Fish-on-a-chip: microfluidics for zebrafish research

斑马鱼 微流控 微尺度化学 多细胞生物 有机体 微流控芯片 纳米技术 生物 模式生物 计算机科学 计算生物学 材料科学 基因 生物化学 数学教育 古生物学 渔业 数学
作者
Fan Yang,Chuan Gao,Ping Wang,Guojun Zhang,Zuanguang Chen
出处
期刊:Lab on a Chip [Royal Society of Chemistry]
卷期号:16 (7): 1106-1125 被引量:82
标识
DOI:10.1039/c6lc00044d
摘要

High-efficiency zebrafish (embryo) handling platforms are crucially needed to facilitate the deciphering of the increasingly expanding vertebrate-organism model values. However, the manipulation platforms for zebrafish are scarce and rely mainly on the conventional "static" microtiter plates or glass slides with rigid gel, which limits the dynamic, three-dimensional (3D), tissue/organ-oriented information acquisition from the intact larva with normal developmental dynamics. In addition, these routine platforms are not amenable to high-throughput handling of such swimming multicellular biological entities at the single-organism level and incapable of precisely controlling the growth microenvironment by delivering stimuli in a well-defined spatiotemporal fashion. Recently, microfluidics has been developed to address these technical challenges via tailor-engineered microscale structures or structured arrays, which integrate with or interface to functional components (e.g. imaging systems), allowing quantitative readouts of small objects (zebrafish larvae and embryos) under normal physiological conditions. Here, we critically review the recent progress on zebrafish manipulation, imaging and phenotype readouts of external stimuli using these microfluidic tools and discuss the challenges that confront these promising "fish-on-a-chip" technologies. We also provide an outlook on future potential trends in this field by combining with bionanoprobes and biosensors.
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