神经退行性变
氧化应激
帕金森病
神经炎症
神经科学
疾病
多巴胺能
失调家庭
生物能学
医学
线粒体
病态的
生物信息学
心理学
多巴胺
病理
生物
内科学
精神科
细胞生物学
作者
Kamatham Pushpa Tryphena,Uppala Sai Nikhil,Poojitha Pinjala,Saurabh Srivastava,Shashi Bala Singh,Dharmendra Kumar Khatri
标识
DOI:10.1021/acschemneuro.2c00819
摘要
The prevalence of Parkinson's disease (PD) continues to increase despite substantial research. Mounting evidence states that dysfunctional mitochondrial bioenergetics play a vital role in PD etiology. A disturbance in the electron transport chain, more precisely, disruption of the mitochondrial complex I (MCI), is the most detrimental factor. Due to increased susceptibility toward MCI damage, the dopaminergic neurons experience oxidative stress and a compromise in ATP production, leading to neurodegeneration and PD. This article reviews the association of MCI with pathological mechanisms like α-synucleinopathy, neuroinflammation, oxidative stress, and ER stress and also describes the potential therapeutic options explored to overcome MCI dysfunction and related consequences.
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