Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss

Synaptic structural and functional damage is a typical pathological feature of Alzheimer’s disease (AD). Normal axonal mitochondrial function and transportation are vital to synaptic function and plasticity because they are necessary for maintaining cellular energy supply and regulating calcium and...

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Main Authors: Chunhui Zhao, Ping Su, Cui Lv, Limin Guo, Guoqiong Cao, Chunxia Qin, Wensheng Zhang
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Oxidative Medicine and Cellular Longevity
Online Access:http://dx.doi.org/10.1155/2019/7593608
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spelling doaj-5ee56fcb7508450ca930945bf8b2e2dd2020-11-25T01:55:02ZengHindawi LimitedOxidative Medicine and Cellular Longevity1942-09001942-09942019-01-01201910.1155/2019/75936087593608Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic LossChunhui Zhao0Ping Su1Cui Lv2Limin Guo3Guoqiong Cao4Chunxia Qin5Wensheng Zhang6Beijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaBeijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaBeijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaBeijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaBeijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaBeijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaBeijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, ChinaSynaptic structural and functional damage is a typical pathological feature of Alzheimer’s disease (AD). Normal axonal mitochondrial function and transportation are vital to synaptic function and plasticity because they are necessary for maintaining cellular energy supply and regulating calcium and redox signalling as well as synaptic transmission and vesicle release. Amyloid-β (Aβ) accumulation is another pathological hallmark of AD that mediates synaptic loss and dysfunction by targeting mitochondria. Therefore, it is important to develop strategies to protect against synaptic mitochondrial damage induced by Aβ. The present study examined the beneficial effects of berberine, a natural isoquinoline alkaloid extracted from the traditional medicinal plant Coptis chinensis, on Aβ-induced mitochondrial and synaptic damage in primary cultured hippocampal neurons. We demonstrate that berberine alleviates axonal mitochondrial abnormalities by preserving the mitochondrial membrane potential and preventing decreases in ATP, increasing axonal mitochondrial density and length, and improving mitochondrial motility and trafficking in cultured hippocampal neurons. Although the underlying protective mechanism remains to be elucidated, the data suggest that the effects of berberine were in part related to its potent antioxidant activity. These findings highlight the neuroprotective and specifically mitoprotective effects of berberine treatment under conditions of Aβ enrichment.http://dx.doi.org/10.1155/2019/7593608
collection DOAJ
language English
format Article
sources DOAJ
author Chunhui Zhao
Ping Su
Cui Lv
Limin Guo
Guoqiong Cao
Chunxia Qin
Wensheng Zhang
spellingShingle Chunhui Zhao
Ping Su
Cui Lv
Limin Guo
Guoqiong Cao
Chunxia Qin
Wensheng Zhang
Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss
Oxidative Medicine and Cellular Longevity
author_facet Chunhui Zhao
Ping Su
Cui Lv
Limin Guo
Guoqiong Cao
Chunxia Qin
Wensheng Zhang
author_sort Chunhui Zhao
title Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss
title_short Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss
title_full Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss
title_fullStr Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss
title_full_unstemmed Berberine Alleviates Amyloid β-Induced Mitochondrial Dysfunction and Synaptic Loss
title_sort berberine alleviates amyloid β-induced mitochondrial dysfunction and synaptic loss
publisher Hindawi Limited
series Oxidative Medicine and Cellular Longevity
issn 1942-0900
1942-0994
publishDate 2019-01-01
description Synaptic structural and functional damage is a typical pathological feature of Alzheimer’s disease (AD). Normal axonal mitochondrial function and transportation are vital to synaptic function and plasticity because they are necessary for maintaining cellular energy supply and regulating calcium and redox signalling as well as synaptic transmission and vesicle release. Amyloid-β (Aβ) accumulation is another pathological hallmark of AD that mediates synaptic loss and dysfunction by targeting mitochondria. Therefore, it is important to develop strategies to protect against synaptic mitochondrial damage induced by Aβ. The present study examined the beneficial effects of berberine, a natural isoquinoline alkaloid extracted from the traditional medicinal plant Coptis chinensis, on Aβ-induced mitochondrial and synaptic damage in primary cultured hippocampal neurons. We demonstrate that berberine alleviates axonal mitochondrial abnormalities by preserving the mitochondrial membrane potential and preventing decreases in ATP, increasing axonal mitochondrial density and length, and improving mitochondrial motility and trafficking in cultured hippocampal neurons. Although the underlying protective mechanism remains to be elucidated, the data suggest that the effects of berberine were in part related to its potent antioxidant activity. These findings highlight the neuroprotective and specifically mitoprotective effects of berberine treatment under conditions of Aβ enrichment.
url http://dx.doi.org/10.1155/2019/7593608
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