Zebrafish research in Greece: swimming against the current.

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
Dimitris Beis
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引用次数: 0

Abstract

The zebrafish is a vertebrate model extensively used in Developmental Biology and Human Disease modeling, as it shares high genetic and physiological similarities with humans. It has become the second most popular animal model, after mice, with several advantages over the latter: zebrafish are easily housed and cared for; the cost of installing and maintaining a zebrafish facility is significantly lower than for mice; and they reproduce often and develop quickly. Using zebrafish complies with the 3Rs principles of laboratory animal use. Zebrafish embryos develop externally and are transparent, allowing for in vivo non-invasive imaging. There are many transgenic and mutant lines available that mimic most human diseases, including reporter lines for most signaling pathways. There are also several reverse genetic tools to functionally verify genes or variants of unknown significance, identified in Genome-Wide Association Studies (GWAS) or using Next Generation Sequencing (NGS) approaches. In addition, the model emerges as an invaluable whole animal platform for various stages of drug discovery efforts by exploring the possibility of creating high-throughput phenotypic-driven screens. These include phenotypic screenings, determinations of general and/or specific toxicity (cardiac, renal, hepatotoxicity etc.), and mechanism of action studies. Finally, zebrafish are able to retain their capacity to regenerate most organs during their entire life span, making them a well-established model for the study of organ regeneration. The European Zebrafish Society consists of more than 180 research labs throughout Europe. In Greece however, zebrafish use remains rather limited. Here I present here a brief historical overview of zebrafish research in Greece.

希腊的斑马鱼研究:逆流而行。
斑马鱼是一种广泛用于发育生物学和人类疾病建模的脊椎动物模型,因为它与人类具有很高的遗传和生理相似性。它已经成为仅次于老鼠的第二大最受欢迎的动物模型,与后者相比,它有几个优势:斑马鱼容易饲养和照顾;安装和维护斑马鱼设施的成本明显低于小鼠;它们繁殖频繁,发育迅速。使用斑马鱼符合实验动物使用的3Rs原则。斑马鱼胚胎的外部发育是透明的,允许体内非侵入性成像。有许多转基因和突变系可以模拟大多数人类疾病,包括大多数信号通路的报告系。还有一些反向遗传工具可以从功能上验证在全基因组关联研究(GWAS)或使用下一代测序(NGS)方法中发现的未知意义的基因或变异。此外,该模型通过探索创建高通量表型驱动筛选的可能性,成为药物发现工作各个阶段的宝贵全动物平台。这些包括表型筛选,一般和/或特异性毒性(心脏,肾脏,肝毒性等)的测定,以及作用机制研究。最后,斑马鱼能够在其整个生命周期中保持其大部分器官再生的能力,使其成为器官再生研究的一个成熟模型。欧洲斑马鱼协会由遍布欧洲的180多个研究实验室组成。然而,在希腊,斑马鱼的使用仍然相当有限。在这里,我将简要介绍希腊斑马鱼研究的历史概况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
16
审稿时长
2 months
期刊介绍: The International Journal of Developmental Biology (ISSN: 0214- 6282) is an independent, not for profit scholarly journal, published by scientists, for scientists. The journal publishes papers which throw light on our understanding of animal and plant developmental mechanisms in health and disease and, in particular, research which elucidates the developmental principles underlying stem cell properties and cancer. Technical, historical or theoretical approaches also fall within the scope of the journal. Criteria for acceptance include scientific excellence, novelty and quality of presentation of data and illustrations. Advantages of publishing in the journal include: rapid publication; free unlimited color reproduction; no page charges; free publication of online supplementary material; free publication of audio files (MP3 type); one-to-one personalized attention at all stages during the editorial process. An easy online submission facility and an open online access option, by means of which papers can be published without any access restrictions. In keeping with its mission, the journal offers free online subscriptions to academic institutions in developing countries.
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