Wnt signaling in synaptogenesis of Alzheimer's disease

Ibrain Pub Date : 2023-09-06 DOI:10.1002/ibra.12130
Cheng-Ting Zhang, Joy Wang, Wen-Yuan Wang
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Abstract

Alzheimer's disease (AD), recognized as the leading cause of dementia, occupies a prominent position on the list of significant neurodegenerative disorders, representing a significant global health concern with far-reaching implications at both individual and societal levels. The primary symptom of Alzheimer's disease is a decrease in synaptic potency along with synaptic connection loss. Synapses, which act as important linkages between neuronal units within the cerebral region, are critical in signal transduction processes essential to orchestrating cognitive tasks. Synaptic connections act as critical interconnections between neuronal cells inside the cerebral environment, facilitating critical signal transduction processes required for cognitive functions. The confluence of axonal and dendritic filopodial extensions culminates in the creation of intercellular connections, coordinated by various signals and molecular mechanisms. The progression of synaptic maturation and plasticity is a critical determinant in maintaining mental well-being, and abnormalities in these processes have been linked to the development of neurodegenerative diseases. Wnt signaling pathways are important to the orchestration of synapse development. This review examines the complicated interplay between Wnt signaling and dendritic filopodia, including an examination of the regulatory complexities and molecular machinations involved in synaptogenesis progression. Then, these findings are contextualized within the context of AD pathology, allowing for the consideration of prospective therapeutic approaches based on the findings and development of novel avenues for future scientific research.

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Wnt信号在阿尔茨海默病突触发生中的作用。
阿尔茨海默病(AD)被公认为痴呆症的主要病因,在严重的神经退行性疾病列表中占据重要地位,代表着一个重大的全球健康问题,在个人和社会层面都具有深远的影响。阿尔茨海默病的主要症状是突触能力下降以及突触连接丧失。突触是大脑区域内神经元单位之间的重要联系,在协调认知任务所必需的信号转导过程中至关重要。突触连接是大脑环境中神经元细胞之间的关键互连,促进认知功能所需的关键信号转导过程。轴突和树突丝足延伸的汇合最终形成细胞间连接,由各种信号和分子机制协调。突触成熟和可塑性的进展是维持心理健康的关键决定因素,这些过程的异常与神经退行性疾病的发展有关。Wnt信号通路对突触发育的协调非常重要。这篇综述研究了Wnt信号传导和树突丝足之间的复杂相互作用,包括研究突触发生过程中的调控复杂性和分子机制。然后,将这些发现放在AD病理学的背景下,考虑基于这些发现的前瞻性治疗方法,并为未来的科学研究开发新的途径。
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