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用于了解鸡胚胎发育期间肠道蠕动的光遗传学技术。

Optogenetic techniques for understanding the gut peristalsis during chicken embryonic development.

机构信息

Department of Zoology, Graduate School of Science, Kyoto University, Kitashirakawa, Sakyo-ku, Kyoto, Japan.

出版信息

Biochem Soc Trans. 2024 Aug 28;52(4):1727-1735. doi: 10.1042/BST20231337.

Abstract

Gut peristaltic movements transport ingested materials along the gut axis, which is critical for food digestion and nutrient absorption. While a large amount of studies have been devoted to analyzing the physiological functions of peristalsis in adults, little is known about how the peristaltic system is established during embryogenesis. In recent years, the chicken developing gut has emerged as an excellent model, in which specific sites along the gut axis can be genetically labeled enabling live imaging and optogenetic analyses. This review provides an overview of recent progress in optogenetic studies of gut peristalsis. Analyses with an improved channelrhodopsin-2 variant demonstrated that the peristalsis can artificially be generated in the developing gut. These studies unveiled novel functional coordination between different regions along the gut axis. In addition, imaging with GCaMP6s, a genetically encoded calcium indicator, enabled a fine mapping of developmental changes in the peristaltic patterns as Ca2+ signals. These advanced techniques will broaden our knowledge of how embryonic peristalsis is established at the cellular and molecular level, leading to the understanding of physiological and pathological processes in adult peristalsis.

摘要

肠道蠕动将摄入的物质沿肠道轴向前推进,这对食物消化和营养吸收至关重要。虽然大量研究致力于分析成人蠕动的生理功能,但对于蠕动系统如何在胚胎发生过程中建立知之甚少。近年来,鸡发育中的肠道已成为一个极好的模型,其中可以对肠道轴上的特定部位进行基因标记,从而能够进行活体成像和光遗传学分析。本综述概述了光遗传学研究肠道蠕动的最新进展。使用改良的通道蛋白变体的分析表明,蠕动可以在发育中的肠道中人为产生。这些研究揭示了肠道轴不同区域之间的新的功能协调。此外,使用 GCaMP6s(一种遗传编码钙指示剂)进行成像,可以精细映射蠕动模式的发育变化作为 Ca2+信号。这些先进的技术将拓宽我们对胚胎蠕动如何在细胞和分子水平上建立的认识,从而理解成年蠕动的生理和病理过程。

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