唐玉航, 韦俊宏, 肖荣清, 岑育芳, 王一涵, 漆光紫, 庞雅琴. 调节性细胞死亡在铝神经毒性中的机制研究进展[J]. 环境与职业医学, 2023, 40(7): 854-860. DOI: 10.11836/JEOM22493
引用本文: 唐玉航, 韦俊宏, 肖荣清, 岑育芳, 王一涵, 漆光紫, 庞雅琴. 调节性细胞死亡在铝神经毒性中的机制研究进展[J]. 环境与职业医学, 2023, 40(7): 854-860. DOI: 10.11836/JEOM22493
TANG Yuhang, WEI Junhong, XIAO Rongqing, CEN Yufang, WANG Yihan, QI Guangzi, PANG Yaqin. Advances on mechanisms of regulated cell death in neurotoxicity of aluminum[J]. Journal of Environmental and Occupational Medicine, 2023, 40(7): 854-860. DOI: 10.11836/JEOM22493
Citation: TANG Yuhang, WEI Junhong, XIAO Rongqing, CEN Yufang, WANG Yihan, QI Guangzi, PANG Yaqin. Advances on mechanisms of regulated cell death in neurotoxicity of aluminum[J]. Journal of Environmental and Occupational Medicine, 2023, 40(7): 854-860. DOI: 10.11836/JEOM22493

调节性细胞死亡在铝神经毒性中的机制研究进展

Advances on mechanisms of regulated cell death in neurotoxicity of aluminum

  • 摘要:

    铝是一种在地壳中含量丰富且应用广泛的轻金属。近年来,环境和职业铝暴露对人体的不良健康影响引起越来越多学者的关注。铝暴露对中枢神经系统产生毒性作用,并被认为与阿尔兹海默病的发生发展密切相关。铝的神经毒性机制十分复杂,调节性细胞死亡(RCD)在铝诱导神经细胞死亡过程中的作用有待深入研究。RCD是指在生理和病理条件下由多种细胞内信号转导途径调节的所有细胞死亡方式,包括细胞凋亡、坏死性凋亡、细胞自噬、细胞焦亡和铁死亡等。本文概述了每种RCD方式在铝诱导神经细胞死亡过程中的形态学特征和机制研究进展,并讨论了不同RCD方式之间的联系与转化,为今后铝暴露致神经毒性的治疗和干预提供新的科学依据。

     

    Abstract:

    Aluminum is a light metal which is rich in the earth's crust and widely used. Recently, the adverse health effects of environmental and occupational aluminum exposure on human have attracted more and more attention. Aluminum exposure has toxic effects on the central nervous system and is believed to be closely related to the development and progression of Alzheimer's disease. The neurotoxic mechanism of aluminum is complex, especially the role of regulated cell death (RCD) in aluminum-induced neuronal death remains to be further studied. RCD refers to all modes of cell death regulated by multiple intracellular signal transduction pathways under physiological and pathological conditions, including apoptosis, necroptosis, autophagy, pyroptosis, and ferroptosis. This review summarized the morphological characteristics and mechanisms of each RCD mode in the process of aluminum-induced neuronal death, and discussed the relationship and transformation between different RCD modes, providing a new scientific basis for future studies on the treatment and intervention of neurotoxicity induced by aluminum exposure.

     

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