Inhibition of Drp1 Ameliorates Synaptic Depression, A beta Deposition, and Cognitive Impairment in an Alzheimer's Disease Modelopen access
- Authors
- 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
- Issue Date
- 17-May-2017
- Publisher
- SOC NEUROSCIENCE
- Keywords
- Alzheimer's; amyloid; Drp1; mitochondria; synaptic depression
- Citation
- JOURNAL OF NEUROSCIENCE, v.37, no.20, pp 5099 - 5110
- Pages
- 12
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- JOURNAL OF NEUROSCIENCE
- Volume
- 37
- Number
- 20
- Start Page
- 5099
- End Page
- 5110
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/14903
- DOI
- 10.1523/JNEUROSCI.2385-16.2017
- ISSN
- 0270-6474
1529-2401
- 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-beta(A beta) in neurons and neuropathology and cognitive functions in A beta 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 A beta-treated neurons. Furthermore, Drp1 inhibition significantly improves learning and memory and prevents mitochondrial fragmentation, lipid peroxidation, BACE1 expression, and A beta deposition in the brain in the AD model. These results provide evidence that Drp1 plays an important role in A beta-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.
- Files in This Item
- There are no files associated with this item.
- Appears in
Collections - College of Natural Science > Department of Chemistry > 1. Journal Articles

Items in ScholarWorks are protected by copyright, with all rights reserved, unless otherwise indicated.