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金属毒性与痴呆症,包括额颞叶痴呆症:当前的知识状况

Metal Toxicity and Dementia Including Frontotemporal Dementia: Current State of Knowledge.

作者信息

Gorini Francesca, Tonacci Alessandro

机构信息

Institute of Clinical Physiology, National Research Council, 56124 Pisa, Italy.

出版信息

Antioxidants (Basel). 2024 Aug 1;13(8):938. doi: 10.3390/antiox13080938.

Abstract

Frontotemporal dementia (FTD) includes a number of neurodegenerative diseases, often with early onset (before 65 years old), characterized by progressive, irreversible deficits in behavioral, linguistic, and executive functions, which are often difficult to diagnose due to their similar phenotypic characteristics to other dementias and psychiatric disorders. The genetic contribution is of utmost importance, although environmental risk factors also play a role in its pathophysiology. In fact, some metals are known to produce free radicals, which, accumulating in the brain over time, can induce oxidative stress, inflammation, and protein misfolding, all of these being key features of FTD and similar conditions. Therefore, the present review aims to summarize the current evidence about the environmental contribution to FTD-mainly dealing with toxic metal exposure-since the identification of such potential environmental risk factors can lead to its early diagnosis and the promotion of policies and interventions. This would allow us, by reducing exposure to these pollutants, to potentially affect society at large in a positive manner, decreasing the burden of FTD and similar conditions on affected individuals and society overall. Future perspectives, including the application of Artificial Intelligence principles to the field, with related evidence found so far, are also introduced.

摘要

额颞叶痴呆(FTD)包括多种神经退行性疾病,通常发病较早(65岁之前),其特征是行为、语言和执行功能进行性、不可逆衰退,由于其表型特征与其他痴呆症和精神疾病相似,往往难以诊断。尽管环境风险因素在其病理生理学中也起作用,但遗传因素至关重要。事实上,已知某些金属会产生自由基,随着时间的推移在大脑中积累,可诱发氧化应激、炎症和蛋白质错误折叠,所有这些都是FTD和类似病症的关键特征。因此,本综述旨在总结目前关于环境因素对FTD影响的证据——主要涉及有毒金属暴露——因为识别此类潜在环境风险因素可实现早期诊断,并推动相关政策和干预措施的实施。通过减少对这些污染物的接触,这可能使我们以积极的方式对整个社会产生潜在影响,减轻FTD和类似病症对受影响个体和整个社会的负担。本文还介绍了未来展望,包括人工智能原理在该领域的应用以及目前已发现的相关证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d87/11351151/c3c155c91924/antioxidants-13-00938-g001.jpg

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