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<article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:ali="http://www.niso.org/schemas/ali/1.0/" article-type="review-article" dtd-version="1.2" xml:lang="en"><front><journal-meta><journal-id journal-id-type="publisher-id">Acta Naturae</journal-id><journal-title-group><journal-title xml:lang="en">Acta Naturae</journal-title><trans-title-group xml:lang="ru"><trans-title>Acta Naturae</trans-title></trans-title-group></journal-title-group><issn publication-format="print">2075-8251</issn><publisher><publisher-name xml:lang="en">Acta Naturae Ltd</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="publisher-id">11723</article-id><article-id pub-id-type="doi">10.32607/actanaturae.11723</article-id><article-categories><subj-group subj-group-type="toc-heading" xml:lang="en"><subject>Reviews</subject></subj-group><subj-group subj-group-type="toc-heading" xml:lang="ru"><subject>Обзоры</subject></subj-group><subj-group subj-group-type="article-type"><subject>Review Article</subject></subj-group></article-categories><title-group><article-title xml:lang="en">The Role of a Pathological Interaction between β-amyloid and Mitochondria in the Occurrence and Development of Alzheimer’s Disease</article-title><trans-title-group xml:lang="ru"><trans-title>Патологическое взаимодействие β-амилоида и митохондрий: роль в возникновении и развитии болезни Альцгеймера</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-4111-638X</contrib-id><contrib-id contrib-id-type="scopus">56533409200</contrib-id><contrib-id contrib-id-type="researcherid">AAH-3366-2021</contrib-id><name-alternatives><name xml:lang="en"><surname>Nikolaeva</surname><given-names>Natalya S.</given-names></name><name xml:lang="ru"><surname>Николаева</surname><given-names>Наталья Сергеевна</given-names></name></name-alternatives><address><country country="RU">Russian Federation</country></address><bio xml:lang="en"><p>PhD in Biology, Researcher, Laboratory of Biochemistry of Pathological Processes</p></bio><bio xml:lang="ru"><p>кандидат биологических наук, научный сотрудник лаборатории биохимии патологических процессов</p></bio><email>nikolaevans@bk.ru</email><xref ref-type="aff" rid="aff1"/></contrib><contrib contrib-type="author"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-8712-8941</contrib-id><contrib-id contrib-id-type="scopus">57217080561</contrib-id><name-alternatives><name xml:lang="en"><surname>Yandulova</surname><given-names>Ekaterina Yu.</given-names></name><name xml:lang="ru"><surname>Яндулова</surname><given-names>Екатерина Юрьевна</given-names></name></name-alternatives><address><country country="RU">Russian Federation</country></address><bio xml:lang="en"><p>junior researcher Laboratory of Biochemistry of Pathological Processes</p></bio><bio xml:lang="ru"><p>младший научный сотрудник лаборатории биохимии патологических процессов</p></bio><email>yandulova@ipac.ac.ru</email><xref ref-type="aff" rid="aff1"/></contrib><contrib contrib-type="author"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-5370-3370</contrib-id><contrib-id contrib-id-type="scopus">57218690994</contrib-id><contrib-id contrib-id-type="researcherid">AAY-6632-2020</contrib-id><name-alternatives><name xml:lang="en"><surname>Aleksandrova</surname><given-names>Yulia R.</given-names></name><name xml:lang="ru"><surname>Александрова</surname><given-names>Юлия Романовна</given-names></name></name-alternatives><address><country country="RU">Russian Federation</country></address><bio xml:lang="en"><p>junior researcher Laboratory of Biochemistry of Pathological Processes</p></bio><bio xml:lang="ru"><p>младший научный сотрудник лаборатории биохимии патологических процессов</p></bio><email>aleksandrova@ipac.ac.ru</email><xref ref-type="aff" rid="aff1"/></contrib><contrib contrib-type="author"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-0855-5348</contrib-id><name-alternatives><name xml:lang="en"><surname>Starikov</surname><given-names>Andrei S.</given-names></name><name xml:lang="ru"><surname>Стариков</surname><given-names>Андрей Сергеевич</given-names></name></name-alternatives><address><country country="RU">Russian Federation</country></address><bio xml:lang="ru"><p>младший научный сотрудник лаборатории фталоцианинов и их аналогов</p></bio><email>andreistarikov1994@mail.ru</email><xref ref-type="aff" rid="aff1"/></contrib><contrib contrib-type="author"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0001-9346-5920</contrib-id><contrib-id contrib-id-type="scopus">49864350200</contrib-id><contrib-id contrib-id-type="researcherid">L-8499-2017</contrib-id><name-alternatives><name xml:lang="en"><surname>Neganova</surname><given-names>Margarita E.</given-names></name><name xml:lang="ru"><surname>Неганова</surname><given-names>Маргарита Евгеньевна</given-names></name></name-alternatives><address><country country="RU">Russian Federation</country></address><bio xml:lang="en"><p>Head of the Laboratory of Biochemistry of Pathological Processes, Leading Researcher, Candidate of Chemical Sciences</p></bio><bio xml:lang="ru"><p>заведующая лаборатории биохимии патологических процессов, ведущий научный сотрудник, кандидат химических наук</p></bio><email>neganova83@mail.ru</email><xref ref-type="aff" rid="aff1"/></contrib></contrib-group><aff-alternatives id="aff1"><aff><institution xml:lang="en">Federal State Budgetary Institution of Science Institute of Physiologically Active Compounds of the Russian Academy of Sciences</institution></aff><aff><institution xml:lang="ru">Федеральное государственное бюджетное учреждение науки Институт физиологически активных веществ Российской академии наук</institution></aff></aff-alternatives><pub-date date-type="pub" iso-8601-date="2022-10-29" publication-format="electronic"><day>29</day><month>10</month><year>2022</year></pub-date><volume>14</volume><issue>3</issue><issue-title xml:lang="en"/><issue-title xml:lang="ru"/><fpage>19</fpage><lpage>34</lpage><history><date date-type="received" iso-8601-date="2022-04-27"><day>27</day><month>04</month><year>2022</year></date><date date-type="accepted" iso-8601-date="2022-07-05"><day>05</day><month>07</month><year>2022</year></date></history><permissions><copyright-statement xml:lang="en">Copyright ©; 2022, Nikolaeva N.S., Yandulova E.Y., Aleksandrova Y.R., Starikov A.S., Neganova M.E.</copyright-statement><copyright-statement xml:lang="ru">Copyright ©; 2022, Николаева Н.С., Яндулова Е.Ю., Александрова Ю.Р., Стариков А.С., Неганова М.Е.</copyright-statement><copyright-year>2022</copyright-year><copyright-holder xml:lang="en">Nikolaeva N.S., Yandulova E.Y., Aleksandrova Y.R., Starikov A.S., Neganova M.E.</copyright-holder><copyright-holder xml:lang="ru">Николаева Н.С., Яндулова Е.Ю., Александрова Ю.Р., Стариков А.С., Неганова М.Е.</copyright-holder><ali:free_to_read xmlns:ali="http://www.niso.org/schemas/ali/1.0/"/><license><ali:license_ref xmlns:ali="http://www.niso.org/schemas/ali/1.0/">https://creativecommons.org/licenses/by/4.0</ali:license_ref></license></permissions><self-uri xlink:href="https://actanaturae.ru/2075-8251/article/view/11723">https://actanaturae.ru/2075-8251/article/view/11723</self-uri><abstract xml:lang="en"><p>Alzheimer’s disease (AD) is one of the most common neurodegenerative diseases in existence. It is characterized by an impaired cognitive function that is due to a progressive loss of neurons in the brain. Extracellular β-amyloid (Aβ) plaques are the main pathological features of the disease. In addition to abnormal protein aggregation, increased mitochondrial fragmentation, altered expression of the genes involved in mitochondrial biogenesis, disruptions in the ER–mitochondria interaction, and mitophagy are observed. Reactive oxygen species are known to affect Aβ expression and aggregation. In turn, oligomeric and aggregated Aβ cause mitochondrial disorders. In this review, we summarize available knowledge about the pathological effects of Aβ on mitochondria and the potential molecular targets associated with proteinopathy and mitochondrial dysfunction for the pharmacological treatment of Alzheimer’s disease.</p></abstract><trans-abstract xml:lang="ru"><p>Болезнь Альцгеймера – одно из наиболее распространенных нейродегенеративных заболеваний, характеризующееся нарушением когнитивных функций из-за прогрессирующей потери нейронов в головном мозге. Основным патологическим признаком заболевания являются внеклеточные β-амилоидные (Аβ) бляшки. При болезни Альцгеймера наблюдаются не только нарушения в агрегации белка, но и усиление фрагментации митохондрий, изменения в экспрессии генов митохондриального биогенеза, а также взаимодействия эндоплазматического ретикулума и митохондрий, митофагии. Известно, что на уровень экспрессии и процессы агрегации Аβ влияют активные кислородные радикалы. В свою очередь, олигомерные или агрегированные формы Аβ вызывают митохондриальные нарушения. В этом обзоре нами обобщены данные о патологическом действии Aβ на митохондрии, а также о потенциальных молекулярных мишенях, связанных с протеинопатией, для фармакологической коррекции болезни Альцгеймера.</p></trans-abstract><kwd-group xml:lang="en"><kwd>Alzheimer’s disease</kwd><kwd>beta-amyloid</kwd><kwd>mitochondria</kwd><kwd>MAM</kwd><kwd>mitophagy</kwd></kwd-group><kwd-group xml:lang="ru"><kwd>болезнь Альцгеймера</kwd><kwd>бета-амилоид</kwd><kwd>бета-секретаза</kwd><kwd>митохондрии</kwd><kwd>митофагия</kwd><kwd>эндоплазматический ретикулум</kwd></kwd-group><funding-group><award-group><funding-source><institution-wrap><institution xml:lang="ru">Российский научный фонд</institution></institution-wrap><institution-wrap><institution xml:lang="en">Russian Science Foundation</institution></institution-wrap></funding-source><award-id>22-23-00995</award-id></award-group></funding-group></article-meta></front><body></body><back><ref-list><ref id="B1"><label>1.</label><mixed-citation>Sengoku R. // Neuropathology. 2020. V. 40. № 1. P. 22–29.</mixed-citation></ref><ref id="B2"><label>2.</label><mixed-citation>Lane C.A., Hardy J., Schott J.M. // Eur. J. Neurol. 2018. V. 25. № 1. P. 59–70.</mixed-citation></ref><ref id="B3"><label>3.</label><mixed-citation>Chen S., Jiang Q., Huang P., Hu C., Shen H., Schachner M., ZhaoW. // Brain. Res. Bull. 2020. V. 162. P. 141–150.</mixed-citation></ref><ref id="B4"><label>4.</label><mixed-citation>Scheltens P., Blennow K., Breteler M.M.B., de Strooper B., Frisoni G.B., Salloway S., Vander Flier W.M. // Lancet. 2016. V. 388. P. 505–517.</mixed-citation></ref><ref id="B5"><label>5.</label><mixed-citation>Hardy J., Allsop D. // Trends Pharmacol. Sci. 1991. V. 12. P. 383–388.</mixed-citation></ref><ref id="B6"><label>6.</label><mixed-citation>Winblad B., Amouyel P., Andrieu S., Ballard C., Brayne C., Brodaty H., Cedazo Minguez A., Dubois B., Edvardsson D., Feldman H., et al. // Lancet. Neurol. 2016. V. 15. P. 455–532.</mixed-citation></ref><ref id="B7"><label>7.</label><mixed-citation>Swerdlow R.H., Burns J.M., Khan S.M. // Biochim. Biophys. Acta. 2014. V. 1842. № 8. P. 1219–1231.</mixed-citation></ref><ref id="B8"><label>8.</label><mixed-citation>Stanciu G.D., Luca A., Rusu R.N., Bild V., Chiriac S.I.B., Solcan C., Bild W., Ababei D.C. // Biomolecules. 2020. V. 10. № 1. P. 40.</mixed-citation></ref><ref id="B9"><label>9.</label><mixed-citation>Arnsten A.F.T., Datta D., Tredici K.D., Braak H. // Alzheimers Dement. 2021. V. 17. № 1. P. 115–124.</mixed-citation></ref><ref id="B10"><label>10.</label><mixed-citation>Cheignon C., Tomas M., Bonnefont-Rousselo D., Faller P., Hureau C., Collin F. // Redox. Biol. 2018. V. 14. P. 450–464.</mixed-citation></ref><ref id="B11"><label>11.</label><citation-alternatives><mixed-citation xml:lang="en">Pohanka M. // Bratisl. Lek. Listy. 2018 . V. 119. № 9. P. 535–543.</mixed-citation><mixed-citation xml:lang="ru">Pohanka M. // Bratisl. Lek. Listy. 2018. V. 119. № 9. P. 535–543.</mixed-citation></citation-alternatives></ref><ref id="B12"><label>12.</label><mixed-citation>Tong B.C., Wu A.J., Li M., Cheung K.H. // Biochim. Biophys. Acta. Mol. Cell. Res. 2018. V. 1865. № 11. Pt B. P. 1745–1760.</mixed-citation></ref><ref id="B13"><label>13.</label><mixed-citation>Akiyama H., Barger S., Barnum S., Bradt B., Bauer J., Cole G.M., Cooper N.R., Eikelenboom P., Emmerling M., Fiebich B.L., et al. // Neurobiol. Aging. 2000. V. 21. № 3. P. 383–421.</mixed-citation></ref><ref id="B14"><label>14.</label><mixed-citation>Scheffer S., Hermkens D.M.A., van der Weerd L., de Vries H.E., Daemen M.J.A.P. // Arterioscler. Thromb. Vasc. Biol. 2021. V. 41. P. 1265–1283.</mixed-citation></ref><ref id="B15"><label>15.</label><mixed-citation>Ward R.J., Zucca F.A., Duyn J.H., Crichton R.R., Zecca L. // Lancet. Neurol. 2014. V. 13. № 10. P. 1045–1060.</mixed-citation></ref><ref id="B16"><label>16.</label><mixed-citation>Seaks C.E., Wilcock D.M. // PLoS Pathog. 2020. V. 16. № 11. P. e1008596.</mixed-citation></ref><ref id="B17"><label>17.</label><mixed-citation>Asai M., Kawakubo T., Mori R., Nobuhisa I. // Yakugaku. Zasshi. 2017. V. 137. № 7. P. 801–805.</mixed-citation></ref><ref id="B18"><label>18.</label><citation-alternatives><mixed-citation xml:lang="en">An S.S., Bagyinszky E., Kim H.R., Seok J.W., Shin H.W., Bae S., Kim S.,Youn Y.C. // BMC Neurol. 2016. V. 16. P. 71.</mixed-citation><mixed-citation xml:lang="ru">An S.S., Bagyinszky E., Kim H.R., Seok J.W., Shin H.W., Bae S., Kim S., Youn Y.C. // BMC Neurol. 2016. V. 16. P. 71.</mixed-citation></citation-alternatives></ref><ref id="B19"><label>19.</label><mixed-citation>Cai Y., An S.S., Kim S. // Clin. Interv. Aging. 2015. V. 10. P. 1163–1172.</mixed-citation></ref><ref id="B20"><label>20.</label><citation-alternatives><mixed-citation xml:lang="en">Sun L., Zhou R., Yang G., Shi Y. // Proc. Natl. Acad. Sci. USA. 2017. V. 114. № 4. P. E476–e85.</mixed-citation><mixed-citation xml:lang="ru">Sun L., Zhou R., Yang G., Shi Y. // Proc. Natl. Acad. Sci. USA. 2017. V. 114. № 4. P. E476–Е485.</mixed-citation></citation-alternatives></ref><ref id="B21"><label>21.</label><mixed-citation>Dai M.H., Zheng H., Zeng L.D., Zhang Y. // Oncotarget. 2018. V. 9. № 19. P. 15132–15143.</mixed-citation></ref><ref id="B22"><label>22.</label><mixed-citation>Veugelen S., Saito T., Saido T.C., Chávez-Gutiérrez L., De Strooper B. // Neuron. 2016. V. 90. № 2. P. 410–416.</mixed-citation></ref><ref id="B23"><label>23.</label><mixed-citation>Szaruga M., Munteanu B., Lismont S., Veugelen S., Horré K., Mercken M., Saido T.C., Ryan N.S., De Vos T., Savvides S.N., et al. // Cell. 2017. V. 170. № 3. P. 443–456.e14.</mixed-citation></ref><ref id="B24"><label>24.</label><mixed-citation>Armstrong R.A. // Folia. Neuropathol. 2019. V. 57. № 2. P. 87–105.</mixed-citation></ref><ref id="B25"><label>25.</label><mixed-citation>Tilokani L., Nagashima S., Paupe V., Prudent J. // Essays Biochem. 2018. V. 62. № 3. P. 341–360.</mixed-citation></ref><ref id="B26"><label>26.</label><mixed-citation>Wang W., Zhao F., Ma X., Perry G., Zhu X. // Mol. Neurodegener. 2020. V. 15. № 1. P. 30.</mixed-citation></ref><ref id="B27"><label>27.</label><mixed-citation>Wang Y., Xu E., Musich P.R., Lin F. // CNS Neurosci. Ther. 2019. V. 25. № 7. P. 816–824.</mixed-citation></ref><ref id="B28"><label>28.</label><mixed-citation>Cheng H., Gang X., Liu Y., Wang G., Zhao X., Wang G. // Am. J. Physiol. Endocrinol. Metab. 2020. V. 318. № 5. P. E750–E764.</mixed-citation></ref><ref id="B29"><label>29.</label><mixed-citation>Cai Q., Tammineni P. // Front. Cell. Neurosci. 2016. V. 10. P. 24.</mixed-citation></ref><ref id="B30"><label>30.</label><mixed-citation>Del Prete D., Suski J.M., Oulès B., Debayle D., Gay A.S., Lacas-Gervais S., Bussiere R., Bauer C., Pinton P., Paterlini-Bréchot P., et al. // Alzheimers Dis. 2017. V. 55. № 4. P. 1549–1570.</mixed-citation></ref><ref id="B31"><label>31.</label><mixed-citation>Heinemeyer T., Stemmet M., Bardien S., Neethling A. // DNA Cell. Biol. 2019. V. 38. № 1. P. 23–40.</mixed-citation></ref><ref id="B32"><label>32.</label><mixed-citation>Cline E.N., Bicca M.A., Viola K.L., Klein W.L. // J. Alzheimers Dis. 2018. V. 64. P. 567–610.</mixed-citation></ref><ref id="B33"><label>33.</label><mixed-citation>Chen G.F., Xu T.H., Yan Y., Zhou Y.R., Jiang Y., Melcher K., Xu H.E. // Acta Pharmacol. Sin. 2017. V. 38. № 9. P. 1205–1235.</mixed-citation></ref><ref id="B34"><label>34.</label><mixed-citation>Tan J.Z.A., Gleeson P.A. // J. Biol. Chem. 2019. V. 294. № 5. P. 1618–1631.</mixed-citation></ref><ref id="B35"><label>35.</label><mixed-citation>Nhan H.S., Chiang K., Koo E.H. // Acta Neuropathol. 2015. V. 129. № 1. P. 1–19.</mixed-citation></ref><ref id="B36"><label>36.</label><mixed-citation>Habib A., Sawmiller D., Tan J. // J. Neurosci. Res. 2017. V. 95. № 4. P. 973–991.</mixed-citation></ref><ref id="B37"><label>37.</label><mixed-citation>Fol R., Braudeau J., Ludewig S., Abel T., Weyer S.W., Roederer J.P., Brod F., Audrain M., Bemelmans A.P., Buchholz C.J., et al. // Acta. Neuropathol. 2016. V. 131. № 2. P. 247–266.</mixed-citation></ref><ref id="B38"><label>38.</label><mixed-citation>Liu X., Liu Y., Ji S. // Membranes (Basel). 2021. V. 11. № 12. P. 983.</mixed-citation></ref><ref id="B39"><label>39.</label><mixed-citation>Bolduc D.M., Montagna D.R., Gu Y., Selkoe D.J., Wolfe M.S. // Proc. Natl. Acad. Sci. USA. 2016. V. 113. № 5. P. E509–E518.</mixed-citation></ref><ref id="B40"><label>40.</label><mixed-citation>Oikawa N., Walter J. // Cells. 2019. V. 8. № 3. P. 209.</mixed-citation></ref><ref id="B41"><label>41.</label><mixed-citation>Bai X.C., Yan C., Yang G., Lu P., Ma D., Sun L., Zhou R., Scheres S.H., Shi Y. // Nature. 2015. V. 525. № 7568. P. 212–217.</mixed-citation></ref><ref id="B42"><label>42.</label><mixed-citation>Hampel H., Vassar R., De Strooper B., Hardy J., Willem M., Singh N., Zhou J., Yan R., Vanmechelen E., De Vos A., et al. // Biol. Psychiatry. 2021. V. 89. № 8. P. 745–756.</mixed-citation></ref><ref id="B43"><label>43.</label><mixed-citation>Anand B.G., Wu Q., Karthivashan G., Shejale K.P., Amidian S., Wille H., Kar S. // Bioact. Mater. 2021. V. 6. № 12. P. 4491–4505.</mixed-citation></ref><ref id="B44"><label>44.</label><mixed-citation>Jarosz-Griffiths H.H., Noble E., Rushworth J.V., Hooper N.M. // J. Biol. Chem. 2016. V. 291. № 7. P. 3174–3183.</mixed-citation></ref><ref id="B45"><label>45.</label><mixed-citation>Lauritzen I., Pardossi-Piquard R., Bourgeois A., Pagnotta S., Biferi M.G., Barkats M., Lacor P., Klein W., Bauer C., Checler F. // Acta. Neuropathol. 2016. V. 132. № 2. P. 257–276.</mixed-citation></ref><ref id="B46"><label>46.</label><mixed-citation>van Gijsel-Bonnello M., Baranger K., Benech P., Rivera S., Khrestchatisky M., de Reggi M., Gharib B. // PLoS One. 2017. V. 12. № 4. P. e0175369.</mixed-citation></ref><ref id="B47"><label>47.</label><mixed-citation>Chadha S., Behl T., Sehgal A., Kumar A., Bungau S. // Mitochondrion. 2021. V. 56. P. 62–72.</mixed-citation></ref><ref id="B48"><label>48.</label><mixed-citation>Schützmann M.P., Hasecke F., Bachmann S., Zielinski M., Hänsch S., Schröder G.F., Zempel H., Hoyer W. // Nat. Commun. 2021. V. 12. № 1. P. 4634.</mixed-citation></ref><ref id="B49"><label>49.</label><citation-alternatives><mixed-citation xml:lang="en">Avendaño-Monsalve M.C., Ponce-Rojas J.C., Funes S. // Biol. Chem 2020. V. 401. № 6–7. P. 645–661.</mixed-citation><mixed-citation xml:lang="ru">Avendaño-Monsalve M.C., Ponce-Rojas J.C., Funes S. // Biol. Chem. 2020. V. 401. № 6–7. P. 645–661.</mixed-citation></citation-alternatives></ref><ref id="B50"><label>50.</label><mixed-citation>Hansson Petersen C.A., Alikhani N., Behbahani H., Wiehager B., Pavlov P.F., Alafuzoff I., Leinonen V., Ito A., Winblad B., Glaser E., et al. // Proc. Natl. Acad. Sci. USA. 2008. V. 105. № 35. P. 13145–13150.</mixed-citation></ref><ref id="B51"><label>51.</label><mixed-citation>Del Prete D., Suski J.M., Oulès B., Debayle D., Gay A.S., Lacas-Gervais S., Bussiere R., Bauer C., Pinton P., Paterlini-Bréchot P., et al. // J. Alzheimers Dis. 2017. V. 55. № 4. P. 1549–1570.</mixed-citation></ref><ref id="B52"><label>52.</label><mixed-citation>Araiso Y., Tsutsumi A., Qiu J., Imai K., Shiota T., Song J., Lindau C., Wenz L.S., Sakaue H., Yunoki K., et al. // Nature. 2019. V. 575. № 7782. P. 395–401.</mixed-citation></ref><ref id="B53"><label>53.</label><mixed-citation>Palmer C.S., Anderson A.J., Stojanovski D. // FEBS. Lett. 2021. V. 595. № 8. P. 1107–1131.</mixed-citation></ref><ref id="B54"><label>54.</label><mixed-citation>Cenini G., Rüb C., Bruderek M., Voos W. // Mol. Biol. Cell. 2016. V. 27. № 21. P. 3257–3272.</mixed-citation></ref><ref id="B55"><label>55.</label><mixed-citation>Zhang Z., Cui D., Zhang T., Sun Y., Ding S. // Diabetes. Metab. Syndr. Obes. 2020. V. 13. P. 1417–1428.</mixed-citation></ref><ref id="B56"><label>56.</label><mixed-citation>Area-Gomez E., Schon E.A. // FASEB J. 2017. V. 31. № 3. P. 864–867.</mixed-citation></ref><ref id="B57"><label>57.</label><mixed-citation>Yang S., Zhou R., Zhang C., He S., Su Z. // Front. Cell. Dev. Biol. 2020. V. 8. P. 571554.</mixed-citation></ref><ref id="B58"><label>58.</label><mixed-citation>Luan Y., Luan Y., Yuan R.X., Feng Q., Chen X., Yang Y. // Oxid. Med. Cell. Longev. 2021 V. 2021. P. 4578809.</mixed-citation></ref><ref id="B59"><label>59.</label><mixed-citation>Wang N., Wang C., Zhao H., He Y., Lan B., Sun L., Gao Y. // Cells. 2021. V. 10. № 3. P. 657.</mixed-citation></ref><ref id="B60"><label>60.</label><mixed-citation>Weng T.Y., Tsai S.A., Su T.P. // J. Biomed. Sci. 2017. V. 24. № 1. P. 74.</mixed-citation></ref><ref id="B61"><label>61.</label><mixed-citation>Mangla A., Guerra M.T., Nathanson M.H. // Cell. Calcium. 2020. V. 85. P. 102132.</mixed-citation></ref><ref id="B62"><label>62.</label><mixed-citation>Shoshan-Barmatz V., Nahon-Crystal E., Shteinfer-Kuzmine A., Gupta R. // Pharmacol. Res. 2018. V. 131. P. 87–101.</mixed-citation></ref><ref id="B63"><label>63.</label><mixed-citation>Veeresh P., Kaur H., Sarmah D., Mounica L., Verma G., Kotian V., Kesharwani R., Kalia K., Borah A., Wang X., et al. // Ann. N.Y. Acad. Sci. 2019. V. 1457. № 1. P. 41–60.</mixed-citation></ref><ref id="B64"><label>64.</label><mixed-citation>Giacomello M., Pellegrini L. // Cell. Death. Differ. 2016. V. 23. № 9. P. 1417–1427.</mixed-citation></ref><ref id="B65"><label>65.</label><mixed-citation>Hedskog L., Pinho C.M., Filadi R., Ronnback A., Hertwig L., Wiehager B., Larssen P., Gellhaar S., Sandebring A., Westerlund M., et al. // Proc. Natl. Acad. Sci. USA. 2013. V. 110. № 19. P. 7916–7921.</mixed-citation></ref><ref id="B66"><label>66.</label><mixed-citation>Manczak M., Reddy P.H. // Hum. Mol. Genet. 2012. V. 21. № 23. P. 5131–5146.</mixed-citation></ref><ref id="B67"><label>67.</label><mixed-citation>Schreiner B., Hedskog L., Wiehager B., Ankarcrona M. // J. Alzheimers Dis. 2015. V. 43. № 2. P. 369–374.</mixed-citation></ref><ref id="B68"><label>68.</label><citation-alternatives><mixed-citation xml:lang="en">Pera M., Larrea D., Guardia-Laguarta C., Montesinos J., Velasco K.R., Agrawal R.R., Xu Y., Chan R.B., Paolo G.D., Mehler M.F., et al. // EMBO J. 2017. V. 36. № 22. P. 3356–3371.</mixed-citation><mixed-citation xml:lang="ru">Pera M., Larrea D., Guardia-Laguarta C., Montesinos J., Velasco K.R., Agrawal R.R., Xu Y., Chan R.B., Paolo G.D., Mehler M.F., et аl. // EMBO J. 2017. V. 36. № 22. P. 3356–3371.</mixed-citation></citation-alternatives></ref><ref id="B69"><label>69.</label><mixed-citation>Area-Gomez E., de Groof A., Bonilla E., Montesinos J., Tanji K., Boldogh I., Pon L., Schon E.A. // Cell Death Dis. 2018. V. 9. № 3. P. 335.</mixed-citation></ref><ref id="B70"><label>70.</label><mixed-citation>Annunziata I., Sano R., d’Azzo A. // Cell Death Dis. 2018. V. 9. № 3. P. 328.</mixed-citation></ref><ref id="B71"><label>71.</label><mixed-citation>Cho Y.Y., Kwon O.H., Chung S. // Molecules. 2020. V. 25. № 23. P. 5490.</mixed-citation></ref><ref id="B72"><label>72.</label><mixed-citation>Brandimarti R., Hill G.S., Geiger J.D., Meucci O. // Sci. Rep. 2017. V. 7. № 1. P. 15103.</mixed-citation></ref><ref id="B73"><label>73.</label><mixed-citation>Montesinos J., Pera M., Larrea D., Guardia-Laguarta C., Agrawal R.R., Velasco K.R., Yun T.D., Stavrovskaya I.G., Xu Y., Koo S.Y., et al. // EMBO J. 2020. V. 39. № 20. P. e103791.</mixed-citation></ref><ref id="B74"><label>74.</label><mixed-citation>Di Pardo A., Maglione V. // Front. Neurosci. 2018. V. 12. P. 249.</mixed-citation></ref><ref id="B75"><label>75.</label><mixed-citation>Area-Gomez E, Del Carmen Lara Castillo M., Tambini M.D., Guardia-Laguarta C., de Groof A.J., Madra M., Ikenouchi J., Umeda M., Bird T.D., Sturley S.L., et al. // EMBO J. 2012. V. 31. № 21. P. 4106–4123.</mixed-citation></ref><ref id="B76"><label>76.</label><citation-alternatives><mixed-citation xml:lang="en">Takuma K., Fang F., Zhang W., Yan S., Fukuzaki E., Du H., Sosunov A., McKhann G., Funatsu Y., Nakamichi N., et al. // Proc. Natl. Acad. Sci. USA. 2009. V. 106. №47. P. 20021–20026.</mixed-citation><mixed-citation xml:lang="ru">Takuma K., Fang F., Zhang W., Yan S., Fukuzaki E., Du H., Sosunov A., McKhann G., Funatsu Y., Nakamichi N., et al. // Proc. Natl. Acad. Sci. USA. 2009. V. 106. № 47. P. 20021–20026.</mixed-citation></citation-alternatives></ref><ref id="B77"><label>77.</label><mixed-citation>Fang F., Yu Q., Arancio O., Chen D., Gore S.S., Yan S.S., Yan S.F. // Hum. Mol. Genet. 2018. V. 27. № 6. P. 1002–1014.</mixed-citation></ref><ref id="B78"><label>78.</label><citation-alternatives><mixed-citation xml:lang="en">Piras S., Furfaro A.L., Domenicotti C., Traverso N., Marinari U.M., Pronzato M.A., Nitti M. // Oxid. Med. Cell. Longevity. 2016. V. 2016. P. 9348651.</mixed-citation><mixed-citation xml:lang="ru">Piras S., Furfaro A.L., Domenicotti C., Traverso N., Marinari U.M., Pronzato M.A., Nitti M. // Oxid. Med. Cell. Longevity. 2016. V. 2016. Р. 9348651.</mixed-citation></citation-alternatives></ref><ref id="B79"><label>79.</label><mixed-citation>Manczak M., Anekonda T.S., Henson E., Park B.S., Quinn J., Reddy P.H. // Hum. Mol. Genet. 2006. V. 15. № 9. P. 1437–1449.</mixed-citation></ref><ref id="B80"><label>80.</label><mixed-citation>Hu W., Wang Z., Zheng H. // J. Biol. Chem. 2018. V. 293. № 33. P. 12681–12689.</mixed-citation></ref><ref id="B81"><label>81.</label><mixed-citation>Rhein V., Song X., Wiesner A., Ittner L.M., Baysang G., Meier F., Ozmen L., Bluethmann H., Dröse S., Brandt U., et al. // Proc. Natl. Acad. Sci. USA. 2009. V. 106. № 47. P. 20057–20062.</mixed-citation></ref><ref id="B82"><label>82.</label><mixed-citation>Pickett E.K., Koffie R.M., Wegmann S., Henstridge C.M., Herrmann A.G., Colom-Cadena M., Lleo A., Kay K.R., Vaught M., Soberman R., et al. // J. Alzheimers Dis. 2016. V. 53. № 3. P. 787–800.</mixed-citation></ref><ref id="B83"><label>83.</label><mixed-citation>Spires-Jones T.L., Hyman B.T. // Neuron. 2014. V. 82. № 4. P. 756–771.</mixed-citation></ref><ref id="B84"><label>84.</label><mixed-citation>Grimm A., Eckert A. // J. Neurochem. 2017. V. 143. № 4. P. 418–431.</mixed-citation></ref><ref id="B85"><label>85.</label><mixed-citation>Qin W., Haroutunian V., Katsel P., Cardozo C.P., Ho L., Buxbaum J.D., Pasinetti G.M. // Arch. Neurol. 2009. V. 66. № 3. P. 352–361.</mixed-citation></ref><ref id="B86"><label>86.</label><mixed-citation>Katsouri L., Lim Y.M., Blondrath K., Eleftheriadou I., Lombardero L., Birch A.M., Mirzaei N., Irvine E.E., Mazarakis N.D., Sastre M. // Proc. Natl. Acad. Sci. USA. 2016. V. 113. № 43. P. 12292–12297.</mixed-citation></ref><ref id="B87"><label>87.</label><mixed-citation>Katsouri L., Parr C., Bogdanovic N., Willem M., Sastre M. // J. Alzheimers Dis. 2011. V. 25. № 1. P. 151–162.</mixed-citation></ref><ref id="B88"><label>88.</label><mixed-citation>Motyl J., Wencel P.L., Cieslik M., Strosznajder R.P., Strosznajder J.B. // Mol. Neurobiol. 2018. V. 55. № 1. P. 727–740.</mixed-citation></ref><ref id="B89"><label>89.</label><mixed-citation>Mohamed J.S., Hajira A., Pardo P.S., Boriek A.M. // Diabetes. 2014. V. 63. № 5. P. 1546–1559.</mixed-citation></ref><ref id="B90"><label>90.</label><mixed-citation>Long J.M., Maloney B., Rogers J.T., Lahiri D.K. // Mol. Psychiatry. 2019. V. 24. № 3. P. 345–363.</mixed-citation></ref><ref id="B91"><label>91.</label><mixed-citation>Chen F.Z., Zhao Y., Chen H.Z. // Int. J. Mol. Med. 2019. V. 43. № 1. P. 91–102.</mixed-citation></ref><ref id="B92"><label>92.</label><mixed-citation>Kumar S., Reddy P.H. // Biochim. Biophys. Acta. Mol. Basis. Dis. 2020. V. 1866. № 12. P. 165937.</mixed-citation></ref><ref id="B93"><label>93.</label><mixed-citation>John A., Kubosumi A., Reddy P.H. // Cells. 2020. V. 9. № 6. P. 1345.</mixed-citation></ref><ref id="B94"><label>94.</label><mixed-citation>Wang Y., Liu N., Lu B. // CNS. Neurosci. Ther. 2019. V. 25. № 7. P. 859–875.</mixed-citation></ref><ref id="B95"><label>95.</label><mixed-citation>Pradeepkiran J.A., Reddy H.P. // Ageing. Res. Rev. 2020. V. 64. P. 101191.</mixed-citation></ref><ref id="B96"><label>96.</label><mixed-citation>Cai Q., Jeong Y.Y. // Cells. 2020. V. 9. № 1. P. 150.</mixed-citation></ref><ref id="B97"><label>97.</label><mixed-citation>Liu L., Liao X., Wu H., Li Y., Zhu Y., Chen Q. // Antioxid. Redox Signal. 2020. V. 32. № 12. P. 906–927.</mixed-citation></ref><ref id="B98"><label>98.</label><mixed-citation>Du F., Yu Q., Yan S., Hu G., Lue L.F., Walker D.G., Wu L., Yan S.F., Tieu K., Yan S.S. // Brain. 2017. V. 140. № 12. P. 3233–3251.</mixed-citation></ref><ref id="B99"><label>99.</label><mixed-citation>Vaillant-Beuchot L., Mary A., Pardossi-Piquard R., Bourgeois A., Lauritzen I., Eysert F., Kinoshita P.F., Cazareth J., Badot C., Fragaki K., et al. // Acta. Neuropathol. 2021. V. 141. № 1. P. 39–65.</mixed-citation></ref><ref id="B100"><label>100.</label><mixed-citation>Guillaud L., El-Agamy S.E., Otsuki M., Terenzio M. // Front. Mol. Neurosci. 2020. V. 13. P. 556175.</mixed-citation></ref><ref id="B101"><label>101.</label><mixed-citation>Cagin U., Duncan O.F., Gatt A.P., Dionne M.S., Sweeney S.T., Bateman J.M. // Proc. Natl. Acad. Sci. USA. 2015. V. 112. № 44. P. E6000–E6009.</mixed-citation></ref><ref id="B102"><label>102.</label><mixed-citation>Wang Q., Tian J., Chen H., Du H., Guo L. // Neurobiol. Dis. 2019. V. 127. P. 410–418.</mixed-citation></ref><ref id="B103"><label>103.</label><mixed-citation>Tammineni P., Ye X., Feng T., Aikal D., Cai Q. // Elife. 2017. V. 6. P. e21776.</mixed-citation></ref><ref id="B104"><label>104.</label><mixed-citation>Pigino G., Morfini G., Pelsman A., Mattson M.P., Brady S.T., Busciglio J. // J. Neurosci. 2003. V. 23. № 11. P. 4499–4508.</mixed-citation></ref><ref id="B105"><label>105.</label><mixed-citation>Yu S.B., Pekkurnaz G. // J. Mol. Biol. 2018. V. 430. № 21. P. 3922–3941.</mixed-citation></ref><ref id="B106"><label>106.</label><mixed-citation>Glancy B., Kim Y., Katti P., Willingham T.B. // Front. Physiol. 2020. V. 11. P. 541040.</mixed-citation></ref><ref id="B107"><label>107.</label><mixed-citation>Oliver D., Reddy P.H. // Cells. 2019. V. 8. № 9. P. 961.</mixed-citation></ref><ref id="B108"><label>108.</label><mixed-citation>Harland M., Torres S., Liu J., Wang X. // J. Neurosci. 2020. V. 40. № 8. P. 1756–1765.</mixed-citation></ref><ref id="B109"><label>109.</label><mixed-citation>Wang W., Yin J., Ma X., Zhao F., Siedlak S.L., Wang Z., Torres S., Fujioka H., Xu Y., Perry G., et al. // Hum. Mol. Genet. 2017. V. 26. № 21. P. 4118–4131.</mixed-citation></ref><ref id="B110"><label>110.</label><mixed-citation>Wang X., Su B., Siedlak S.L., Moreira P.I., Fujioka H., Wang Y., Casadesus G., Zhu X. // Proc. Natl. Acad. Sci. USA. 2008. V. 105. № 49. P. 19318–19323.</mixed-citation></ref><ref id="B111"><label>111.</label><mixed-citation>Pradeepkiran J.A., Reddy A.P., Yin X., Manczak M., Reddy P.H. // Hum. Mol. Genet. 2020. V. 29. № 1. P. 49–69.</mixed-citation></ref><ref id="B112"><label>112.</label><mixed-citation>Eysert F., Kinoshita P.F., Mary A., Vaillant-Beuchot L., Checler F., Chami M. // Int. J. Mol. Sci. 2020. V. 21. № 24. P. 9521.</mixed-citation></ref><ref id="B113"><label>113.</label><mixed-citation>Wang L., Gao J., Liu J., Siedlak S.L., Torres S., Fujioka H., Huntley M.L., Jiang Y., Ji H., Yan T., et al. // Cell Metab. 2018. V. 28. № 3. P. 400-414.e8.</mixed-citation></ref><ref id="B114"><label>114.</label><citation-alternatives><mixed-citation xml:lang="en">Leal N.S., Schreiner B., Pinho C.M., Filadi R., Wiehager B., Karlström H., Pizzo, P., Ankarcrona M. // J. Cell. Mol. Med. 2016. V. 20. № 6. P. 1686–1695.</mixed-citation><mixed-citation xml:lang="ru">Leal N.S., Schreiner B., Pinho C.M., Filadi R., Wiehager B., Karlström H., Pizzo P., Ankarcrona M. // J. Cell. Mol. Med. 2016. V. 20. № 6. P. 1686–1695.</mixed-citation></citation-alternatives></ref><ref id="B115"><label>115.</label><mixed-citation>Yu R., Liu T., Jin S.B., Ning C., Lendahl U., Nister M., Zhao J. // Sci. Rep. 2017. V. 7. № 1. P. 880.</mixed-citation></ref><ref id="B116"><label>116.</label><mixed-citation>Panes J.D., Godoy P.A., Silva-Grecchi T., Celis M.T., Ramirez-Molina O., Gavilan J., Munoz-Montecino C., Castro P.A., Moraga-Cid G., Yevenes G.E., et al. // Front. Pharmacol. 2020. V. 11. P. 709.</mixed-citation></ref><ref id="B117"><label>117.</label><mixed-citation>Manczak M., Reddy P.H. // Hum. Mol. Genet. 2012. V. 21. № 11. P. 2538–2547.</mixed-citation></ref><ref id="B118"><label>118.</label><mixed-citation>Kuruva C.S., Manczak M., Yin X., Ogunmokun G., Reddy A.P., Reddy P.H. // Hum. Mol. Genet. 2017. V. 26. № 17. P. 3375–3395.</mixed-citation></ref><ref id="B119"><label>119.</label><mixed-citation>Joshi A.U., Saw N.L., Shamloo M., Mochly-Rosen D. // Oncotarget. 2018. V. 9. № 5. P. 6128–6143.</mixed-citation></ref><ref id="B120"><label>120.</label><mixed-citation>Kim B., Park J., Chang K.T., Lee D.S. // Free. Radic. Biol. Med. 2016. V. 90. P. 184–194.</mixed-citation></ref><ref id="B121"><label>121.</label><mixed-citation>Kim D.I., Lee K.H., Gabr A.A., Choi G.E., Kim J.S., Ko S.H., Han H.J. // Biochim. Biophys. Acta. 2016. V. 1863. № 11. P. 2820–2834.</mixed-citation></ref><ref id="B122"><label>122.</label><mixed-citation>Kikuchi K., Kidana K., Tatebe T., Tomita T. // J. Cell. Biochem. 2017. V. 118. № 12. P. 4183–4190.</mixed-citation></ref><ref id="B123"><label>123.</label><mixed-citation>Jagust W. // Nat. Rev. Neurosci. 2018. V. 19. № 11. P. 687–700.</mixed-citation></ref><ref id="B124"><label>124.</label><mixed-citation>Tarasoff-Conway J.M., Carare R.O., Osorio R.S., Glodzik L., Butler T., Fieremans E., Axel L., Rusinek H., Nicholson C., Zlokovic B.V., et al. // Nat. Rev. Neurol. 2015. V. 11. № 8. P. 457–470.</mixed-citation></ref><ref id="B125"><label>125.</label><mixed-citation>Xin S.H., Tan L., Cao X., Yu J.T., Tan L. // Neurotox. Res. 2018. V. 34. № 3. P. 733–748.</mixed-citation></ref><ref id="B126"><label>126.</label><mixed-citation>Porter K.N., Sarkar S.N., Dakhlallah D.A., Vannoy M.E., Quintana D.D., Simpkins J.W. // Front. Aging. Neurosci. 2020. V. 12. P. 92.</mixed-citation></ref><ref id="B127"><label>127.</label><mixed-citation>Zuroff L., Daley D., Black K.L., Koronyo-Hamaoui M. // Cell. Mol. Life. Sci. 2017. V. 74. № 12. P. 2167–2201.</mixed-citation></ref><ref id="B128"><label>128.</label><mixed-citation>Brunetti D., Torsvik J., Dallabona C., Teixeira P., Sztromwasser P., Fernandez-Vizarra E., Cerutti R., Reyes A., Preziuso C., D’Amati G., et al. // EMBO. Mol. Med. 2016. V. 8. № 3. P. 176–190.</mixed-citation></ref><ref id="B129"><label>129.</label><mixed-citation>Ciccone L., Shi C., di Lorenzo D., van Baelen A.C., Tonali N. // Molecules. 2020. V. 25. № 10. P. 2439.</mixed-citation></ref><ref id="B130"><label>130.</label><mixed-citation>Teixeira P.F., Masuyer G., Pinho C.M., Branca R.M.M., Kmiec B., Wallin C., Wärmländer S.K.T.S., Berntsson R.P., Ankarcrona M., Gräslund A., et al. // J. Mol. Biol. 2018. V. 430. № 3. P. 348–362.</mixed-citation></ref><ref id="B131"><label>131.</label><mixed-citation>Song E.S., Rodgers D.W., Hersh L.B. // Sci. Rep. 2018. V. 8. № 1. P. 2335.</mixed-citation></ref><ref id="B132"><label>132.</label><mixed-citation>Song E.S., Jang H., Guo H.F., Juliano M.A., Juliano L., Morris A.J., Galperin E., Rodgers D.W., Hersh L.B. // Proc. Natl. Acad. Sci. USA. 2017. V. 114. № 14. P. E2826–E2835.</mixed-citation></ref><ref id="B133"><label>133.</label><mixed-citation>Kurochkin I.V., Guarnera E., Wong J.H., Eisenhaber F., Berezovsky I.N. // Biochemistry. 2017. V. 56. № 1. P. 228–239.</mixed-citation></ref><ref id="B134"><label>134.</label><mixed-citation>Deprez-Poulain R., Hennuyer N., Bosc D., Liang W.G., Enée E., Marechal X., Charton J., Totobenazara J., Berte G., Jahklal J., et al. // Nat. Commun. 2015. V. 6. P. 8250.</mixed-citation></ref><ref id="B135"><label>135.</label><mixed-citation>Wang L., Shi F.X., Xu W.Q., Cao Y., Li N., Li M., Wang Q., Wang J.Z., Tian Q., Yu L.K. // J. Alzheimers. Dis. 2018. V. 64. № 3. P. 957–971.</mixed-citation></ref><ref id="B136"><label>136.</label><citation-alternatives><mixed-citation xml:lang="en">Nalivaeva N.N., Zhuravin I.A., Turner A.J. // Mech. Ageing. Dev. 2020. V. 192. P. 111363.</mixed-citation><mixed-citation xml:lang="ru">Nalivaeva N.N., Zhuravin I.A., Turner A.J. // Mech. Ageing. Dev. 2020. V. 192. Р. 111363.</mixed-citation></citation-alternatives></ref><ref id="B137"><label>137.</label><mixed-citation>de Dios C., Bartolessis I., Roca-Agujetas V., Barbero-Camps E., Mari M., Morales A., Colell A. // Redox. Biol. 2019. V. 26. P. 101283.</mixed-citation></ref><ref id="B138"><label>138.</label><mixed-citation>Yamamoto N., Nakazawa M., Nunono N., Yoshida N., Obuchi A., Tanida M., Suzuki K., Ikeda-Matsuo Y., Sobue K. // Neurosci. Res. 2021. V. 166. P. 62–72.</mixed-citation></ref><ref id="B139"><label>139.</label><mixed-citation>Brunetti D., Catania A., Viscomi C., Deleidi M., Bindoff L.A., Ghezzi D., Zeviani M. // Biomedicines. 2021. V. 9. № 7. P. 833.</mixed-citation></ref><ref id="B140"><label>140.</label><mixed-citation>Fang D., Wang Y., Zhang Z., Du H., Yan S., Sun Q., Zhong C., Wu L., Vangavaragu J.R., Yan S., et al. // Hum. Mol. Genet. 2015. V. 24. № 18. P. 5198–5210.</mixed-citation></ref><ref id="B141"><label>141.</label><mixed-citation>Falkevall A., Alikhani N., Bhushan S., Pavlov P.F., Busch K., Johnson K.A., Eneqvist T., Tjernberg L., Ankarcrona M., Glaser E. // J. Biol. Chem. 2006. V. 281. № 39. P. 29096–29104.</mixed-citation></ref><ref id="B142"><label>142.</label><mixed-citation>Alikhani N., Ankarcrona M., Glaser E. // J. Bioenerg. Biomembr. 2009. V. 41. № 5. P. 447–451.</mixed-citation></ref><ref id="B143"><label>143.</label><mixed-citation>Alikhani N., Guo L., Yan S., Du H., Pinho C.M., Chen J.X., Glaser E., Yan S.S. // J. Alzheimers Dis. 2011. V. 27. № 1. P. 75–87.</mixed-citation></ref><ref id="B144"><label>144.</label><mixed-citation>Chen J., Teixeira P.F., Glaser E., Levine R.L. // Free. Radic. Biol. Med. 2014. V. 77. P. 57–63.</mixed-citation></ref><ref id="B145"><label>145.</label><mixed-citation>Teixeira P.F., Pinho C.M., Branca R.M., Lehtiö J., Levine R.L., Glaser E. // Free. Radic. Biol. Med. 2012. V. 53. № 11. P. 2188–2195.</mixed-citation></ref><ref id="B146"><label>146.</label><mixed-citation>Xu Y.J., Mei Y., Qu Z.L., Zhang S.J., Zhao W., Fang J.S., Wu J., Yang C., Liu S.J., Fang Y.Q., et al. // Biomed. Res. Int. 2018. V. 2018. P. 4606752.</mixed-citation></ref><ref id="B147"><label>147.</label><mixed-citation>Hemmerová E., Špringer T., Krištofiková Z., Homola J. // Sci. Rep. 2019. V. 9. № 1. P. 16700.</mixed-citation></ref><ref id="B148"><label>148.</label><mixed-citation>Zakaria A., Hamdi N., Abdel-Kader R.M. // Mol. Neurobiol. 2016. V. 53. № 2. P. 1220–1228.</mixed-citation></ref><ref id="B149"><label>149.</label><mixed-citation>Xiao X., Chen Q., Zhu X., Wang Y. // Neurobiol. Aging. 2019. V. 81. P. 77–87.</mixed-citation></ref><ref id="B150"><label>150.</label><mixed-citation>Morsy A., Trippier P.C. // J. Med. Chem. 2019. V. 62. № 9. P. 4252–4264.</mixed-citation></ref><ref id="B151"><label>151.</label><mixed-citation>Reiss A.B., Arain H.A., Stecker M.M., Siegart N.M., Kasselman L.J. // Rev. Neurosci. 2018. V. 29. № 6. P. 613–627.</mixed-citation></ref><ref id="B152"><label>152.</label><mixed-citation>Park I., Londhe A.M., Lim J.W., Park B.G., Jung S.Y., Lee J.Y., Lim S.M., No K.T., Lee J., Pae A.N. // J. Comput. Aided. Mol. Des. 2017. V. 31. № 10. P. 929–941.</mixed-citation></ref><ref id="B153"><label>153.</label><mixed-citation>Rottenberg H., Hoek J.B. // Aging. Cell. 2017. V. 16. № 5. P. 943–955.</mixed-citation></ref><ref id="B154"><label>154.</label><mixed-citation>Marroquin L., Swiss R., Will Y. // Curr. Protoc. Toxicol. 2014. V. 60. № 1. P. 25.4.1–25.4.17.</mixed-citation></ref><ref id="B155"><label>155.</label><mixed-citation>Bhatia V., Sharma S. // J. Neurol. Sci. 2021. V. 421. P. 117253.</mixed-citation></ref><ref id="B156"><label>156.</label><mixed-citation>Guo L., Du H., Yan S., Wu X., McKhann G.M., Chen J.X., Yan S.S. // PLoS One. 2013. V. 8. № 1. P. e54914.</mixed-citation></ref><ref id="B157"><label>157.</label><mixed-citation>Nalivaeva N.N., Turner A.J. // Br. J. Pharmacol. 2019. V. 176. № 18. P. 3447–3463.</mixed-citation></ref><ref id="B158"><label>158.</label><mixed-citation>Chang X., Rong C., Chen Y., Yang C., Hu Q., Mo Y., Zhang C., Gu X., Zhang L., He W., et al. // Exp. Cell. Res. 2015. V. 334. № 1. P. 136–145.</mixed-citation></ref><ref id="B159"><label>159.</label><mixed-citation>Zhuravin I.A., Dubrovskaya N.M., Vasilev D.S., Kozlova D.I., Kochkina E.G., Tumanova N.L., Nalivaeva N.N. // Neurochem. Res. 2019. V. 44. № 6. P. 1387–1398.</mixed-citation></ref><ref id="B160"><label>160.</label><mixed-citation>Nan S., Wang P., Zhang Y., Fan J. // Drug. Des. Devel. Ther. 2021. V. 15. P. 2013–2024.</mixed-citation></ref><ref id="B161"><label>161.</label><mixed-citation>Li H., Yu S., Fan T., Zhong Y., Gu T., Wu W., Wang X. // Drug. Dev. Res. 2020. V. 81. № 2. P. 206–214.</mixed-citation></ref><ref id="B162"><label>162.</label><mixed-citation>Wang N., Jia Y., Zhang B., Li Y., Murtaza G., Huang S., Liu X. // Evid. Based. Complement. Alternat. Med. 2020. V. 2020. P. 3862342.</mixed-citation></ref><ref id="B163"><label>163.</label><mixed-citation>Lyu W., Ouyang M., Ma X., Han T., Pi D., Qiu S. // Evid. Based. Complement. Alternat. Med. 2021. V. 2021. P. 5521739.</mixed-citation></ref><ref id="B164"><label>164.</label><mixed-citation>Xu Y.M., Wang X.C., Xu T.T., Li H.Y., Hei S.Y., Luo N.C., Wang H., Zhao W., Fang S.H., Chen Y.B., et al. // Neural. Regen. Res. 2019. V. 14. № 5. P. 794–804.</mixed-citation></ref><ref id="B165"><label>165.</label><mixed-citation>Guo S., Wang J., Wang Y., Zhang Y., Bi K., Zhang Z., Li Q. // Oxid. Med. Cell Longev. 2019. V. 2019. P. 1707218.</mixed-citation></ref><ref id="B166"><label>166.</label><mixed-citation>Farkhondeh T., Samarghandian S., Pourbagher-Shahri A.M., Sedaghat M. // J. Cell. Physiol. 2019. V. 234. № 10. P. 16953–16965.</mixed-citation></ref><ref id="B167"><label>167.</label><mixed-citation>Amalraj A., Pius A., Gopi S., Gopi S. // J. Tradit. Complement. Med. 2017. V. 7. № 2. P. 205–233.</mixed-citation></ref><ref id="B168"><label>168.</label><mixed-citation>Zia A., Farkhondeh T., Pourbagher-Shahri A.M., Samarghandian S. // Biomed. Pharmacother. 2021. V. 134. P. 111119.</mixed-citation></ref><ref id="B169"><label>169.</label><mixed-citation>Ege D. // Materials (Basel). 2021. V. 14. № 12. P. 3332.</mixed-citation></ref><ref id="B170"><label>170.</label><mixed-citation>Amato A., Terzo S., Mulè F. // Antioxidants (Basel). 2019. V. 8. № 12. P. 608.</mixed-citation></ref><ref id="B171"><label>171.</label><mixed-citation>Teter B., Morihara T., Lim G.P., Chu T., Jones M.R., Zuo X., Paul R.M., Frautschy S.A., Cole G.M. // Neurobiol. Dis. 2019. V. 127. P. 432–448.</mixed-citation></ref><ref id="B172"><label>172.</label><mixed-citation>Ege D. // Materials (Basel). 2021. V. 14. № 12. P. 3332.</mixed-citation></ref><ref id="B173"><label>173.</label><mixed-citation>Doytchinova I., Atanasova M., Salamanova E., Ivanov S., Dimitrov I. // Biomolecules. 2020. V. 10. № 9. P. 1323.</mixed-citation></ref><ref id="B174"><label>174.</label><mixed-citation>Zhao L.N., Chiu S.W., Benoit J., Chew L.Y., Mu Y. // J. Phys. Chem. B. 2012. V. 116. P. 7428–7435.</mixed-citation></ref><ref id="B175"><label>175.</label><mixed-citation>Ngo S.T., Li M.S. // J. Phys. Chem B. 2012. V. 116. P. 10165–10175.</mixed-citation></ref><ref id="B176"><label>176.</label><mixed-citation>Kundaikar H.S., Degani M.S. // Chem. Biol. Drug Des. 2015. V. 86. P. 805–812.</mixed-citation></ref><ref id="B177"><label>177.</label><mixed-citation>Tavanti F., Pedone A., Menziani M.C. // Molecules. 2018. V. 23. P. 1320.</mixed-citation></ref><ref id="B178"><label>178.</label><mixed-citation>Zheng K., Dai X., Xiao N., Wu X., Wei Z., Fang W., Zhu Y., Zhang J., Chen X. // Mol Neurobiol. 2017. V. 54. № 3. P. 1967–1977.</mixed-citation></ref><ref id="B179"><label>179.</label><mixed-citation>Huang P., Zheng N., Zhou H.B., Huang J. // Mol. Cell. Biochem. 2020. V. 463. № 1–2. P. 161–173.</mixed-citation></ref><ref id="B180"><label>180.</label><mixed-citation>Matiadis D., Ng S.T., Chen E.H., Nigianni G., Vidali V.P., Canko A., Chen R.P., Sagnou M. // Biomedicines. 2021. V. 9. № 8. P. 955.</mixed-citation></ref><ref id="B181"><label>181.</label><mixed-citation>Amato A., Terzo S., Mulè F. // Antioxidants (Basel). 2019. V. 8. № 12. P. 608.</mixed-citation></ref><ref id="B182"><label>182.</label><mixed-citation>Esselun C., Bruns B., Hagl S., Grewal R., Eckert G.P. // Antioxidants (Basel). 2021. V. 10. № 10. P. 1520.</mixed-citation></ref><ref id="B183"><label>183.</label><mixed-citation>Bai D., Jin G., Zhang D., Zhao L., Wang M., Zhu Q., Zhu L., Sun Y., Liu X., Chen X., et al. // J. Physiol. Sci. 2019. V. 69. № 4. P. 643–652.</mixed-citation></ref><ref id="B184"><label>184.</label><mixed-citation>Saravanan K., Sugarthi S., Suganya S., Kumaradhas P. // J. Biomol. Struct. Dyn. 2021. V. 12. № 1. P. 15.</mixed-citation></ref><ref id="B185"><label>185.</label><mixed-citation>Shen L., Liu L., Li X.Y., Ji H.F. // Appl. Microbiol. Biotechnol. 2019. V. 103. № 17. P. 7141–7149.</mixed-citation></ref><ref id="B186"><label>186.</label><mixed-citation>Wang X.-L., Lin F.-L., Xu W., Wang C., Wang Q., Jiang R.W. // Eur. J. Pharmacol. 2022. V. 288. P. 114938.</mixed-citation></ref><ref id="B187"><label>187.</label><mixed-citation>Huo Q., Shi Y., Qi Y., Huang L., Sui H., Zhao L. // Mater. Sci. Eng. C. Mater. Biol. Appl. 2021. V. 129. P. 112365.</mixed-citation></ref><ref id="B188"><label>188.</label><mixed-citation>Pan Q., Ban Y., Xu L. // J. Biomed. Nanotechnol. 2021. V. 17. № 6. P. 1123–1130.</mixed-citation></ref><ref id="B189"><label>189.</label><mixed-citation>Alizadeh S.R., Ebrahimzadeh M.A. // Phytother. Res. 2022. V. 36. № 2. P. 778–807.</mixed-citation></ref><ref id="B190"><label>190.</label><mixed-citation>Ghafouri-Fard S., Shoorei H., Khanbabapour Sasi A., Taheri M., Ayatollahi S.A. // Biomed. Pharmacother. 2021. V. 141. P. 111847.</mixed-citation></ref><ref id="B191"><label>191.</label><mixed-citation>Khan H., Ullah H., Aschner M., Cheang W.S., Akkol E.K. // Biomolecules. 2020. V. 10. № 1. P. 59.</mixed-citation></ref><ref id="B192"><label>192.</label><mixed-citation>Zhang X.W., Chen J.Y., Ouyang D., Lu J.H. // Int. J. Mol. Sci. 2020. V. 21. № 2. P. 493.</mixed-citation></ref><ref id="B193"><label>193.</label><mixed-citation>Maccioni R.B., Calfío C., González A., Lüttges V. // Biomolecules. 2022. V. 12. № 2. P. 249.</mixed-citation></ref><ref id="B194"><label>194.</label><mixed-citation>Elfiky A.M., Mahmoud A.A., Elreedy H.A., Ibrahim K.S., Ghazy M.A. // Life. Sci. 2021. V. 285. P. 119964.</mixed-citation></ref><ref id="B195"><label>195.</label><mixed-citation>Das S., Majumder T., Sarkar A., Mukherjee P., Basu S. // Int. J. Mol. Sci. 2020. V. 165. P. 1323–1330.</mixed-citation></ref><ref id="B196"><label>196.</label><mixed-citation>Tanaka M., Saito S., Inoue T., Satoh-Asahara N., Ihara M. // Int. J. Mol. Sci. 2020. V. 21. № 6. P. 1992.</mixed-citation></ref><ref id="B197"><label>197.</label><mixed-citation>Li Y., Zhao J., Hölscher C. // CNS Drugs. 2017. V. 31. № 8. P. 639–652.</mixed-citation></ref><ref id="B198"><label>198.</label><mixed-citation>Shi J., Li Y., Zhang Y., Chen J., Gao J., Zhang T., Shang X., Zhang X. // Front. Pharmacol. 2021. V. 12. P. 794458.</mixed-citation></ref><ref id="B199"><label>199.</label><mixed-citation>Dhakal S., Ramsland P.A., Adhikari B., Macreadie I. // Int. J. Mol. Sci. 2021. V. 22. № 17. P. 9456.</mixed-citation></ref><ref id="B200"><label>200.</label><mixed-citation>Ali F., Rahul., Jyoti S., Naz F., Ashafaq M., Shahid M., Siddique Y.H. // Neurosci. Lett. 2019. V. 692. P. 90–99.</mixed-citation></ref><ref id="B201"><label>201.</label><mixed-citation>Akbar M., Shabbir A., Rehman K., Akash M.S.H., Shah M.A. // J. Food Biochem. 2021. V. 45. № 10. P. e13936.</mixed-citation></ref><ref id="B202"><label>202.</label><mixed-citation>Liang Y., Ye C., Chen Y., Chen Y., Diao S., Huang M. // ACS Chem. Neurosci. 2021. V. 12. № 11. P. 1894–1904.</mixed-citation></ref><ref id="B203"><label>203.</label><mixed-citation>Fang Z., Tang Y., Ying J., Tang C., Wang Q. // Chin. Med. 2020. V. 15. P. 82.</mixed-citation></ref><ref id="B204"><label>204.</label><mixed-citation>Raju M., Kunde S.S., Auti S.T., Kulkarni Y.A., Wairkar S. // Life Sci. 2021. V. 285. P. 119990.</mixed-citation></ref><ref id="B205"><label>205.</label><mixed-citation>Azam S., Park J.Y., Kim I.S., Choi D.K. // Biomedicines. 2022. V. 10. № 1. P. 154.</mixed-citation></ref><ref id="B206"><label>206.</label><mixed-citation>Chetia P., Mazumder M.K., Mahanta S., De B., Choudhury M.D. // Med. Hypotheses. 2020. V. 142. № 2. P. 109839.</mixed-citation></ref><ref id="B207"><label>207.</label><mixed-citation>Miao S.X., Wan L.X., He Z.X., Zhou X.L., Li X., Gao F. // J. Nat. Prod. 2021. V. 84. № 8. P. 2374–2379.</mixed-citation></ref><ref id="B208"><label>208.</label><mixed-citation>Zhou D.D., Luo M., Huang S.Y., Saimaiti A., Shang A., Gan R.Y., Li H.B. // Oxid. Med. Cell. Longev. 2021. V. 2021. P. 9932218.</mixed-citation></ref><ref id="B209"><label>209.</label><mixed-citation>Noori T., Dehpour A.R., Sureda A., Sobarzo-Sanchez E., Shirooie S. // Eur. J. Pharmacol. 2021. V. 898. P. 173974.</mixed-citation></ref><ref id="B210"><label>210.</label><mixed-citation>Mphahlele M.J., Agbo E.N., More G.K., Gildenhuys S. // Antioxidants (Basel). 2021. V. 10. № 5. P. 647.</mixed-citation></ref><ref id="B211"><label>211.</label><mixed-citation>Haghighijoo Z., Akrami S., Saeedi M., Zonouzi A., Iraji A., Larijani B., Fakherzadeh H., Sharifi F., Arzaghi S.M., Mahdavi M., et al. // Bioorg. Chem. 2020. V. 103. P. 104146.</mixed-citation></ref><ref id="B212"><label>212.</label><citation-alternatives><mixed-citation xml:lang="en">Vishal P.K., Oh J.M., Khames A., Abdelgawad M.A., Nair A.S., Nath L.R., Gambacorta N., Ciriaco F., Nicolotti O., Kim H., et al. // Pharmaceutics. 2021. V. 13. № 6. P. 850.</mixed-citation><mixed-citation xml:lang="ru">Vishal P.K., Oh J.M., Khames A., Abdelgawad M.A., Nair A.S., Nath L.R., Gambacorta N., Ciriaco F., Nicolotti O., Kim H., et аl. // Pharmaceutics. 2021. V. 13. № 6. P. 850.</mixed-citation></citation-alternatives></ref><ref id="B213"><label>213.</label><mixed-citation>Singh N.A., Bhardwaj V., Ravi C., Ramesh N., Mandal A.K.A., Khan Z.A. // Front. Aging Neurosci. 2018. V. 10. P. 244.</mixed-citation></ref><ref id="B214"><label>214.</label><mixed-citation>Mori T., Koyama N., Tan J., Segawa T., Maeda M., Town T. // J. Biol. Chem. 2019. V. 294. № 8. P. 2714–2731.</mixed-citation></ref><ref id="B215"><label>215.</label><mixed-citation>Yue W., Xu W., Song Y.U., Chun W. // Nat. Prod. Res. Dev. 2017. V. 29. P. 762–766.</mixed-citation></ref><ref id="B216"><label>216.</label><mixed-citation>Qian W., Wei-wei Q., Jie-wen Z. // Chin. Pharm. J. 2019. V. 54. P. 703–710.</mixed-citation></ref><ref id="B217"><label>217.</label><mixed-citation>Wang H., Li L., Jia K., Wang Q., Sui S., Lin Y., He Y. // Neuroreport. 2020. V. 31. P. 1104–1110.</mixed-citation></ref><ref id="B218"><label>218.</label><mixed-citation>Lee H.J., Jeong H.R., Park J.H., Hoe H.S. // Biology (Basel). 2021. V. 10. № 9. P. 938.</mixed-citation></ref><ref id="B219"><label>219.</label><mixed-citation>Kaur D., Behl T., Sehgal A., Singh S., Sharma N., Chigurupati S., Alhowail A., Abdeen A., Ibrahim S.F., Vargas-De-La-Cruz C., et al. // Life. Sci. 2021. V. 284. P. 119899.</mixed-citation></ref><ref id="B220"><label>220.</label><mixed-citation>Reddy P.H., Manczak M., Kandimalla R. // Hum. Mol. Genet. 2017. V. 26. № 8. P. 1483–1496.</mixed-citation></ref><ref id="B221"><label>221.</label><mixed-citation>Stefanova N.A., Muraleva N.A., Maksimova K.Y., Rudnitskaya E.A., Kiseleva E., Telegina D.V., Kolosova N. // Aging (Albany NY). 2016. V. 8. № 11. P. 2713–2733.</mixed-citation></ref><ref id="B222"><label>222.</label><mixed-citation>Zafeer M.F., Firdaus F., Anis E., Mobarak Hossain M. // Neurotoxicology. 2019. V. 73. P. 246–257.</mixed-citation></ref><ref id="B223"><label>223.</label><mixed-citation>Lan J.S., Zeng R.F., Jiang X.Y., Hou J.W., Liu Y., Hu Z.H., Li H.X., Li Y., Xie S.S., Ding Y., Zhang T. // Bioorg. Chem. 2020. V. 94. P. 103413.</mixed-citation></ref><ref id="B224"><label>224.</label><mixed-citation>Benchekroun M., Pachón-Angona I., Luzet V., Martin H., Oset-Gasque M.J., Marco-Contelles J., Ismaili L. // Bioorg. Chem. 2019. V. 85. P. 221–228.</mixed-citation></ref><ref id="B225"><label>225.</label><mixed-citation>Costa M., Bernardi J., Fiuza T., Costa L., Brandão R., Pereira M.E. // Chem. Biol. Interact. 2016. V. 253. P. 10–17.</mixed-citation></ref><ref id="B226"><label>226.</label><mixed-citation>Dos Santos S.M., Romeiro C.F.R., Rodrigues C.A., Cerqueira A.R.L., Monteiro M.C. // Oxid. Med. Cell. Longev. 2019. V. 2019. P. 8409329.</mixed-citation></ref><ref id="B227"><label>227.</label><citation-alternatives><mixed-citation xml:lang="en">Shinto L., Quinn J., Montine T., Dodge H.H., Woodward W., Baldauf-Wagner S., Waichunas D., Bumgarner L., Bourdette D., Silbert L., et al. // J. Alzheimers. Dis. 2014. V. 38. № 1. P. 111–120.</mixed-citation><mixed-citation xml:lang="ru">Shinto L., Quinn J., Montine T., Dodge H.H., Woodward W., Baldauf-Wagner S., Waichunas D., Bumgarner L., Bourdette D., Silbert L., et аl. // J. Alzheimers. Dis. 2014. V. 38. № 1. P. 111–120.</mixed-citation></citation-alternatives></ref><ref id="B228"><label>228.</label><mixed-citation>Reddy P.H., Manczak M., Kandimalla R. // Hum. Mol. Genet. 2017. V. 26. № 8. P. 1483–1496.</mixed-citation></ref><ref id="B229"><label>229.</label><mixed-citation>Reddy P.H., Manczak M., Yin X., Reddy A.P. // J. Alzheimers Dis. 2018. V. 62. № 4. P. 1549–1565.</mixed-citation></ref><ref id="B230"><label>230.</label><mixed-citation>Hroch L., Benek O., Guest P., Aitken L., Soukup O., Janockova J., Musil K., Dohnal V., Dolezal R., Kuca K., et al. // Bioorg. Med. Chem. Lett. 2016. V. 26. № 15. P. 3675–3678.</mixed-citation></ref><ref id="B231"><label>231.</label><mixed-citation>Aitken L., Benek O., McKelvie B.E., Hughes R.E., Hroch L., Schmidt M., Major L.L., Vinklarova L., Kuca K., Smith T.K., et al. // Molecules. 2019. V. 24. № 15. P. 2757.</mixed-citation></ref><ref id="B232"><label>232.</label><mixed-citation>Benek O., Hroch L., Aitken L., Dolezal R., Guest P., Benkova M., Soukup O., Musil K., Kuca K., Smith T.K., et al. // Med. Chem. 2017. V. 13. № 4. P. 345–358.</mixed-citation></ref><ref id="B233"><label>233.</label><mixed-citation>Xiao X., Chen Q., Zhu X., Wang Y. // Neurobiol. Aging. 2019. V. 81. P. 77–87.</mixed-citation></ref><ref id="B234"><label>234.</label><mixed-citation>Yao J., Du H., Yan S., Fang F., Wang C., Lue L.F., Guo L., Chen D., Stern D.M., Moore F.J., et al. // J. Neurosci. 2011. V. 31. № 6. P. 2313–2320.</mixed-citation></ref></ref-list></back></article>
