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Caenorhabditis elegans Tolerates Hyperaccelerations up to 400,000 xg

机译:秀丽隐杆线虫可耐受高达400,000 xg的超加速度

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One of the most important laboratory animal species is the nematode Caenorhabditis elegans, which has been used in a range of research fields such as neurobiology, body development, and molecular biology. The scientific progress obtained by employing C. elegans as a model in these areas has encouraged its use in new fields. One of the new potential applications concerns the biological responses to hyperacceleration stress (g-force), but only a few studies have evaluated the response of multicellular organisms to extreme hypergravity conditions at the order of magnitude 10(5)xg, which is the theorized force experienced by rocks ejected from Mars (or similar planets). Therefore, we subjected the nematode C. elegans to 400,000xg (equivalent to that force) and evaluated viability, general morphology, and behavior of C. elegans after exposure to this stress. The metabolic activity of this nematode in response to the gravitational spectrum of 50-400,000xg was also evaluated by means of the MTT assay. Surprisingly, we found that this organism showed no decrease in viability, no changes in behavior and development, and no drastic metabolic depression after hyperacceleration. Thus, we demonstrated for the first time that this multicellular research model can withstand extremely high g-forces, which prompts the use of C. elegans as a new model for extreme hypergravity.
机译:线虫秀丽隐杆线虫是最重要的实验室动物物种之一,已被用于许多研究领域,例如神经生物学,人体发育和分子生物学。通过在这些领域中使用秀丽隐杆线虫作为模型所获得的科学进步,鼓励了它在新领域中的使用。新的潜在应用之一涉及对超加速应力(g-force)的生物学响应,但是只有少数研究评估了多细胞生物对极端超重力条件的响应,幅度为10(5)xg,这是理论上的从火星(或类似行星)喷出的岩石所经历的力。因此,我们对线虫秀丽隐杆线虫进行了400,000xg(相当于该力)的测试,并评估了秀丽隐杆线虫在暴露于这种压力后的生存力,一般形态和行为。还通过MTT测定法评估了该线虫响应于50-400,000xg的引力谱的代谢活性。出乎意料的是,我们发现这种生物体在加速后没有表现出活力的降低,行为和发育的变化,也没有剧烈的代谢抑制。因此,我们首次证明了这种多细胞研究模型可以承受极高的g力,这促使线虫被用作极端超重力的新模型。

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