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Novel quantitative phenotypes of exercise training in mouse models.

机译:小鼠模型中运动训练的新型定量表型。

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摘要

Regular physical exercise has beneficial effects in many human disease states, including cardiovascular diseases, cancer, and depression. Exercise training of genetically modified mouse models may provide insight into the molecular mechanisms that underlie the beneficial effects of exercise. Presently, there is relatively little understanding of the normal physiology of mouse exercise. In this paper, we describe a novel computerized voluntary wheel-running system capable of recording and analyzing individual wheel rotations. Using this system, we demonstrate that C57BL/6 mice run considerable distances during the night in short bouts and at a preferred speed: the cruising speed. We find that the vast majority of running occurs around this cruising speed, which is close to the maximum speed at which the animal can run but is significantly higher than the average speeds recorded by simple digital odometers. We describe how these parameters vary with exercise training and demonstrate marked sex differences in the patterns of voluntary exercise. The results of this study have important implications for the design and interpretation of both voluntary and forced exercise experiments in mouse models. The novel parameters described provide more physiological quantitative measures of voluntary exercise activity and training and will extend the physiological utility of exercise training as a phenotyping tool in genetic mouse models.
机译:定期体育锻炼对许多人类疾病都有有益的作用,包括心血管疾病,癌症和抑郁症。对转基因小鼠模型进行运动训练可以深入了解运动有益作用的分子机制。目前,对小鼠运动的正常生理的了解相对较少。在本文中,我们描述了一种新型的计算机化自愿车轮行驶系统,该系统能够记录和分析单个车轮的旋转。使用这个系统,我们证明了C57BL / 6小鼠在夜间以短时搏动并以一种优选的速度(巡航速度)运行相当长的距离。我们发现绝大多数奔跑都围绕着这种巡航速度进行,该速度接近动物可以奔跑的最大速度,但远高于简单数字里程表记录的平均速度。我们描述了这些参数如何随运动训练而变化,并证明了自愿运动模式中明显的性别差异。这项研究的结果对小鼠模型中的自愿运动和强迫运动实验的设计和解释都具有重要意义。所描述的新参数提供了更多的自愿运动活动和训练的生理定量度量,并将扩展运动训练作为遗传小鼠模型中的表型工具的生理效用。

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