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利用斑马鱼研究晶状体发育机制的新见解。

New insights into the mechanism of lens development using zebra fish.

机构信息

Department of Biological Structure, University of Washington, Seattle, Washington, USA.

出版信息

Int Rev Cell Mol Biol. 2012;296:1-61. doi: 10.1016/B978-0-12-394307-1.00001-1.

Abstract

On the basis of recent advances in molecular biology, genetics, and live-embryo imaging, direct comparisons between zebra fish and human lens development are being made. The zebra fish has numerous experimental advantages for investigation of fundamental biomedical problems that are often best studied in the lens. The physical characteristics of visible light can account for the highly coordinated cell differentiation during formation of a beautifully transparent, refractile, symmetric optical element, the biological lens. The accessibility of the zebra fish lens for direct investigation during rapid development will result in new knowledge about basic functional mechanisms of epithelia-mesenchymal transitions, cell fate, cell-matrix interactions, cytoskeletal interactions, cytoplasmic crowding, membrane transport, cell adhesion, cell signaling, and metabolic specialization. The lens is well known as a model for characterization of cell and molecular aging. We review the recent advances in understanding vertebrate lens development conducted with zebra fish.

摘要

基于分子生物学、遗传学和活体胚胎成像的最新进展,正在对斑马鱼和人类晶状体发育进行直接比较。斑马鱼在研究通常在晶状体中最好研究的基本生物医学问题方面具有许多实验优势。可见光的物理特性可以解释在形成美丽透明、折射、对称的光学元件——生物晶状体的过程中高度协调的细胞分化。斑马鱼晶状体在快速发育过程中可直接进行研究,这将为上皮-间充质转化、细胞命运、细胞-基质相互作用、细胞骨架相互作用、细胞质拥挤、膜转运、细胞黏附、细胞信号转导和代谢特化等基本功能机制的新知识。晶状体是研究细胞和分子衰老的模型。我们回顾了利用斑马鱼进行的对脊椎动物晶状体发育的理解的最新进展。

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