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阿尔茨海默病中相关蛋白的临床效用。

Clinical Utility of the Pathogenesis-Related Proteins in Alzheimer's Disease.

机构信息

Division of Medical Innovation, Translational Research Center for Medical Innovation, Foundation for Biomedical Research and Innovation, Kobe 650-0047, Hougo, Japan.

Medical R&D, Fukushima & Partners, Nagoya 458-0045, Aichi, Japan.

出版信息

Int J Mol Sci. 2020 Nov 17;21(22):8661. doi: 10.3390/ijms21228661.

Abstract

Research on the Aβ cascade and alternations of biomarkers in neuro-inflammation, synaptic dysfunction, and neuronal injury followed by Aβ have progressed. But the question is how to use the biomarkers. Here, we examine the evidence and pathogenic implications of protein interactions and the time order of alternation. After the deposition of Aβ, the change of tau, neurofilament light chain (NFL), and neurogranin (Ng) is the main alternation and connection to others. Neuro-inflammation, synaptic dysfunction, and neuronal injury function is exhibited prior to the structural and metabolic changes in the brain following Aβ deposition. The time order of such biomarkers compared to the tau protein is not clear. Despite the close relationship between biomarkers and plaque Aβ deposition, several factors favor one or the other. There is an interaction between some proteins that can predict the brain amyloid burden. The Aβ cascade hypothesis could be the pathway, but not all subjects suffer from Alzheimer's disease (AD) within a long follow-up, even with very elevated Aβ. The interaction of biomarkers and the time order of change require further research to identify the right subjects and right molecular target for precision medicine therapies.

摘要

对 Aβ级联反应以及神经炎症、突触功能障碍和神经元损伤中生物标志物变化的研究已经取得进展。但问题是如何使用这些生物标志物。在这里,我们研究了蛋白相互作用及其变化顺序的证据和发病机制意义。Aβ沉积后,tau、神经丝轻链(NFL)和神经颗粒蛋白(Ng)的变化是主要的变化,并与其他变化相关联。神经炎症、突触功能障碍和神经元损伤在 Aβ沉积后大脑的结构和代谢变化之前就表现出来了。与 tau 蛋白相比,这些生物标志物的时间顺序尚不清楚。尽管生物标志物与斑块 Aβ沉积密切相关,但有几个因素更倾向于其中一种或另一种。一些蛋白之间存在相互作用,这种相互作用可以预测大脑淀粉样蛋白负担。Aβ级联假说可能是一种途径,但并非所有患者在长时间随访中都会发生阿尔茨海默病(AD),即使 Aβ水平非常高。生物标志物的相互作用和变化的时间顺序需要进一步研究,以确定正确的研究对象和正确的分子靶点,用于精准医学治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51c4/7698353/0390cbbc7bb7/ijms-21-08661-g001.jpg

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