Aging mechanisms—A perspective mostly from Drosophila

Amy Tsurumi, Willis X. Li
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引用次数: 15

Abstract

A mechanistic understanding of the natural aging process, which is distinct from aging-related disease mechanisms, is essential for developing interventions to extend lifespan or healthspan. Here, we discuss current trends in aging research and address conceptual and experimental challenges in the field. We examine various molecular markers implicated in aging with an emphasis on the role of heterochromatin and epigenetic changes. Studies in model organisms have been advantageous in elucidating conserved genetic and epigenetic mechanisms and assessing interventions that affect aging. We highlight the use of Drosophila, which allows controlled studies for evaluating genetic and environmental contributors to aging conveniently. Finally, we propose the use of novel methodologies and future strategies using Drosophila in aging research.

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衰老机制——主要来自果蝇的视角
对自然衰老过程的机制理解,不同于与衰老相关的疾病机制,对于制定延长寿命或健康寿命的干预措施至关重要。在这里,我们讨论了老龄化研究的当前趋势,并解决了该领域的概念和实验挑战。我们研究了与衰老有关的各种分子标记,重点是异染色质和表观遗传变化的作用。模式生物的研究在阐明保守的遗传和表观遗传机制以及评估影响衰老的干预措施方面具有优势。我们强调果蝇的使用,它允许控制研究,以方便地评估遗传和环境因素的老化。最后,我们提出了在衰老研究中使用果蝇的新方法和未来策略。
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(Advanced Genetics 4/05). Upgrading Data Sharing Policies to Maximize Utility and Impact in Genetics and Genomics Research. Extreme Phenotypic Variability of ACTG1-Related Disorders in Hearing Loss. (Advanced Genetics 3/05) Editorial Board: (Advanced Genetics 3/05)
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