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首页> 外文期刊>Frontiers in Neurology >Human Peripheral Clocks: Applications for Studying Circadian Phenotypes in Physiology and Pathophysiology
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Human Peripheral Clocks: Applications for Studying Circadian Phenotypes in Physiology and Pathophysiology

机译:人类外围时钟:在生理学和病理生理学中研究昼夜表型的应用

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摘要

Most light-sensitive organisms on earth have acquired an internal system of circadian clocks allowing the anticipation of light or darkness. In humans, the circadian system governs nearly all aspects of physiology and behavior. Circadian phenotypes, including chronotype, vary dramatically among individuals and over individual lifespan. Recent studies have revealed that the characteristics of human skin fibroblast clocks correlate with donor chronotype. Given the complexity of circadian phenotype assessment in humans, the opportunity to study oscillator properties by using cultured primary cells has the potential to uncover molecular details difficult to assess directly in humans. Since altered properties of the circadian oscillator have been associated with many diseases including metabolic disorders and cancer, clock characteristics assessed in additional primary cell types using similar technologies might represent an important tool for exploring the connection between chronotype and disease, and for diagnostic purposes. Here, we review implications of this approach for gathering insights into human circadian rhythms and their function in health and disease.
机译:地球上大多数对光敏感的生物已经获得了一个内部生物钟,可以预测光明或黑暗。在人类中,昼夜节律系统支配着生理和行为的几乎所有方面。昼夜节律的表型,包括计时型,在个体之间以及整个个体寿命中差异很大。最近的研究表明,人类皮肤成纤维细胞钟的特征与供体的表型有关。考虑到人类昼夜节律表型评估的复杂性,通过使用培养的原代细胞研究振荡器特性的机会有可能揭示难以直接在人类中评估的分子细节。由于昼夜节律振荡器的特性改变已与许多疾病(包括代谢紊乱和癌症)相关联,因此使用类似技术在其他原代细胞类型中评估的时钟特征可能是探索表型与疾病之间联系以及用于诊断目的的重要工具。在这里,我们回顾了这种方法对于收集人类昼夜节律及其在健康和疾病中的作用的见解的意义。

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