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and W. S. Dai. “The Incidence Rate of Seizures in Relation to BMI in UK Adults.” Obesity 16 (2008): 2126–2132. doi: 10.1038/oby.2008.310.

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Глава 5

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2. F. A. Azevedo, L. R. Carvalho, L. T. Grinberg, J. M. Farfel, R. E. Ferretti, R. E. Leite, W. J. Filho, R. Lent, and S. Herculano-Houzel. “Equal Numbers of Neuronal and Nonneuronal Cells Make the Human Brain an Isometrically Scaled-Up Primate Brain.” J Comp Neurol 513 (2009): 532–541. doi: 10.1002/cne.21974.

Глава 6

1. J. D. Gray, T. G. Rubin, R. G. Hunter, and B. S. McEwen. “Hippocampal Gene Expression Changes Underlying Stress Sensitization and Recovery.” Mol Psychiatry 19(11) (2014): 1171–1178. doi: 10.1038/ mp.2013.175.

2. K. Hughes, M. A. Bellis, K. A. Hardcastle, D. Sethi, A. Butchart, C. Mikton, L. Jones, and M. P. Dunne. “The Effect of Multiple Adverse Childhood Experiences on Health: A Systematic Review and Meta-Analysis.” Lancet Public Health 2(8) (August 2017): e356–e366. doi: 10.1016/S2468-2667(17)30118-4.

3. D. W. Brown, R. F. Anda, H. Tiemeier, V. J. Felitti, V. J. Edwards, J. B. Croft, and W. H. Giles. “Adverse Childhood Experiences and the Risk of Premature Mortality.” Am J Prev Med 37(5) (2009): 389–396. doi: 10.1016/j.amepre.2009.06.021.

4. M. Sato, E. Ueda, A. Konno, H. Hirai H, Y. Kurauchi, A. Hisatsune, H. Katsuki, and T. Seki. “Glucocorticoids Negatively Regulates Chaperone Mediated Autophagy and Microautophagy.” Biochem Biophys Res Commun 528(1) (July 12, 2020): 199–205. doi: 10.1016/j.bbrc.2020.04.132.

5. N. Mizushima and B. Levine. “Autophagy in Human Diseases.” N Engl J Med 383(16) (October 15, 2020): 1564–1576. doi: 10.1056/NEJMra2022774; Tamara Bar-Yosef, Odeya Damri, and Galila Agam. “Dual Role of Autophagy in Diseases of the Central Nervous System.” Front Cellular Neurosci 13 (2019): 196. doi: 10.3389/fncel.2019.00196.

6. Daniel J. Klionsky, Giulia Petroni, Ravi K. Amaravadi, Eric H. Baehrecke, Andrea Ballabio, Patricia Boya, José Manuel Bravo-San Pedro, et al. “Autophagy in Major Human Diseases.” The EMBO Journal 40(19) (2021): e108863. doi: 10.15252/embj.2021108863.

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8. J. M. Silva, S. Rodrigues, B. Sampaio-Marques, et al. “Dysregulation of Autophagy and Stress GranuleRelated Proteins in Stress-Driven Tau Pathology.” Cell Death Differ 26 (2019): 1411–1427. doi: 10.1038/ s41418-018-0217-1.

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Глава 7

1. Nick Lane. Power, Sex, Suicide: Mitochondria and the Meaning of Life (Oxford: Oxford University Press, 2005).

2. Siv G. E. Andersson, Alireza Zomorodipour, Jan O. Andersson, Thomas Sicheritz-Pontén, U. Cecilia M. Alsmark, Raf M. Podowski, A. Kristina Näslund, Ann-Sofie Eriksson, Herbert H. Winkler, and Charles G. Kurland. “The Genome Sequence of Rickettsia Prowazekii and the Origin of Mitochondria.” Nature 396(6707) (1998): 133–40. doi: 10.1038/24094.

3. Lane. Power, Sex, Suicide.

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8. R. L. Frederick and J. M. Shaw. “Moving Mitochondria: Establishing Distribution of an Essential Organelle.” Traffic 8(12) (2007): 1668–1675. doi: 10.1111/j.1600–0854.2007.00644.x.

9. R. Rizzuto, P. Bernardi, and T. Pozzan. “Mitochondria as All-Round Players of the Calcium Game.” J Physiol 529 Pt 1(Pt 1) (2000): 37–47. doi: 10.1111/j.1469–7793.2000.00037.x.

10. Z. Gong, E. Tas, and R. Muzumdar. “Humanin and Age-Related Diseases: A New Link?” Front Endocrinol (Lausanne) 5 (2014): 210. doi: 10.3389/fendo.2014.00210.

11. S. Kim, J. Xiao, J. Wan, P. Cohen, and K. Yen. “Mitochondrially Derived Peptides as Novel Regulators of Metabolism.” J Physiol 595 (2017): 6613–6621. doi: 10.1113/JP274472.

12. L. Guo, J. Tian, and H. Du. “Mitochondrial Dysfunction and Synaptic Transmission Failure in Alzheimer’s Disease.” J Alzheimers Dis 57(4) (2017): 1071–1086. doi: 10.3233/JAD-160702.

13. Sergej L. Mironov and Natalya Symonchuk. “ER Vesicles and Mitochondria Move and Communicate at Synapses.” Journal of Cell Science 119(23) (2006): 4926. doi: 10.1242/jcs.03254.

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16. A. West, G. Shadel, and S. Ghosh. “Mitochondria in Innate Immune Responses.” Nat Rev Immunol 11(6) (2011): 389–402. doi:

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