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年龄导致的中央和结肠人体生物钟振荡器的差异变化。

Age-Induced Differential Changes in the Central and Colonic Human Circadian Oscillators.

机构信息

Department of Physiology, Institute of Molecular Pathology Biomarkers, University of Extremadura, Campus Universitario, 10003 Cáceres, Spain.

Surgery Department, University Hospital, Servicio Extremeño de Salud, Avda Universidad, 10004 Cáceres, Spain.

出版信息

Int J Mol Sci. 2020 Jan 20;21(2):674. doi: 10.3390/ijms21020674.

Abstract

Aging modifies not only multiple cellular and homeostatic systems, but also biological rhythms. The circadian system is driven by a central hypothalamic oscillator which entrains peripheral oscillators, in both cases underlain by circadian genes. Our aim was to characterize the effect of aging in the circadian expression of clock genes in the human colon. Ambulatory recordings of the circadian rhythms of skin wrist temperature, motor activity and the integrated variable TAP (temperature, activity and position) were dampened by aging, especially beyond 74 years of age. On the contrary, quantitative analysis of genes expression in the muscle layer of colonic explants during 24 h revealed that the circadian expression of , and genes, was larger beyond that age. In vitro experiments showed that aging induced a parallel increase in the myogenic contractility of the circular colonic muscle. This effect was not accompanied by enhancement of Ca signals. In conclusion, we describe here for the first time the presence of a molecular oscillator in the human colon. Aging has a differential effect on the systemic circadian rhythms, that are impaired by aging, and the colonic oscillator, that is strengthened in parallel with the myogenic contractility.

摘要

衰老是如何影响肠道生物钟的?

衰不仅改变了多个细胞和内稳态系统,还改变了生物节律。昼夜节律系统由下丘脑中央振荡器驱动,该振荡器使外周振荡器同步,这两种情况都由昼夜节律基因控制。我们的目的是研究衰老对人类结肠中时钟基因昼夜节律表达的影响。皮肤手腕温度、运动活动和整合变量 TAP(温度、活动和位置)的昼夜节律的动态记录随衰老而减弱,尤其是在 74 岁以上。相反,在 24 小时内对结肠外植体肌肉层中基因表达的定量分析表明,年龄超过 74 岁后, 、 和 基因的昼夜节律表达更大。体外实验表明,衰老诱导了环形结肠肌肉的肌源性收缩性的平行增加。这种效应不伴有钙信号的增强。总之,我们首次描述了人类结肠中存在分子振荡器。衰老对系统昼夜节律有不同的影响,衰老使昼夜节律受损,而与肌源性收缩性平行增强的结肠振荡器则不受影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eec/7013976/726a5d675639/ijms-21-00674-g001.jpg

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