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首页> 外文期刊>Antioxidants and redox signalling >Dysregulation of Intracellular Calcium Signaling in Alzheimer's Disease
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Dysregulation of Intracellular Calcium Signaling in Alzheimer's Disease

机译:阿尔茨海默病中细胞内钙信号传导的失调

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Significance: Calcium (Ca~(2+)) hypothesis of Alzheimer's disease (AD) gains popularity. It points to new signaling pathways that may underlie AD pathogenesis. Based on calcium hypothesis, novel targets for the development of potential AD therapies are identified. Recent Advances: Recently, the key role of neuronal store-operated calcium entry (nSOCE) in the development of AD has been described. Correct regulation of nSOCE is necessary for the stability of postsynaptic contacts to preserve the memory formation. Molecular identity of hippocampal nSOCE is defined. Perspective nSOCE-activating molecule, prototype of future anti-AD drugs, is described. Critical Issues: Endoplasmic reticulum Ca~(2+) overload happens in many but not in all AD models. The nSOCE targeting therapy described in this review may not be universally applicable. Future Directions: There is a need to determine whether AD is a syndrome with one critical signaling pathway that initiates pathology, or it is a disorder with many different signaling pathways that are disrupted simultaneously or one after each other. It is necessary to validate applicability of nSOCE-activating therapy for the development of anti-AD medication. There is an experimental correlation between downregulated nSOCE and disrupted postsynaptic contacts in AD mouse models. Signaling mechanisms downstream of nSOCE which are responsible for the regulation of stability of postsynaptic contacts have to be discovered. That will bring new targets for the development of AD-preventing therapies. Antioxid. Redox Signal. 29, 1176–1188.
机译:意义:钙(Ca〜(2+))Alzheimer疾病的假说(广告)增长普及。它指向可能提高AD发病机制的新信令途径。基于钙假设,鉴定了开发潜在广告疗法的新型目标。最近的进展:最近,描述了神经元储存钙入口(NSOCE)在广告开发中的关键作用。对于突触后触点的稳定性来保持存储器形成,对NSOCE的正确调节是必要的。定义了海马NSOGE的分子标识。描述了未来抗AD药物的透视NSOCE激活分子。关键问题:内质网Ca〜(2+)在许多广告模型中发生许多但不发生。本综述中描述的NSOCE靶向疗法可能不是普遍适用的。未来的方向:需要确定AD是否是一种具有引发病理学的一个关键信令途径的综合征,或者是一种具有许多不同信号通路的疾病,这些途径是同时破坏的或彼此之后的许多不同的信号通路。有必要验证NSOCE激活治疗的适用性是否开发抗AD药物。下调的NSOCE与AD小鼠模型中破坏的突触后触点之间存在实验相关性。必须发现负责突触触点稳定性调节的NSOCE下游的信号机制。这将为禁止疗法的发展带来新的目标。 Antioxid。氧化还原信号。 29,1176-1188。

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