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神经分化程序中细胞和分子信号调节的新见解。

A New Insight in Cellular and Molecular Signaling Regulation for Neural Differentiation Program.

作者信息

Shahid Rabia, Begum Sumreen

机构信息

Sindh Institute of Urology and Transplantation (SIUT), Near Civil Hospital, Sardar Yaqoob Ali Khan Road, Karachi, 74200, Pakistan.

出版信息

Mol Neurobiol. 2025 Jun 20. doi: 10.1007/s12035-025-05122-x.

Abstract

Numerous neurological conditions impact the brain, spinal cord, and nerves, including neurodegenerative diseases such as Alzheimer's and Parkinson's disease, autoimmune disorders like Multiple sclerosis, seizure disorders such as Epilepsy, and neuropsychiatric disorders like Schizophrenia and Autism spectrum disorders. Neural stem cells (NSCs) exhibit developmental abnormalities linked to the dysregulation of signaling pathways associated with diverse neurological disorders. NSCs can self-renew and differentiate into various neural cell types. NSC holds enormous therapeutic potential for targeting anomalous neural networks, traumatic brain injuries, and stroke. NSC differentiation programs are regulated by multiple elements, comprising growth factors, neurotransmitters, and extracellular matrix components, with intricate orchestration of cellular and molecular signaling pathways. This review aims to provide current information regarding the critical mechanisms of neural signaling circuits with interacting proteins involved in regular neural differentiation programs. The pivotal complex communication channels include the Notch, Wnt, BMP, RA, FGF, EGF, and Hippo signaling pathways. These circuits are implicated in the processes of NSC maintenance, proliferation, and differentiation, which collectively govern neural fate determination. This information can be used to initiate and promote neural regeneration. Based on the contributing factors in each signaling pathway, novel methods can be formulated and implemented for better and more robust neural differentiation programs. Hence, innovative approaches to treating neural disorders through an enhanced understanding of neural differentiation signaling pathways are paving the way for more effective therapeutic strategies.

摘要

许多神经系统疾病会影响大脑、脊髓和神经,包括神经退行性疾病,如阿尔茨海默病和帕金森病;自身免疫性疾病,如多发性硬化症;癫痫等发作性疾病;以及精神分裂症和自闭症谱系障碍等神经精神疾病。神经干细胞(NSCs)表现出与多种神经系统疾病相关信号通路失调有关的发育异常。神经干细胞可以自我更新并分化为各种神经细胞类型。神经干细胞在针对异常神经网络、创伤性脑损伤和中风方面具有巨大的治疗潜力。神经干细胞的分化程序受多种因素调节,包括生长因子、神经递质和细胞外基质成分,以及细胞和分子信号通路的复杂协调。本综述旨在提供有关神经信号回路关键机制的当前信息,以及参与正常神经分化程序的相互作用蛋白。关键的复杂通信通道包括Notch、Wnt、BMP、RA、FGF、EGF和Hippo信号通路。这些信号回路参与神经干细胞的维持、增殖和分化过程,共同决定神经命运。这些信息可用于启动和促进神经再生。基于每个信号通路中的影响因素,可以制定和实施新的方法,以实现更好、更强健的神经分化程序。因此,通过增强对神经分化信号通路的理解来治疗神经疾病的创新方法,正在为更有效的治疗策略铺平道路。

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