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Significance of Programmed Cell Death Pathways in Neurodegenerative Diseases
Dong Guo1,2, Zhihao Liu1,2, Jinglin Zhou1,2
1College of Life Science, Fujian Normal University Qishan Campus, Fuzhou 350117, China.
Abstract:
Programmed cell death (PCD) is a form of cell death distinct from accidental cell death (ACD) and is also referred to as regulated cell death (RCD). Typically, PCD signaling events are precisely regulated by various biomolecules in both spatial and temporal contexts to promote neuronal development, establish neural architecture, and shape the central nervous system (CNS), although the role of PCD extends beyond the CNS. Abnormalities in PCD signaling cascades contribute to the irreversible loss of neuronal cells and function, leading to the onset and progression of neurodegenerative diseases. In this review, we summarize the molecular processes and features of different modalities of PCD, including apoptosis, necroptosis, pyroptosis, ferroptosis, cuproptosis, and other novel forms of PCD, and their effects on the pathogenesis of neurodegenerative diseases, such as Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD), amyotrophic lateral sclerosis (ALS), spinal muscular atrophy (SMA), multiple sclerosis (MS), traumatic brain injury (TBI), and stroke. Additionally, we examine the key factors involved in these PCD signaling pathways and discuss the potential for their development as therapeutic targets and strategies. Therefore, therapeutic strategies targeting the inhibition or facilitation of PCD signaling pathways offer a promising approach for clinical applications in treating neurodegenerative diseases.
Insights
Programmed cell death (PCD) regulates neuronal development but its dysregulation drives neurodegeneration. This review explores PCD types and their role in diseases like Alzheimer's and Parkinson's.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Programmed cell death (PCD), also known as regulated cell death (RCD), is crucial for normal development.
- Dysregulation of PCD signaling contributes to neuronal loss and neurodegenerative diseases.
Purpose of the Study:
- To review the molecular mechanisms of various PCD modalities.
- To examine the role of PCD in the pathogenesis of major neurodegenerative diseases.
- To discuss therapeutic strategies targeting PCD.
Main Methods:
- Literature review of PCD modalities (apoptosis, necroptosis, pyroptosis, ferroptosis, cuproptosis).
- Analysis of PCD's impact on neurodegenerative disease progression (AD, PD, HD, ALS, MS, TBI, stroke).
- Examination of key signaling factors and therapeutic targets.
Main Results:
- Different PCD forms have distinct molecular pathways.
- Aberrant PCD contributes to neuronal damage in various neurological disorders.
- Specific PCD pathways present potential therapeutic targets.
Conclusions:
- Understanding diverse PCD mechanisms is key to treating neurodegenerative diseases.
- Targeting PCD offers a promising therapeutic avenue for neurological conditions.
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