Mitochondrial Drugs for Alzheimer Disease
Therapeutic strategies for Alzheimer disease (AD) have yet to offer a diseasemodifying effect to stop the debilitating progression of neurodegeneration and cognitive decline. Rather, treatments thus far are limited to agents that slow disease progression without halting it, and although much work to...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2009-12-01
|
Series: | Pharmaceuticals |
Subjects: | |
Online Access: | http://www.mdpi.com/1424-8247/2/3/287/ |
id |
doaj-9a650730923e49f1b5533491f87e2dfa |
---|---|
record_format |
Article |
spelling |
doaj-9a650730923e49f1b5533491f87e2dfa2020-11-25T03:45:09ZengMDPI AGPharmaceuticals1424-82472009-12-012328729810.3390/ph2030287Mitochondrial Drugs for Alzheimer DiseaseXiongwei ZhuMark A. SmithKatarzyna A. Gustaw-RothenbergGeorge PerryXinglong WangDavid J. BondaTherapeutic strategies for Alzheimer disease (AD) have yet to offer a diseasemodifying effect to stop the debilitating progression of neurodegeneration and cognitive decline. Rather, treatments thus far are limited to agents that slow disease progression without halting it, and although much work towards a cure is underway, a greater understanding of disease etiology is certainly necessary for any such achievement. Mitochondria, as the centers of cellular metabolic activity and the primary generators of reactive oxidative species in the cell, received particular attention especially given that mitochondrial defects are known to contribute to cellular damage. Furthermore, as oxidative stress has come to the forefront of AD as a causal theory, and as mitochondrial damage is known to precede much of the hallmark pathologies of AD, it seems increasingly apparent that this metabolic organelle is ultimately responsible for much, if not all of disease pathogenesis. In this review, we review the role of neuronal mitochondria in the pathogenesis of AD and critically assess treatment strategies that utilize this upstream access point as a method for disease prevention. We suspect that, with a revived focus on mitochondrial repair and protection, an effective and realistic therapeutic agent can be successfully developed. http://www.mdpi.com/1424-8247/2/3/287/Alzheimer diseaseantioxidantcoenzyme QDimebonfissionfusionmitochondriamitochondrial drugsmitochondrial permeability transition poreoxidative stress |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiongwei Zhu Mark A. Smith Katarzyna A. Gustaw-Rothenberg George Perry Xinglong Wang David J. Bonda |
spellingShingle |
Xiongwei Zhu Mark A. Smith Katarzyna A. Gustaw-Rothenberg George Perry Xinglong Wang David J. Bonda Mitochondrial Drugs for Alzheimer Disease Pharmaceuticals Alzheimer disease antioxidant coenzyme Q Dimebon fission fusion mitochondria mitochondrial drugs mitochondrial permeability transition pore oxidative stress |
author_facet |
Xiongwei Zhu Mark A. Smith Katarzyna A. Gustaw-Rothenberg George Perry Xinglong Wang David J. Bonda |
author_sort |
Xiongwei Zhu |
title |
Mitochondrial Drugs for Alzheimer Disease |
title_short |
Mitochondrial Drugs for Alzheimer Disease |
title_full |
Mitochondrial Drugs for Alzheimer Disease |
title_fullStr |
Mitochondrial Drugs for Alzheimer Disease |
title_full_unstemmed |
Mitochondrial Drugs for Alzheimer Disease |
title_sort |
mitochondrial drugs for alzheimer disease |
publisher |
MDPI AG |
series |
Pharmaceuticals |
issn |
1424-8247 |
publishDate |
2009-12-01 |
description |
Therapeutic strategies for Alzheimer disease (AD) have yet to offer a diseasemodifying effect to stop the debilitating progression of neurodegeneration and cognitive decline. Rather, treatments thus far are limited to agents that slow disease progression without halting it, and although much work towards a cure is underway, a greater understanding of disease etiology is certainly necessary for any such achievement. Mitochondria, as the centers of cellular metabolic activity and the primary generators of reactive oxidative species in the cell, received particular attention especially given that mitochondrial defects are known to contribute to cellular damage. Furthermore, as oxidative stress has come to the forefront of AD as a causal theory, and as mitochondrial damage is known to precede much of the hallmark pathologies of AD, it seems increasingly apparent that this metabolic organelle is ultimately responsible for much, if not all of disease pathogenesis. In this review, we review the role of neuronal mitochondria in the pathogenesis of AD and critically assess treatment strategies that utilize this upstream access point as a method for disease prevention. We suspect that, with a revived focus on mitochondrial repair and protection, an effective and realistic therapeutic agent can be successfully developed. |
topic |
Alzheimer disease antioxidant coenzyme Q Dimebon fission fusion mitochondria mitochondrial drugs mitochondrial permeability transition pore oxidative stress |
url |
http://www.mdpi.com/1424-8247/2/3/287/ |
work_keys_str_mv |
AT xiongweizhu mitochondrialdrugsforalzheimerdisease AT markasmith mitochondrialdrugsforalzheimerdisease AT katarzynaagustawrothenberg mitochondrialdrugsforalzheimerdisease AT georgeperry mitochondrialdrugsforalzheimerdisease AT xinglongwang mitochondrialdrugsforalzheimerdisease AT davidjbonda mitochondrialdrugsforalzheimerdisease |
_version_ |
1724510912664043520 |