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活体斑马鱼幼鱼胰岛的微观调节与分析。

Microscopic modulation and analysis of islets of Langerhans in living zebrafish larvae.

机构信息

Department of Biomedical Sciences of Cells and Systems, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.

Department of Imaging Physics, Delft University of Technology, Delft, The Netherlands.

出版信息

FEBS Lett. 2022 Oct;596(19):2497-2512. doi: 10.1002/1873-3468.14411. Epub 2022 Jun 17.

Abstract

Microscopic analysis of molecules and physiology in living cells and systems is a powerful tool in life sciences. While in vivo subcellular microscopic analysis of healthy and diseased human organs remains impossible, zebrafish larvae allow studying pathophysiology of many organs using in vivo microscopy. Here, we review the potential of the larval zebrafish pancreas in the context of islets of Langerhans and Type 1 diabetes. We highlight the match of zebrafish larvae with the expanding toolbox of fluorescent probes that monitor cell identity, fate and/or physiology in real time. Moreover, fast and efficient modulation and localization of fluorescence at a subcellular level, through fluorescence microscopy, including confocal and light sheet (single plane illumination) microscopes tailored to in vivo larval research, is addressed. These developments make the zebrafish larvae an extremely powerful research tool for translational research. We foresee that living larval zebrafish models will replace many cell line-based studies in understanding the contribution of molecules, organelles and cells to organ pathophysiology in whole organisms.

摘要

对活细胞和系统中的分子和生理学进行微观分析是生命科学中的一种强大工具。虽然在体内对健康和患病的人体器官进行亚细胞微观分析仍然不可能,但斑马鱼幼虫允许使用体内显微镜研究许多器官的病理生理学。在这里,我们回顾了幼鱼胰腺在胰岛和 1 型糖尿病背景下的潜力。我们强调了斑马鱼幼虫与实时监测细胞身份、命运和/或生理学的荧光探针扩展工具包的匹配。此外,还解决了通过荧光显微镜(包括针对体内幼虫研究定制的共聚焦和光片(单平面照明)显微镜)在亚细胞水平上快速有效地调节和定位荧光的问题。这些发展使斑马鱼幼虫成为转化研究的极其强大的研究工具。我们预计,活体幼鱼斑马鱼模型将取代许多基于细胞系的研究,以了解分子、细胞器和细胞对整个生物体器官病理生理学的贡献。

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