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A simple method using ex vivo culture of hair follicle tissue to investigate intrinsic circadian characteristics in humans

机译:一种简单的方法利用离体毛囊组织的体外培养来研究人类的内在昼夜节律特征

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摘要

Almost all organisms maintain a circadian clock from birth to death to synchronize their own physiology and behavior with the earth’s rotation. Because the in vivo evaluation of human circadian characteristics is labor-intensive, in vitro or ex vivo approaches could provide advantages. In this study, to enable the simple and non-invasive evaluation of autonomous circadian oscillation, we established a method for monitoring clock gene expression by performing ex vivo culture of whole hair root tissue. This method is extremely simple and imposes little burden on subjects. Results obtained using Cryptochrome-deficient mice support that circadian period length in hair tissue correlates with intrinsic period length observed in physiology and behavior. We then applied this method to old-old subjects with severe dementia, who showed abnormal circadian behavior, and found that their peripheral clocks autonomously oscillated in a manner similar to those of healthy or younger subjects, indicating that the effect of cellular senescence on the autonomous clock oscillator is limited at least in some cell types. Although further validation may be required, the hair tissue-based culture assay would be a tool to investigate intrinsic circadian characteristics in humans.
机译:从出生到死亡,几乎所有生物都维持着昼夜节律,以使其自身的生理和行为与地球自转同步。由于人体昼夜节律特征的体内评估需要大量劳动,因此体外或离体方法可能具有优势。在这项研究中,为了能够简单,无创地评估自主性昼夜节律,我们建立了一种通过对整个发根组织进行离体培养来监测时钟基因表达的方法。这种方法非常简单,对受试者的负担很小。使用隐花色素缺陷型小鼠获得的结果支持毛发组织中的昼夜节律周期长度与生理和行为中观察到的固有周期长度相关。然后,我们将这种方法应用于患有严重痴呆症,表现出昼夜节律行为异常的老年受试者,并发现其外周时钟以与健康或年轻受试者相似的方式自主振荡,这表明细胞衰老对自主性的影响时钟振荡器至少在某些单元类型中受到限制。尽管可能需要进一步的验证,但基于毛发组织的培养测定法将成为研究人类内在生物节律特征的工具。

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