Department of Biomedical Engineering, National Cheng Kung University, Taiwan.
Medical Device Innovation Center, National Cheng Kung University, Taiwan.
Sci Rep. 2016 Jun 16;6:28064. doi: 10.1038/srep28064.
Degeneration is a senescence process that occurs in all living organisms. Although tremendous efforts have been exerted to alleviate this degenerative tendency, minimal progress has been achieved to date. The nematode, Caenorhabditis elegans (C. elegans), which shares over 60% genetic similarities with humans, is a model animal that is commonly used in studies on genetics, neuroscience, and molecular gerontology. However, studying the effect of exercise on C. elegans is difficult because of its small size unlike larger animals. To this end, we fabricated a flow chamber, called "worm treadmill," to drive worms to exercise through swimming. In the device, the worms were oriented by electrotaxis on demand. After the exercise treatment, the lifespan, lipofuscin, reproductive capacity, and locomotive power of the worms were analyzed. The wild-type and the Alzheimer's disease model strains were utilized in the assessment. Although degeneration remained irreversible, both exercise-treated strains indicated an improved tendency compared with their control counterparts. Furthermore, low oxidative stress and lipofuscin accumulation were also observed among the exercise-treated worms. We conjecture that escalated antioxidant enzymes imparted the worms with an extra capacity to scavenge excessive oxidative stress from their bodies, which alleviated the adverse effects of degeneration. Our study highlights the significance of exercise in degeneration from the perspective of the simple life form, C. elegans.
衰老是所有生物都会经历的一个衰老过程。尽管人们已经付出了巨大的努力来缓解这种退行性趋势,但迄今为止,进展甚微。秀丽隐杆线虫(C. elegans)与人类有超过 60%的基因相似度,是一种常用的遗传学、神经科学和分子老年学研究模式动物。然而,由于其体型较小,与较大的动物不同,研究运动对 C. elegans 的影响具有一定难度。为此,我们制造了一个称为“worm treadmill”的流动室,通过游泳来驱动蠕虫运动。在该装置中,蠕虫可以根据电趋性需求定向运动。在运动处理后,我们分析了蠕虫的寿命、脂褐素、生殖能力和运动能力。我们使用野生型和阿尔茨海默病模型菌株进行了评估。尽管退行性变化是不可逆转的,但与对照组相比,运动处理组的两种菌株都表现出改善的趋势。此外,在运动处理的蠕虫中还观察到低氧化应激和脂褐素积累。我们推测,抗氧化酶的增加赋予了蠕虫从体内清除过多氧化应激的额外能力,从而减轻了退行性变化的不利影响。我们的研究从简单的生命形式秀丽隐杆线虫的角度强调了运动在退行性变化中的重要性。