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利用斑马鱼模型促进罕见遗传疾病研究。

Use of Zebrafish Models to Boost Research in Rare Genetic Diseases.

机构信息

MMDN, University of Montpellier, EPHE, INSERM, 34095 Montpellier, France.

Department of Development and Regeneration, Section Pediatric Neurology, University Hospital KU Leuven, 3000 Leuven, Belgium.

出版信息

Int J Mol Sci. 2021 Dec 12;22(24):13356. doi: 10.3390/ijms222413356.

Abstract

Rare genetic diseases are a group of pathologies with often unmet clinical needs. Even if rare by a single genetic disease (from 1/2000 to 1/more than 1,000,000), the total number of patients concerned account for approximatively 400 million peoples worldwide. Finding treatments remains challenging due to the complexity of these diseases, the small number of patients and the challenge in conducting clinical trials. Therefore, innovative preclinical research strategies are required. The zebrafish has emerged as a powerful animal model for investigating rare diseases. Zebrafish combines conserved vertebrate characteristics with high rate of breeding, limited housing requirements and low costs. More than 84% of human genes responsible for diseases present an orthologue, suggesting that the majority of genetic diseases could be modelized in zebrafish. In this review, we emphasize the unique advantages of zebrafish models over other in vivo models, particularly underlining the high throughput phenotypic capacity for therapeutic screening. We briefly introduce how the generation of zebrafish transgenic lines by gene-modulating technologies can be used to model rare genetic diseases. Then, we describe how zebrafish could be phenotyped using state-of-the-art technologies. Two prototypic examples of rare diseases illustrate how zebrafish models could play a critical role in deciphering the underlying mechanisms of rare genetic diseases and their use to identify innovative therapeutic solutions.

摘要

罕见遗传病是一组临床需求未得到满足的疾病。即使对于单一的遗传疾病而言(发病率为 1/2000 至 1/100 万以上),全球受影响的患者总数也约有 4 亿人。由于这些疾病的复杂性、患者数量少以及临床试验的挑战,寻找治疗方法仍然具有挑战性。因此,需要创新的临床前研究策略。斑马鱼已成为研究罕见疾病的强大动物模型。斑马鱼结合了保守的脊椎动物特征,具有繁殖率高、住房需求有限和成本低等优点。超过 84%的人类疾病相关基因都有一个同源基因,这表明大多数遗传疾病都可以在斑马鱼中建模。在这篇综述中,我们强调了斑马鱼模型相对于其他体内模型的独特优势,特别是突出了其在治疗筛选方面的高通量表型能力。我们简要介绍了如何通过基因调控技术生成斑马鱼转基因系来模拟罕见遗传疾病。然后,我们描述了如何使用最先进的技术对斑马鱼进行表型分析。两个罕见疾病的典型例子说明了斑马鱼模型如何在阐明罕见遗传疾病的潜在机制以及识别创新治疗方法方面发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cedf/8706563/23784c4d6c77/ijms-22-13356-g001.jpg

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