监测自噬在人类衰老:关键细胞模型和见解。

IF 3.3 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tatiana M Moreno, Jose L Nieto-Torres, Caroline Kumsta
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引用次数: 0

摘要

自噬是细胞降解和循环的关键途径,对于维持细胞稳态和应对代谢和环境应激至关重要。年龄相关的自噬功能障碍及其在慢性年龄相关疾病(包括神经退行性疾病)中的意义的证据正在积累。然而,作为一个复杂的、多步骤的过程,自噬的测量可能具有挑战性,特别是在人类和人类衰老和疾病相关模型中。本文综述了巨噬、衰老和慢性衰老相关疾病之间的联系。我们提出了三种新的人类细胞模型:外周血单个核细胞(PBMCs)、原代真皮成纤维细胞(pdf)和诱导神经元(iNs),它们是研究自噬通量和评估其作为衰老生物标志物潜力的重要工具。与传统模型不同,这些细胞模型保留了与年龄和疾病相关的分子特征,增强了它们与人类研究的相关性。在人类细胞模型中测量自噬通量的强大工具和方法的发展有望促进我们对自噬在衰老和年龄相关疾病中的作用的理解,最终促进发现改善健康结果的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring Autophagy in Human Aging: Key Cell Models and Insights.

Autophagy, a key cellular degradation and recycling pathway, is critical for maintaining cellular homeostasis and responding to metabolic and environmental stress. Evidence for age-related autophagic dysfunction and its implications in chronic age-related diseases including neurodegeneration is accumulating. However, as a complex, multi-step process, autophagy can be challenging to measure, particularly in humans and human aging- and disease-relevant models. This review describes the links between macroautophagy, aging, and chronic age-related diseases. We present three novel human cell models, peripheral blood mononuclear cells (PBMCs), primary dermal fibroblasts (PDFs), and induced neurons (iNs), which serve as essential tools for studying autophagy flux and assessing its potential as a biomarker for aging. Unlike traditional models, these cell models retain age- and disease-associated molecular signatures, enhancing their relevance for human studies. The development of robust tools and methodologies for measuring autophagy flux in human cell models holds promise for advancing our understanding of autophagy's role in aging and age-related diseases, ultimately facilitating the discovery of therapies to enhance health outcomes.

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3.50
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