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发育模式和大小控制中的生物电学:斑马鱼模型中的证据和遗传编码工具。

Bioelectricity in Developmental Patterning and Size Control: Evidence and Genetically Encoded Tools in the Zebrafish Model.

机构信息

Department of Comparative Pathobiology, Purdue University, West Lafayette, IN 47907, USA.

Center for Cancer Research, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Cells. 2023 Apr 13;12(8):1148. doi: 10.3390/cells12081148.

Abstract

Developmental patterning is essential for regulating cellular events such as axial patterning, segmentation, tissue formation, and organ size determination during embryogenesis. Understanding the patterning mechanisms remains a central challenge and fundamental interest in developmental biology. Ion-channel-regulated bioelectric signals have emerged as a player of the patterning mechanism, which may interact with morphogens. Evidence from multiple model organisms reveals the roles of bioelectricity in embryonic development, regeneration, and cancers. The Zebrafish model is the second most used vertebrate model, next to the mouse model. The zebrafish model has great potential for elucidating the functions of bioelectricity due to many advantages such as external development, transparent early embryogenesis, and tractable genetics. Here, we review genetic evidence from zebrafish mutants with fin-size and pigment changes related to ion channels and bioelectricity. In addition, we review the cell membrane voltage reporting and chemogenetic tools that have already been used or have great potential to be implemented in zebrafish models. Finally, new perspectives and opportunities for bioelectricity research with zebrafish are discussed.

摘要

发育模式对于调节细胞事件至关重要,例如胚胎发生过程中的轴向模式形成、分段、组织形成和器官大小决定。理解模式形成机制仍然是发育生物学的核心挑战和基本关注点。离子通道调节的生物电信号已成为模式形成机制的参与者,它可能与形态发生素相互作用。来自多个模式生物的证据揭示了生物电在胚胎发育、再生和癌症中的作用。斑马鱼模型是继小鼠模型之后使用第二多的脊椎动物模型。由于外部发育、透明的早期胚胎发生和易于处理的遗传学等诸多优势,斑马鱼模型在阐明生物电功能方面具有巨大潜力。在这里,我们回顾了与离子通道和生物电相关的鳍大小和色素变化的斑马鱼突变体的遗传证据。此外,我们还回顾了已经在斑马鱼模型中使用或具有很大潜力的细胞膜电压报告和化学生物学工具。最后,讨论了利用斑马鱼进行生物电研究的新视角和机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ff1/10137051/2f08966bb7fb/cells-12-01148-g001.jpg

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