary Structure of Proteins ",
1084
- "Link": "-3uYmi7C2DI"
1085
- },
1086
- {
1087
- "Title": "Anfinsen’s Experiment of Protein Folding ",
1088
- "Link": "pZee0XCCqH4"
1089
- },
1090
- {
1091
- "Title": "Prions and Protein misfiling ",
1092
- "Link": "Chs7ixRstQk"
1093
- },
1094
- {
1095
- "Title": "Cooperatively of Protein Folding ",
1096
- "Link": "9XK1Ekx5tYc"
1097
- },
1098
- {
1099
- "Title": "Modification of Amino Acids ",
1100
- "Link": "gpnyMM44lXc"
1101
- },
1102
- {
1103
- "Title": "Enzyme Assay, Enzyme Activity and Specific Activity",
1104
- "Link": "rgpN2OXg7mI"
1105
- },
1106
- {
1107
- "Title": "Cell Fractionation ",
1108
- "Link": "ukHA2tnc8mQ"
1109
- },
1110
- {
1111
- "Title": "Centrifugation and Sedimentation Coefficient ",
1112
- "Link": "oxiB3UoRc0E"
1113
- },
1114
- {
1115
- "Title": "Derivation of Sedimentation Coefficient Equation",
1116
- "Link": "EIl9kbeOLeA"
1117
- },
1118
- {
1119
- "Title": "Salting Out",
1120
- "Link": "TIMGH2z1eh4"
1121
- },
1122
- {
1123
- "Title": "Dialysis",
1124
- "Link": "P4vxEs7YDXY"
1125
- },
1126
- {
1127
- "Title": "Gel Filtration Chromatography",
1128
- "Link": "6t1BeXk1Gvc"
1129
- },
1130
- {
1131
- "Title": "Ion Exchange Chromatography",
1132
- "Link": "jOf_zHw2Hd4"
1133
- },
1134
- {
1135
- "Title": "Affinity Chromatography",
1136
- "Link": "4lWxWjQB5mo"
1137
- },
1138
- {
1139
- "Title": "Isoelectric Focusing and Isoelectric Point ",
1140
- "Link": "x62WZGd3VCM"
1141
- },
1142
- {
1143
- "Title": "Isoelectric Focusing and Isoelectric Point (Part II) ",
1144
- "Link": "Flu1EDgyJxs"
1145
- },
1146
- {
1147
- "Title": "Calculating Isoelectric Point of Proteins ",
1148
- "Link": "c2kK4My2Jzc"
1149
- },
1150
- {
1151
- "Title": "Calculation of Net Charge on Proteins ",
1152
- "Link": "g0TZncwkJxU"
1153
- },
1154
- {
1155
- "Title": "SDS Polyacrylamide Gel Electrophoresis ",
1156
- "Link": "tM0VNhjiFSU"
1157
- },
1158
- {
1159
- "Title": "SDS polyacrylamide Gel Electrophoresis ",
1160
- "Link": "9ly9bVbS8IU"
1161
- },
1162
- {
1163
- "Title": "Two Dimensional Gel Electrophoresis",
1164
- "Link": "mXkIWIE0H-0"
1165
- },
1166
- {
1167
- "Title": "Analysis of Protein Purification ",
1168
- "Link": "7h0XrF1BleM"
1169
- },
1170
- {
1171
- "Title": "Analysis of Protein Purification (Part II)",
1172
- "Link": "95PAEel-Fy8"
1173
- },
1174
- {
1175
- "Title": "Amino Acid Composition in Proteins ",
1176
- "Link": "5bBeXvo7ScA"
1177
- },
1178
- {
1179
- "Title": "Sequencing Amino Acids and Edman Degradation ",
1180
- "Link": "VxaGNLCIETA"
1181
- },
1182
- {
1183
- "Title": "Sequencing Amino Acids by Proteolytic Cleavage ",
1184
- "Link": "--rkLKzHi5s"
1185
- },
1186
- {
1187
- "Title": "Protein Sequencing Example ",
1188
- "Link": "X1LeQ3pcNow"
1189
- },
1190
- {
1191
- "Title": "Diagonal Electrophoresis",
1192
- "Link": "tAZu557bMQw"
1193
- },
1194
- {
1195
- "Title": "Polyclonal Antibodies ",
1196
- "Link": "13u9zjqU1Sw"
1197
- },
1198
- {
1199
- "Title": "Monoclonal Antibodies ",
1200
- "Link": "kVs4VQQroOg"
1201
- },
1202
- {
1203
- "Title": "Indirect and Sandwich ELISA ",
1204
- "Link": "MzrJ35aQPMo"
1205
- },
1206
- {
1207
- "Title": "Western Blotting ",
1208
- "Link": "8F_SFymyMCw"
1209
- },
1210
- {
1211
- "Title": "Solid-Phase Synthesis of Proteins ",
1212
- "Link": "ISjHVbG5CTE"
1213
- },
1214
- {
1215
- "Title": "Introduction to Nucleic Acids ",
1216
- "Link": "1Wc4jTH2v_w"
1217
- },
1218
- {
1219
- "Title": "Composition of Nucleic Acids ",
1220
- "Link": "Ux1tAy1Jb_I"
1221
- },
1222
- {
1223
- "Title": "Nucleosides and Nucleotides",
1224
- "Link": "GgQrEJaEH0U"
1225
- },
1226
- {
1227
- "Title": "Watson-Crick Model of DNA",
1228
- "Link": "VLD9VLxN3PI"
1229
- },
1230
- {
1231
- "Title": "Meselson and Stahl Experiment ",
1232
- "Link": "_GN4F-PaAWA"
1233
- },
1234
- {
1235
- "Title": "Melting and Annealing of DNA ",
1236
- "Link": "OblPqlOOgew"
1237
- },
1238
- {
1239
- "Title": "Stem-Loop Structure of RNA ",
1240
- "Link": "g_pwHZZ0oSo"
1241
- },
1242
- {
1243
- "Title": "DNA Polymerase and Catalysis of Phosphodiester Bond",
1244
- "Link": "wvaBZSQzGVY"
1245
- },
1246
- {
1247
- "Title": "Circular DNA, RNA Genes and Viruses ",
1248
- "Link": "TEfHW21ZIoc"
1249
- },
1250
- {
1251
- "Title": "Types of RNA ",
1252
- "Link": "ruIIccU32nU"
1253
- },
1254
- {
1255
- "Title": "RNA Polymerase ",
1256
- "Link": "1bAhZayllHc"
1257
- },
1258
- {
1259
- "Title": "Promoter and Termination Sites ",
1260
- "Link": "a9ZMTVlrLY0"
1261
- },
1262
- {
1263
- "Title": "Central Dogma and Genetic Code ",
1264
- "Link": "0t5eVgtrdWg"
1265
- },
1266
- {
1267
- "Title": "Start and Stop Codons ",
1268
- "Link": "HxOGxj2jEfA"
1269
- },
1270
- {
1271
- "Title": "Exons and Introns of Eukaryotic mRNA",
1272
- "Link": "B8gnuhvnfUs"
1273
- },
1274
- {
1275
- "Title": "Introduction to Biotechnology",
1276
- "Link": "FlsD__uCRws"
1277
- },
1278
- {
1279
- "Title": "Restriction Enzymes and Palindromic Sequences ",
1280
- "Link": "GDIu_t_SUTY"
1281
- },
1282
- {
1283
- "Title": "Southern and Northern Blotting",
1284
- "Link": "EoTq-Ql_Zzc"
1285
- },
1286
- {
1287
- "Title": "Sanger Sequencing of DNA ",
1288
- "Link": "IAf_6TZ6BYc"
1289
- },
1290
- {
1291
- "Title": "Sanger Sequencing of DNA (Part II) ",
1292
- "Link": "Kw2-LKRzRMM"
1293
- },
1294
- {
1295
- "Title": "Amplifying DNA with Polymerase Chain Reaction ",
1296
- "Link": "uHKiohWvY_0"
1297
- },
1298
- {
1299
- "Title": "Plasmids and Recombinant DNA technology ",
1300
- "Link": "2YxTcBimxlw"
1301
- },
1302
- {
1303
- "Title": "Lambda Phages as Vectors ",
1304
- "Link": "0Mw-0G2m6uE"
1305
- },
1306
- {
1307
- "Title": "Building and Screening Genomic Libraries ",
1308
- "Link": "2ikPiR0-rnc"
1309
- },
1310
- {
1311
- "Title": "Cassette Mutagenesis and Gene Deletions ",
1312
- "Link": "EpQB06gRoLg"
1313
- },
1314
- {
1315
- "Title": "Site-Directed Mutagenesis",
1316
- "Link": "cCUKopDvTks"
1317
- },
1318
- {
1319
- "Title": "Synthesizing cDNA with Reverse Transcriptase ",
1320
- "Link": "EU39PDzz9co"
1321
- },
1322
- {
1323
- "Title": "Gene Transfection ",
1324
- "Link": "oj_h06k9z0g"
1325
- },
1326
- {
1327
- "Title": "Heme Group of Hemoglobin and Myoglobin ",
1328
- "Link": "L6vhDsi8O_g"
1329
- },
1330
- {
1331
- "Title": "Oxygen Binding Curve for Myoglobin and Hemoglobin",
1332
- "Link": "Y3hRYzEmKrc"
1333
- },
1334
- {
1335
- "Title": "Hemoglobin vs Myoglobin as Oxygen Carrier ",
1336
- "Link": "XUI5vGfNYZY"
1337
- },
1338
- {
1339
- "Title": "T-state and R-state of Hemoglobin",
1340
- "Link": "LKvQLasB6jw"
1341
- },
1342
- {
1343
- "Title": "Concerted and Sequential Model for Hemoglobin",
1344
- "Link": "VNln4wn7_f4"
1345
- },
1346
- {
1347
- "Title": "Effect of 2,3-BPG on Hemoglobin ",
1348
- "Link": "20HfkCZy0dI"
1349
- },
1350
- {
1351
- "Title": "Fetal Hemoglobin and 2,3 BPG ",
1352
- "Link": "WMArOG94H3E"
1353
- },
1354
- {
1355
- "Title": "The Bohr Effect and Hemoglobin",
1356
- "Link": "vwdT15oc3IE"
1357
- },
1358
- {
1359
- "Title": "The Bohr Effect and Hemoglobin (Part II) ",
1360
- "Link": "J7Wjq5YiJhs"
1361
- },
1362
- {
1363
- "Title": "Transport of Carbon Dioxide and Chloride Shift ",
1364
- "Link": "7l-WHYD_uYE"
1365
- },
1366
- {
1367
- "Title": "Haldane Effect ",
1368
- "Link": "NN60olUJu1I"
1369
- },
1370
- {
1371
- "Title": "High Altitude and 2,3 BPG",
1372
- "Link": "tTtbU8KD5JM"
1373
- },
1374
- {
1375
- "Title": "Alpha Hemoglobin and Stabilizing Protein ",
1376
- "Link": "-vpde5PGMX8"
1377
- },
1378
- {
1379
- "Title": "Sickle-Cell Anemia ",
1380
- "Link": "e67ZP2C3Pr4"
1381
- },
1382
- {
1383
- "Title": "Properties of Enzymes ",
1384
- "Link": "Gy3fEdy9cCA"
1385
- },
1386
- {
1387
- "Title": "Enzymes’ Effect on Activation Energy and Free Energy ",
1388
- "Link": "tPCOEUo6J8s"
1389
- },
1390
- {
1391
- "Title": "Gibbs Free Energy and Spontaneity",
1392
- "Link": "u_IQu7h6xfo"
1393
- },
1394
- {
1395
- "Title": "Enzymes Stabilize Transition State ",
1396
- "Link": "NEQ9WS8w-2I"
1397
- },
1398
- {
1399
- "Title": "Properties of Active Sites, Lock-and-Key Model and Induced Fit Model ",
1400
- "Link": "xzeg7ult6pM"
1401
- },
1402
- {
1403
- "Title": "Effect of Enzymes on Rate Law and Rate Constant ",
1404
- "Link": "htZgbALo8uE"
1405
- },
1406
- {
1407
- "Title": "Effect of Enzymes on Rate Law and Rate Constant (Part II) ",
1408
- "Link": "yD6CTA-tT6A"
1409
- },
1410
- {
1411
- "Title": "Derivation of Michaelis-Menten Equation",
1412
- "Link": "NVDxNal06zM"
1413
- },
1414
- {
1415
- "Title": "Derivation of Michaelis Menten-Equation Part II ",
1416
- "Link": "OOzj_dFzPH4"
1417
- },
1418
- {
1419
- "Title": "Michaelis menten Equation ",
1420
- "Link": "ALwziZSRiqM"
1421
- },
1422
- {
1423
- "Title": "Michaelis Constant ",
1424
- "Link": "ZU2EAZQ6Mok"
1425
- },
1426
- {
1427
- "Title": "Maximal Velocity and Turnover Number of Enzymes ",
1428
- "Link": "KM2Kq9L_V4M"
1429
- },
1430
- {
1431
- "Title": "Catalytic Efficiency of Enzymes ",
1432
- "Link": "EUunw7voY-o"
1433
- },
1434
- {
1435
- "Title": "Catalytic Efficiency of Enzymes Part II ",
1436
- "Link": "5dhAuaZMCUg"
1437
- },
1438
- {
1439
- "Title": "Sequential and Ping Pong Reactions ",
1440
- "Link": "pWURzs8GiB4"
1441
- },
1442
- {
1443
- "Title": "Mechanisms of Enzyme Catalysis ",
1444
- "Link": "0vvUIIulzMk"
1445
- },
1446
- {
1447
- "Title": "Introduction to Proteases",
1448
- "Link": "Y9VgJw4w69Q"
1449
- },
1450
- {
1451
- "Title": "Chymotrypsin and Covalent Catalysis ",
1452
- "Link": "TXSZMLvqx-A"
1453
- },
1454
- {
1455
- "Title": "Reaction Mechanism of Chymotrypsin",
1456
- "Link": "OY1WsqlcUdo"
1457
- },
1458
- {
1459
- "Title": "Specificity of Serine Proteases",
1460
- "Link": "4iJY90Fxj7c"
1461
- },
1462
- {
1463
- "Title": "Cysteine, Apsratyl and metalloproteases",
1464
- "Link": "n8NFSMfV9dc"
1465
- },
1466
- {
1467
- "Title": "Carbonic Anhyrdase",
1468
- "Link": "W5nLcHtuBvM"
1469
- },
1470
- {
1471
- "Title": "NMP Kinases ",
1472
- "Link": "z-sII0ooX3g"
1473
- },
1474
- {
1475
- "Title": "Irreversible and Reversible Inhibition",
1476
- "Link": "0ZiCqwtFMTs"
1477
- },
1478
- {
1479
- "Title": "Irreversibile and Reversible Inhibition Part II ",
1480
- "Link": "RouBlFpd_mk"
1481
- },
1482
- {
1483
- "Title": "Enzyme Kinetics of Reversible Inhibition",
1484
- "Link": "rNBEUGYu034"
1485
- },
1486
- {
1487
- "Title": "Enzyme Kinetics of Reversible Inhibition (Part II) ",
1488
- "Link": "OfjuWqtC51o"
1489
- },
1490
- {
1491
- "Title": "Lineweaver Burke Plot and Reversible Inhibition",
1492
- "Link": "GVUkZL1jCw0"
1493
- },
1494
- {
1495
- "Title": "Lineweaver Burke Plot and REversible Inhibition Part II ",
1496
- "Link": "md9QC5oQmLY"
1497
- },
1498
- {
1499
- "Title": "Group Specific Affinity Labels and Suicide Inhibitors ",
1500
- "Link": "K1uq9AXwo5Q"
1501
- },
1502
- {
1503
- "Title": "Transition State Analogs and Catalytic Antibodies ",
1504
- "Link": "Q1nUbwJ6wF8"
1505
- },
1506
- {
1507
- "Title": "Structure and Function of Penicillin ",
1508
- "Link": "JZPo_iXiGuA"
1509
- },
1510
- {
1511
- "Title": "Enzyme Regulation ",
1512
- "Link": "I82orkqyOEY"
1513
- },
1514
- {
1515
- "Title": "ATCase Allosteric Regulation",
1516
- "Link": "Z2ZN_9nFl1E"
1517
- },
1518
- {
1519
- "Title": "Structure of ATCase ",
1520
- "Link": "zSAABNvECGI"
1521
- },
1522
- {
1523
- "Title": "Structure of ATCase Part II",
1524
- "Link": "m-SxOxZ0PwA"
1525
- },
1526
- {
1527
- "Title": "Cooperatively and Allosteric Effectors of ATCase ",
1528
- "Link": "gZmlhlK9lTQ"
1529
- },
1530
- {
1531
- "Title": "Covalent Modification and Phosphorylation ",
1532
- "Link": "zHJexIQbHvc"
1533
- },
1534
- {
1535
- "Title": "Covalent Modification and Phosphorylation Part II ",
1536
- "Link": "0l924_AJ-iA"
1537
- },
1538
- {
1539
- "Title": "Protein Kinase A ",
1540
- "Link": "jwp5vwnTyPc"
1541
- },
1542
- {
1543
- "Title": "Proteolytic Activation ",
1544
- "Link": "Jrp7T9-fMcM"
1545
- },
1546
- {
1547
- "Title": "Proteolytic Activation of Digestive Enzymes ",
1548
- "Link": "zPX_RGh3Ho0"
1549
- },
1550
- {
1551
- "Title": "Inhibition of Digestive Enzymes ",
1552
- "Link": "Brx4S1L6NOY"
1553
- },
1554
- {
1555
- "Title": "Inhibition of Digestive Enzymes ",
1556
- "Link": "bg0K9U5d0xU"
1557
- },
1558
- {
1559
- "Title": "Activation of Coagulation Cascade ",
1560
- "Link": "fcvhf9vmj5U"
1561
- },
1562
- {
1563
- "Title": "Factor VIII and Hemophilia A ",
1564
- "Link": "LbbzuBN2Eao"
1565
- },
1566
- {
1567
- "Title": "Inhibition of Coagulation Cascade ",
1568
- "Link": "jUs6eGbRrfk"
1569
- },
1570
- {
1571
- "Title": "Isozymes ",
1572
- "Link": "pzdjg3iG4oM"
1573
- },
1574
- {
1575
- "Title": "Introduction to Carbohydrates ",
1576
- "Link": "OBP8ltttH5U"
1577
- },
1578
- {
1579
- "Title": "Aldoses, Ketoses Fischer Projections and Epimers ",
1580
- "Link": "ECKrQu0Y2PI"
1581
- },
1582
- {
1583
- "Title": "Cyclic Form of Carbohydrates ",
1584
- "Link": "H7z1vNc1jos"
1585
- },
1586
- {
1587
- "Title": "Stability of Glucose Anomie’s ",
1588
- "Link": "MaY1UOYRFMo"
1589
- },
1590
- {
1591
- "Title": "Modification of Carbohydrates ",
1592
- "Link": "qrvlx5zD4Vc"
1593
- },
1594
- {
1595
- "Title": "Disaccharides (maltose, lactose, and sucrose) ",
1596
- "Link": "Kj15mH5zB6Y"
1597
- },
1598
- {
1599
- "Title": "Polysaccharides ",
1600
- "Link": "e0ijBDroE48"
1601
- },
1602
- {
1603
- "Title": "Glycosaminoglycans and Proteoglycans ",
1604
- "Link": "l3W60xr9ac4"
1605
- },
1606
- {
1607
- "Title": "Glycosylation and Glycoproteins ",
1608
- "Link": "xHpQuV80xhs"
1609
- },
1610
- {
1611
- "Title": "Functions of Glycoproteins and I-Cell Disease ",
1612
- "Link": "ti_fvQRfLys"
1613
- },
1614
- {
1615
- "Title": "Glycosyltransferases and ABO Blood Groups ",
1616
- "Link": "YSVbO2sHlBE"
1617
- },
1618
- {
1619
- "Title": "Properties of Cell Membranes ",
1620
- "Link": "32F9xpfXUsc"
1621
- },
1622
- {
1623
- "Title": "Fatty Acids ",
1624
- "Link": "eB9tgWB4YEw"
1625
- },
1626
- {
1627
- "Title": "Fatty Acids Part II ",
1628
- "Link": "nqBe9jAlTgQ"
1629
- },
1630
- {
1631
- "Title": "Phospholipids ",
1632
- "Link": "xrn9qeVM9o4"
1633
- },
1634
- {
1635
- "Title": "Glycolipids and Cholesterol ",
1636
- "Link": "c_RTc7aSFp4"
1637
- },
1638
- {
1639
- "Title": "Micelles and Lipid Bilayer ",
1640
- "Link": "MTwUy3c5Etc"
1641
- },
1642
- {
1643
- "Title": "Liposomes (Lipid Vesicles) ",
1644
- "Link": "KiZvvd5dhfM"
1645
- },
1646
- {
1647
- "Title": "Permeability of Cell Membrane ",
1648
- "Link": "mkkQK6emawM"
1649
- },
1650
- {
1651
- "Title": "Integral and Peripheral Membrane Proteins ",
1652
- "Link": "AB0tlX6IUYU"
1653
- },
1654
- {
1655
- "Title": "Integral and Peripheral Membrane Proteins Part II ",
1656
- "Link": "Onq25qxxsco"
1657
- },
1658
- {
1659
- "Title": "Lateral Diffusion of Lipids and Proteins ",
1660
- "Link": "eHEsOFGOSC4"
1661
- },
1662
- {
1663
- "Title": "Flip-Flopping and Fluid Mosaic Model ",
1664
- "Link": "ftgQ8-w8YGA"
1665
- },
1666
- {
1667
- "Title": "Asymmetry of Cell Membrane ",
1668
- "Link": "h7x6Ojc_6iI"
1669
- },
1670
- {
1671
- "Title": "Cholesterol and Fatty Acids Regulate membrane Fluidity ",
1672
- "Link": "wnBTZ02wnAE"
1673
- },
1674
- {
1675
- "Title": "Introduction to Membrane Transport ",
1676
- "Link": "veserg9SrtU"
1677
- },
1678
- {
1679
- "Title": "Measuring the Electrochemical Gradient ",
1680
- "Link": "hnGsBEZ_PeI"
1681
- },
1682
- {
1683
- "Title": "Measuring the Electrochemical Gradient ",
1684
- "Link": "M5pW6oex-qA"
1685
- },
1686
- {
1687
- "Title": "P-Type ATPases ",
1688
- "Link": "eJtowEuMjfQ"
1689
- },
1690
- {
1691
- "Title": "ABC Transporters ",
1692
- "Link": "AYGnZHzXsLs"
1693
- },
1694
- {
1695
- "Title": "Secondary Transporters ",
1696
- "Link": "JzmH5o0L3tw"
1697
- },
1698
- {
1699
- "Title": "Membrane Channels ",
1700
- "Link": "HG2Syp6O9EM"
1701
- },
1702
- {
1703
- "Title": "Ligand-Gated Ion Channels ",
1704
- "Link": "2FMxQsJfCZY"
1705
- },
1706
- {
1707
- "Title": "Resting Membrane Potential ",
1708
- "Link": "EqjGJ-Zn7Ic"
1709
- },
1710
- {
1711
- "Title": "Generation of Action Potential",
1712
- "Link": "APKc8A-Ak4s"
1713
- },
1714
- {
1715
- "Title": "Gap Junctions",
1716
- "Link": "attLYnvWH9M"
1717
- },
1718
- {
1719
- "Title": "Aquaporins ",
1720
- "Link": "DFu86zguTZA"
1721
- },
1722
- {
1723
- "Title": "Cancer and Termination of Signal Pathways ",
1724
- "Link": "zA7rl1exdRI"
1725
- },
1726
- {
1727
- "Title": "Signal Transduction Pathways ",
1728
- "Link": "KiBxUKk4u6g"
1729
- },
1730
- {
1731
- "Title": "Epinephrine Signal Transduction Pathway",
1732
- "Link": "Z7YK9cA1x70"
1733
- },
1734
- {
1735
- "Title": "Termination of Epinephrine Signaling ",
1736
- "Link": "pFVLjibWBik"
1737
- },
1738
- {
1739
- "Title": "Phosphoinositide Signal Pathway",
1740
- "Link": "2PCexQiCjfI"
1741
- },
1742
- {
1743
- "Title": "Calcium and Calmodulin ",
1744
- "Link": "XhVcqUugv7I"
1745
- },
1746
- {
1747
- "Title": "Insulin Signal Transduction Pathway ",
1748
- "Link": "CUXQsAdxuYw"
1749
- },
1750
- {
1751
- "Title": "EGF Signal Transduction Pathway",
1752
- "Link": "fqo7EYIh0XM"
1753
- },
1754
- {
1755
- "Title": "Common Properties of Signal Pathways ",
1756
- "Link": "fGqbIVj7L_s"
1757
- },
1758
- {
1759
- "Title": "Cholera and G-Protein Coupled Signaling ",
1760
- "Link": "GQtgUgxidpM"
1761
- },
1762
- {
1763
- "Title": "Introduction to Glucose Metabolism ",
1764
- "Link": "2yMQsmoZo2A"
1765
- },
1766
- {
1767
- "Title": "Stage 1 of Glycolysis ",
1768
- "Link": "QEIWcOY0x0g"
1769
- },
1770
- {
1771
- "Title": "Stage 2 of Glycolysis ",
1772
- "Link": "iL5ThXvldLo"
1773
- },
1774
- {
1775
- "Title": "Stage 2 of Glycolysis Part II ",
1776
- "Link": "omeKnebHq5c"
1777
- },
1778
- {
1779
- "Title": "Stage 3 of Glycolysis ",
1780
- "Link": "U4f9jdQU8LM"
1781
- },
1782
- {
1783
- "Title": "Stage 3 of Glycolysis ",
1784
- "Link": "Cqvl_wRZHXs"
1785
- },
1786
- {
1787
- "Title": "Overview of Glycolysis ",
1788
- "Link": "elXjUqZRcE0"
1789
- },
1790
- {
1791
- "Title": "Overview of Glycolysis Part II ",
1792
- "Link": "xgIEqgrvO4c"
1793
- },
1794
- {
1795
- "Title": "Ethanol and Lactic Acid Fermentation ",
1796
- "Link": "gPbnjk2orcQ"
1797
- },
1798
- {
1799
- "Title": "Fructose and Galactose Breakdown Pathways ",
1800
- "Link": "y6kVNOs89D4"
1801
- },
1802
- {
1803
- "Title": "Lactose Intolerance ",
1804
- "Link": "pyfBZCGOUGs"
1805
- },
1806
- {
1807
- "Title": "Regulation of Glycolysis in Skeletal Muscle ",
1808
- "Link": "uXNi7WQ5JEo"
1809
- },
1810
- {
1811
- "Title": "Regulation of Glycolysis in Skeletal Muscle Part II ",
1812
- "Link": "KVnP8WOGZA8"
1813
- },
1814
- {
1815
- "Title": "Regulation of Glycolysis in Liver Cells ",
1816
- "Link": "OG4A3Fkitvw"
1817
- },
1818
- {
1819
- "Title": "Regulation of Glycolysis in Liver Cells Part II ",
1820
- "Link": "WaCFnrvN2D8"
1821
- },
1822
- {
1823
- "Title": "Glucose Transporters ",
1824
- "Link": "i9S5_KZa_Is"
1825
- },
1826
- {
1827
- "Title": "Effect of Exercise and Cancer on Glycolysis ",
1828
- "Link": "xji7TfN5Wbw"
1829
- },
1830
- {
1831
- "Title": "Introduction to Gluconeogenesis ",
1832
- "Link": "VTLtHbO_L8Q"
1833
- },
1834
- {
1835
- "Title": "Introduction to Gluconeogenesis Part II ",
1836
- "Link": "yGXkDhmza64"
1837
- },
1838
- {
1839
- "Title": "Gluconeogenesis Steps 1-2",
1840
- "Link": "SLAlv9XSgqg"
1841
- },
1842
- {
1843
- "Title": "Gluconeogenesis Steps 3-10",
1844
- "Link": "51g4sAihHEk"
1845
- },
1846
- {
1847
- "Title": "Gluconeogenesis Steps 3-10 Part II ",
1848
- "Link": "AzCnD-0C3Bs"
1849
- },
1850
- {
1851
- "Title": "Overview of Gluconeogenesis ",
1852
- "Link": "9p45oK0nECw"
1853
- },
1854
- {
1855
- "Title": "Reciprocal Regulation of Gluconeogenesis and Glycolysis ",
1856
- "Link": "ardjd4h2Seo"
1857
- },
1858
- {
1859
- "Title": "Reciprocal Regulation of Gluconeogenesis and Glycolysis ",
1860
- "Link": "UorOXoKlMZM"
1861
- },
1862
- {
1863
- "Title": "Regulation of Glucose in Blood ",
1864
- "Link": "KYyMI0gyLYk"
1865
- },
1866
- {
1867
- "Title": "Regulation of Glucose in Blood Part II ",
1868
- "Link": "mTZumNWTAKA"
1869
- },
1870
- {
1871
- "Title": "Overview of Lactate Formation and Recycling ",
1872
- "Link": "sJO78WVzR1g"
1873
- },
1874
- {
1875
- "Title": "Introduction to Citric Acid Cycle ",
1876
- "Link": "Ge_uJ3iRDCE"
1877
- },
1878
- {
1879
- "Title": "Pyruvate Decarboxylation ",
1880
- "Link": "RsG3bD39Jqk"
1881
- },
1882
- {
1883
- "Title": "Step 1 of Citric Acid Cycle ",
1884
- "Link": "5XibaVKKQwo"
1885
- },
1886
- {
1887
- "Title": "Step 1 of Citric Acid Cycle (Part II) ",
1888
- "Link": "6c_0qbq2B4Q"
1889
- },
1890
- {
1891
- "Title": "Step 2-4 of Citric Acid Cycle ",
1892
- "Link": "qgR-2_SDnKU"
1893
- },
1894
- {
1895
- "Title": "Steps 5-8 of Citric Acid Cycle ",
1896
- "Link": "AJkBo2RlA3A"
1897
- },
1898
- {
1899
- "Title": "Overview of Citric Acid Cycle ",
1900
- "Link": "fOY03Wl8VG4"
1901
- },
1902
- {
1903
- "Title": "Regulation of Pyruvate Decarboxylation ",
1904
- "Link": "jZg8JHiLaBA"
1905
- },
1906
- {
1907
- "Title": "Regulation of Citric Acid Cycle ",
1908
- "Link": "M5_KZ4qpc00"
1909
- },
1910
- {
1911
- "Title": "Replenishing Oxaloacetate in Citric Acid Cycle ",
1912
- "Link": "WlUPaImRZts"
1913
- },
1914
- {
1915
- "Title": "Introduction to Oxidative Phosphorylation ",
1916
- "Link": "kI9rD9bO6wU"
1917
- },
1918
- {
1919
- "Title": "Introduction to Electron Transport Chain ",
1920
- "Link": "COMD8yHJtLI"
1921
- },
1922
- {
1923
- "Title": "Complex I and II of Electron Transport Chain ",
1924
- "Link": "ay9WIAkoa1Y"
1925
- },
1926
- {
1927
- "Title": "Q-Cycle and Complex III of Electron Transport Chain ",
1928
- "Link": "rOv-X7VFbp0"
1929
- },
1930
- {
1931
- "Title": "Complex IV of Electron Transport Chain ",
1932
- "Link": "E0YGToDEKeE"
1933
- },
1934
- {
1935
- "Title": "Reactive Oxygen Species and ETC ",
1936
- "Link": "zrwhSkeZceg"
1937
- },
1938
- {
1939
- "Title": "Structure of ATP Synthase",
1940
- "Link": "kio0RTl2FSM"
1941
- },
1942
- {
1943
- "Title": "Mechanism of ATP Synthase ",
1944
- "Link": "IHCzJjm0b1M"
1945
- },
1946
- {
1947
- "Title": "Proton Movement in ATP Synthase ",
1948
- "Link": "Q7TESAewi5c"
1949
- },
1950
- {
1951
- "Title": "Glycerol 3-Phosphate Shuttle ",
1952
- "Link": "sglxi7I21-M"
1953
- },
1954
- {
1955
- "Title": "Malate Aspartate Shuttle ",
1956
- "Link": "nEj8b-sg4ps"
1957
- },
1958
- {
1959
- "Title": "ATP-ADP Translocase",
1960
- "Link": "bWATYDuUnLE"
1961
- },
1962
- {
1963
- "Title": "ATP Yield of Aerobic Cell Respiration ",
1964
- "Link": "i0oYOcXsIBE"
1965
- },
1966
- {
1967
- "Title": "Introduction to Pentose Phosphate Pathway",
1968
- "Link": "nkTDi2WIm4w"
1969
- },
1970
- {
1971
- "Title": "Oxidative Phase of Pentose Phosphate Pathway ",
1972
- "Link": "nMWmmJLEI9I"
1973
- },
1974
- {
1975
- "Title": "Nonoxidative Phase of Pentose Phosphate Pathway ",
1976
- "Link": "dWwXvo2vpBc"
1977
- },
1978
- {
1979
- "Title": "Mechanism of Transaldolase ",
1980
- "Link": "Ei84u509zrA"
1981
- },
1982
- {
1983
- "Title": "Mechanism of Transketolase ",
1984
- "Link": "Q2w_gRwmQM8"
1985
- },
1986
- {
1987
- "Title": "Interplay of Glycolysis and Pentose Phosphate Pathway ",
1988
- "Link": "asgGTwYkS9Q"
1989
- },
1990
- {
1991
- "Title": "Introduction to Glycogen ",
1992
- "Link": "kei2AmB3sfw"
1993
- },
1994
- {
1995
- "Title": "Glycogen Breakdown ",
1996
- "Link": "Y1nSZA-A7f8"
1997
- },
1998
- {
1999
- "Title": "Regulating Glycogen Breakdown in Muscle ",
2000
- "Link": "W11XV-_tI04"
2001
- },
2002
- {
2003
- "Title": "Regulating Glycogen Breakdown in Liver ",
2004
- "Link": "wHRYT86Efr0"
2005
- },
2006
- {
2007
- "Title": "Activation of Phosphorylase Kinase ",
2008
- "Link": "BI86QnvROYM"
2009
- },
2010
- {
2011
- "Title": "Glucagon Signal Pathway ",
2012
- "Link": "DcIEEiGLtVU"
2013
- },
2014
- {
2015
- "Title": "Termination of Glycogen Breakdown ",
2016
- "Link": "QM2W_KPlbX0"
2017
- },
2018
- {
2019
- "Title": "UDP-Glucose and Glycogen Elongation ",
2020
- "Link": "2ezIyIt6Wyo"
2021
- },
2022
- {
2023
- "Title": "Branching of Glycogen",
2024
- "Link": "hejzJ03kZ9E"
2025
- },
2026
- {
2027
- "Title": "Overview of Gluconeogenesis ",
2028
- "Link": "3FHKw2aS_Z0"
2029
- },
2030
- {
2031
- "Title": "Glycogen Synthase Regulation ",
2032
- "Link": "3jqxLodarME"
2033
- },
2034
- {
2035
- "Title": "Reciprocal Regulation of Glycogen Metabolism",
2036
- "Link": "pYrbLjgqdTY"
2037
- },
2038
- {
2039
- "Title": "Insulin and Glucose Regulation of Glycogenesis ",
2040
- "Link": "t12pXyMg7NQ"
2041
- },
2042
- {
2043
- "Title": "Introduction to Fatty Acid Metabolism",
2044
- "Link": "0M7PH3Mro5Y"
2045
- },
2046
- {
2047
- "Title": "Triglycerides ",
2048
- "Link": "TVzJqpzoqDM"
2049
- },
2050
- {
2051
- "Title": "Mobilization of Triglycerides in Adipose Cells ",
2052
- "Link": "yFqyVA_I2N0"
2053
- },
2054
- {
2055
- "Title": "Activation of Fatty Acids ",
2056
- "Link": "3lr2uxBb_iw"
2057
- },
2058
- {
2059
- "Title": "Oxidation of Fatty Acids ",
2060
- "Link": "gQYCCiGe9bo"
2061
- },
2062
- {
2063
- "Title": "ATP yield in Fatty acid oxidation",
2064
- "Link": "w6V9RFs9NGk"
2065
- },
2066
- {
2067
- "Title": "Oxidation of Unsaturated fatty acids ",
2068
- "Link": "oE0KQnQf3Q4"
2069
- },
2070
- {
2071
- "Title": "Oxidation of Odd chain fatty acids ",
2072
- "Link": "dhW6b7XjlZs"
2073
- },
2074
- {
2075
- "Title": "Peroxisomal oxidation of fatty acids ",
2076
- "Link": "_P2P7R_pcH4"
2077
- },
2078
- {
2079
- "Title": "Ketogenesis ",
2080
- "Link": "dbno1Aa-E_4"
2081
- },
2082
- {
2083
- "Title": "Diabetic Ketoacidosis ",
2084
- "Link": "LwLWo6kUst4"
2085
- },
2086
- {
2087
- "Title": "Introduction to Fatty Acid Synthesis ",
2088
- "Link": "t4D5_du3Of8"
2089
- },
2090
- {
2091
- "Title": "Initiation of Fatty Acid Synthesis",
2092
- "Link": "6W5dntsodvo"
2093
- },
2094
- {
2095
- "Title": "Fatty Acid Synthesis ",
2096
- "Link": "4VNKyf34xmI"
2097
- },
2098
- {
2099
- "Title": "Fatty Acid Synthesis Part II ",
2100
- "Link": "pa4rHm2eOlM"
2101
- },
2102
- {
2103
- "Title": "Introduction to Amino Acid Metabolism ",
2104
- "Link": "p8YWfhQPuoE"
2105
- },
2106
- {
2107
- "Title": "Ubiquitination of Proteins ",
2108
- "Link": "ao5DJ4q2DsA"
2109
- },
2110
- {
2111
- "Title": "Proteasome Complex",
2112
- "Link": "T2oYG_yxKS0"
2113
- },
2114
- {
2115
- "Title": "Deamination of Amino Acids ",
2116
- "Link": "c_-lwMgBsDE"
2117
- },
2118
- {
2119
- "Title": "Glucose-alanine cycle ",
2120
- "Link": "V9CSKTFyaYw"
2121
- },
2122
- {
2123
- "Title": "Urea cycle ",
2124
- "Link": "VtDtG58ETLQ"
2125
- },
2126
- {
2127
- "Title": "Defects in Urea cycle and hyperammonemia ",
2128
- "Link": "y7ZPAc_pS0I"
2129
- },
2130
- {
2131
- "Title": "Introduction to glucogenic and ketogenic amino acids ",
2132
- "Link": "p7Ss0yGf84U"
2133
- },
2134
- {
2135
- "Title": "Metabolism of amino acids to pyruvate ",
2136
- "Link": "TV1gzWHov8Y"
2137
- },
2138
- {
2139
- "Title": "Metabolism of amino acids to ketoglutarate ",
2140
- "Link": "02gUohKpZnE"
2141
- },
2142
- {
2143
- "Title": "Metabolism of Methionine",
2144
- "Link": "rehxEfZHkU0"
2145
- },
2146
- {
2147
- "Title": "Metabolism of phenylalanine and tyrosine",
2148
- "Link": "sOUVczoOCIo"
2149
- },
2150
- {
2151
- "Title": "Alcaptonuria ",
2152
- "Link": "9Sssjfr5XNQ"
2153
- },
2154
- {
2155
- "Title": "Alcaptonuria  Part 2",
2156
- "Link": "n7Uec8Jtr4E"
2157
- },
2158
- {
2159
- "Title": "",
2160
- "Link": ""
2161
- },
2162
- {
2163
- "Title": "",
2164
- "Link": ""
2165
- },
2166
- {
2167
- "Title": "",
2168
- "Link": ""
2169
- },
2170
- {
2171
- "Title": "",
2172
- "Link": ""
2173
- },
2174
- {
2175
- "Title": "",
2176
- "Link": ""
2177
- },
2178
- {
2179
- "Title": "",
2180
- "Link": ""
2181
- },
2182
- {
2183
- "Title": "",
2184
- "Link": ""
2185
- },
2186
- {
2187
- "Title": "",
2188
- "Link": ""
2189
- },
2190
- {
2191
- "Title": "",
2192
- "Link": ""
2193
- },
2194
- {
2195
- "Title": "",
2196
- "Link": ""
2197
- },
2198
- {
2199
- "Title": "",
2200
- "Link": ""
2201
- },
2202
- {
2203
- "Title": "",
2204
- "Link": ""
2205
- },
2206
- {
2207
- "Title": "",
2208
- "Link": ""
2209
- },
2210
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2211
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2212
- "Link": ""
2213
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2214
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2215
- "Title": "",
2216
- "Link": ""
2217
- },
2218
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2219
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2220
- "Link": ""
2221
- },
2222
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2223
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2224
- "Link": ""
2225
- },
2226
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2227
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2228
- "Link": ""
2229
- },
2230
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2231
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2232
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2233
- },
2234
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2235
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2236
- "Link": ""
2237
- },
2238
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2239
- "Title": "",
2240
- "Link": ""
2241
- },
2242
- {
2243
- "Title": "",
2244
- "Link": ""
2245
- },
2246
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2247
- "Title": "",
2248
- "Link": ""
2249
- },
2250
- {
2251
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2252
- "Link": ""
2253
- },
2254
- {
2255
- "Title": "",
2256
- "Link": ""
2257
- },
2258
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2259
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2260
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2261
- },
2262
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2263
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2264
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2265
- },
2266
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2267
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2268
- "Link": ""
2269
- },
2270
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2271
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2272
- "Link": ""
2273
- },
2274
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2275
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2276
- "Link": ""
2277
- },
2278
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2279
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2280
- "Link": ""
2281
- },
2282
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2283
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2284
- "Link": ""
2285
- },
2286
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2287
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2288
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2289
- },
2290
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2291
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2292
- "Link": ""
2293
- },
2294
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2295
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2296
- "Link": ""
2297
- },
2298
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2299
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2300
- "Link": ""
2301
- },
2302
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2303
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2304
- "Link": ""
2305
- },
2306
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2307
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2308
- "Link": ""
2309
- },
2310
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2311
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2312
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2313
- },
2314
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2315
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2316
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2317
- },
2318
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2319
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2320
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2321
- },
2322
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2323
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2324
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2326
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2327
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2328
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2329
- },
2330
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2331
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2332
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2333
- },
2334
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2335
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2336
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2337
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2338
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2339
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2340
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2341
- },
2342
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2343
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2344
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2345
- },
2346
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2347
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2348
- "Link": ""
2349
- },
2350
- {
2351
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2352
- "Link": ""
2353
- },
2354
- {
2355
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2356
- "Link": ""
2357
- },
2358
- {
2359
- "Title": "",
2360
- "Link": ""
2361
- },
2362
- {
2363
- "Title": "",
2364
- "Link": ""
2365
- },
2366
- {
2367
- "Title": "",
2368
- "Link": ""
2369
- },
2370
- {
2371
- "Title": "",
2372
- "Link": ""
2373
- },
2374
- {
2375
- "Title": "",
2376
- "Link": ""
2377
- },
2378
- {
2379
- "Title": "",
2380
- "Link": ""
2381
- },
2382
- {
2383
- "Title": "",
2384
- "Link": ""
2385
- },
2386
- {
2387
- "Title": "",
2388
- "Link": ""
2389
- },
2390
- {
2391
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2392
- "Link": ""
2393
- },
2394
- {
2395
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2396
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2397
- },
2398
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2399
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2400
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2401
- },
2402
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2403
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2404
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2405
- },
2406
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2407
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2408
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2409
- },
2410
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2411
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2412
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2413
- },
2414
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2415
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2416
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2417
- },
2418
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2419
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2420
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2421
- },
2422
- {
2423
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2424
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2425
- },
2426
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2427
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2428
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2429
- },
2430
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2431
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2432
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2433
- },
2434
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2435
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2436
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2437
- },
2438
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2439
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2440
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2441
- },
2442
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2443
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2444
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2445
- },
2446
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2447
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2448
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2449
- },
2450
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2451
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2452
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2453
- },
2454
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2455
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2456
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2457
- },
2458
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2459
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2460
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2461
- },
2462
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2463
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2464
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2465
- },
2466
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2467
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2468
- "Link": ""
2469
- },
2470
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2471
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2472
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2473
- },
2474
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2475
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2476
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2477
- },
2478
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2479
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2480
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2481
- },
2482
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2483
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2484
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2485
- },
2486
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2487
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2488
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2489
- },
2490
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2491
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2492
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2493
- },
2494
- {
2495
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2496
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2497
- },
2498
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2499
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2500
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2501
- },
2502
- {
2503
- "Title": "",
2504
- "Link": ""
2505
- },
2506
- {
2507
- "Title": "",
2508
- "Link": ""
2509
- },
2510
- {
2511
- "Title": "",
2512
- "Link": ""
2513
- },
2514
- {
2515
- "Title": "",
2516
- "Link": ""
2517
- },
2518
- {
2519
- "Title": "",
2520
- "Link": ""
2521
- },
2522
- {
2523
- "Title": "",
2524
- "Link": ""
2525
- }
2526
- ]