新的干草堆揭示新的针头:使用秀丽隐杆线虫来确定改善人类衰老过程中身体成分变化的新靶点。

Interdisciplinary topics in gerontology Pub Date : 2010-01-01 Epub Date: 2010-08-10 DOI:10.1159/000319996
Catherine A Wolkow
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引用次数: 1

摘要

人体组成的巨大变化伴随着衰老,特别是在肥胖和肌肉组织方面。人们随着年龄的增长而积累脂肪,失去肌肉质量和力量。秀丽隐杆线虫是一种小型、雌雄同体的土壤线虫,为研究调节人体成分的遗传途径提供了一种灵活的模型。虽然蠕虫和人类之间存在着显著的生理差异,但许多与人类脂质和肌肉稳态相关的遗传途径都存在于蠕虫中。最初的研究表明,秀丽隐杆线虫在衰老过程中肥胖增加,就像人类一样。此外,大量证据表明,蠕虫的肌肉质量与年龄有关。提出了秀丽隐杆线虫发生这些变化的可能机制。最近的研究强调了神经内分泌和环境信号调节秀丽隐杆线虫的脂肪代谢。衰老过程中这些通路的潜在功能障碍可能会影响整体脂肪积累。相比之下,衰老蠕虫的肌肉衰退是由于寿命中累积的损伤和“磨损”造成的。然而,神经内分泌通路也调节肌肉质量以应对食物供应。这些途径可能为对抗衰老过程中的肌肉损失提供有用的治疗方法。从本章开始,读者将对秀丽隐杆线虫可以用于机械老年学研究的方式有更深的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New haystacks reveal new needles: using Caenorhabditis elegans to identify novel targets for ameliorating body composition changes during human aging.

Dramatic changes in body composition accompany aging in humans, particularly with respect to adiposity and the musculature. People accumulate fat as they age and lose muscle mass and strength. Caenorhabditis elegans nematodes are small, hermaphroditic soil nematodes that offer a flexible model for studying genetic pathways regulating body composition in humans. While there are significant physiological differences between worms and people, many of the genetic pathways relevant to human lipid and muscle homeostasis are present in worms. Initial studies indicate that adiposity increases in C. elegans during aging, as occurs in humans. Furthermore, substantial evidence demonstrates age-related loss of muscle mass in worms. Possible mechanisms for these changes in C. elegans are presented. Recent studies have highlighted neuroendocrine and environmental signals regulating C. elegans fat metabolism. Potential dysfunction of these pathways during aging could affect overall fat accumulation. By contrast, muscle decline in aging worms results from accumulated damage and 'wear-and-tear' over life span. However, neuroendocrine pathways also regulate muscle mass in response to food availability. Such pathways might provide useful therapeutic approaches for combating muscle loss during aging. From this chapter, readers will develop a deeper understanding of the ways that C.elegans can be used for mechanistic gerontological studies.

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