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斑马鱼,一种用于生物医学用途的药物和蛋白质筛选的体内平台。

Zebrafish, an In Vivo Platform to Screen Drugs and Proteins for Biomedical Use.

作者信息

Lee Hung-Chieh, Lin Cheng-Yung, Tsai Huai-Jen

机构信息

Institute of Biomedical Sciences, Mackay Medical College, New Taipei City 25245, Taiwan.

School of Medicine, Fu Jen Catholic University, New Taipei City 242062, Taiwan.

出版信息

Pharmaceuticals (Basel). 2021 May 24;14(6):500. doi: 10.3390/ph14060500.

Abstract

The nearly simultaneous convergence of human genetics and advanced molecular technologies has led to an improved understanding of human diseases. At the same time, the demand for drug screening and gene function identification has also increased, albeit time- and labor-intensive. However, bridging the gap between in vitro evidence from cell lines and in vivo evidence, the lower vertebrate zebrafish possesses many advantages over higher vertebrates, such as low maintenance, high fecundity, light-induced spawning, transparent embryos, short generation interval, rapid embryonic development, fully sequenced genome, and some phenotypes similar to human diseases. Such merits have popularized the zebrafish as a model system for biomedical and pharmaceutical studies, including drug screening. Here, we reviewed the various ways in which zebrafish serve as an in vivo platform to perform drug and protein screening in the fields of rare human diseases, social behavior and cancer studies. Since zebrafish mutations faithfully phenocopy many human disorders, many compounds identified from zebrafish screening systems have advanced to early clinical trials, such as those for Adenoid cystic carcinoma, Dravet syndrome and Diamond-Blackfan anemia. We also reviewed and described how zebrafish are used to carry out environmental pollutant detection and assessment of nanoparticle biosafety and QT prolongation.

摘要

人类遗传学与先进分子技术几乎同时出现,这使人们对人类疾病有了更深入的了解。与此同时,药物筛选和基因功能鉴定的需求也有所增加,尽管这需要耗费大量时间和人力。然而,在弥合细胞系体外证据与体内证据之间的差距方面,低等脊椎动物斑马鱼相较于高等脊椎动物具有许多优势,比如饲养成本低、繁殖力高、光诱导产卵、胚胎透明、世代间隔短、胚胎发育迅速、基因组已完全测序,以及一些与人类疾病相似的表型。这些优点使斑马鱼成为生物医学和药物研究(包括药物筛选)的一种模式生物。在此,我们综述了斑马鱼作为体内平台在罕见人类疾病、社会行为和癌症研究领域进行药物和蛋白质筛选的各种方式。由于斑马鱼突变能忠实地模拟许多人类疾病,从斑马鱼筛选系统中鉴定出的许多化合物已进入早期临床试验,如用于腺样囊性癌、德雷维特综合征和先天性纯红细胞再生障碍性贫血的化合物。我们还综述并描述了斑马鱼如何用于环境污染物检测以及纳米颗粒生物安全性和QT间期延长的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1503/8225009/a0dedb30ef50/pharmaceuticals-14-00500-g001.jpg

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