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Inhibition of Drp1 Ameliorates Synaptic Depression, Aß Deposition, and Cognitive Impairment in an Alzheimer's Disease Model.
Baek, Seung Hyun; Park, So Jung; Jeong, Jae In; Kim, Sung Hyun; Han, Jihoon; Kyung, Jae Won; Baik, Sang-Ha; Choi, Yuri; Choi, Bo Youn; Park, Jin Su; Bahn, Gahee; Shin, Ji Hyun; Jo, Doo Sin; Lee, Joo-Yong; Jang, Choon-Gon; Arumugam, Thiruma V; Kim, Jongpil; Han, Jeung-Whan; Koh, Jae-Young; Cho, Dong-Hyung; Jo, Dong-Gyu.
Afiliação
  • Baek SH; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Park SJ; Graduate School of East-West Medical Science, Kyung Hee University, 17104 Korea.
  • Jeong JI; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Kim SH; Department of Physiology, School of Medicine, Kyung Hee University, 02447 Korea.
  • Han J; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Kyung JW; Department of Physiology, School of Medicine, Kyung Hee University, 02447 Korea.
  • Baik SH; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Choi Y; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Choi BY; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Park JS; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Bahn G; Department of Health Sciences and Technology, Samsung Advanced Institute of Health Sciences and Technology, Sungkyunkwan University, 06351 Korea.
  • Shin JH; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Jo DS; Graduate School of East-West Medical Science, Kyung Hee University, 17104 Korea.
  • Lee JY; Graduate School of East-West Medical Science, Kyung Hee University, 17104 Korea.
  • Jang CG; Department of Neurology, University of Ulsan College of Medicine, Asan Medical Center, 05505 Korea.
  • Arumugam TV; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Kim J; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Han JW; Department of Physiology, Yong Loo Lin School Medicine, National University of Singapore, 117593 Singapore, and.
  • Koh JY; Department of Biomedical Engineering (BK21 Plus Team), Dongguk University, Seoul, 100-715 Korea.
  • Cho DH; School of Pharmacy, Sungkyunkwan University, 16419 Korea.
  • Jo DG; Department of Neurology, University of Ulsan College of Medicine, Asan Medical Center, 05505 Korea.
J Neurosci ; 37(20): 5099-5110, 2017 05 17.
Article em En | MEDLINE | ID: mdl-28432138
ABSTRACT
Excessive mitochondrial fission is a prominent early event and contributes to mitochondrial dysfunction, synaptic failure, and neuronal cell death in the progression of Alzheimer's disease (AD). However, it remains to be determined whether inhibition of excessive mitochondrial fission is beneficial in mammal models of AD. To determine whether dynamin-related protein 1 (Drp1), a key regulator of mitochondrial fragmentation, can be a disease-modifying therapeutic target for AD, we examined the effects of Drp1 inhibitor on mitochondrial and synaptic dysfunctions induced by oligomeric amyloid-ß (Aß) in neurons and neuropathology and cognitive functions in Aß precursor protein/presenilin 1 double-transgenic AD mice. Inhibition of Drp1 alleviates mitochondrial fragmentation, loss of mitochondrial membrane potential, reactive oxygen species production, ATP reduction, and synaptic depression in Aß-treated neurons. Furthermore, Drp1 inhibition significantly improves learning and memory and prevents mitochondrial fragmentation, lipid peroxidation, BACE1 expression, and Aß deposition in the brain in the AD model. These results provide evidence that Drp1 plays an important role in Aß-mediated and AD-related neuropathology and in cognitive decline in an AD animal model. Therefore, inhibiting excessive Drp1-mediated mitochondrial fission may be an efficient therapeutic avenue for AD.SIGNIFICANCE STATEMENT Mitochondrial fission relies on the evolutionary conserved dynamin-related protein 1 (Drp1). Drp1 activity and mitochondria fragmentation are significantly elevated in the brains of sporadic Alzheimer's disease (AD) cases. In the present study, we first demonstrated that the inhibition of Drp1 restored amyloid-ß (Aß)-mediated mitochondrial dysfunctions and synaptic depression in neurons and significantly reduced lipid peroxidation, BACE1 expression, and Aß deposition in the brain of AD mice. As a result, memory deficits in AD mice were rescued by Drp1 inhibition. These results suggest that neuropathology and combined cognitive decline can be attributed to hyperactivation of Drp1 in the pathogenesis of AD. Therefore, inhibitors of excessive mitochondrial fission, such as Drp1 inhibitors, may be a new strategy for AD.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Peptídeos beta-Amiloides / Transtornos Cognitivos / Dinaminas / Depressão Sináptica de Longo Prazo / Doença de Alzheimer / Mitocôndrias / Neurônios Limite: Animals Idioma: En Revista: J Neurosci Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Peptídeos beta-Amiloides / Transtornos Cognitivos / Dinaminas / Depressão Sináptica de Longo Prazo / Doença de Alzheimer / Mitocôndrias / Neurônios Limite: Animals Idioma: En Revista: J Neurosci Ano de publicação: 2017 Tipo de documento: Article