Gehrig Jochen, Pandey Gunjan, Westhoff Jens H
Acquifer is a Division of Ditabis, Digital Biomedical Imaging Systems AG, Pforzheim, Germany.
Department of Pediatrics I, University Children's Hospital Heidelberg, Heidelberg, Germany.
Front Pediatr. 2018 Jun 28;6:183. doi: 10.3389/fped.2018.00183. eCollection 2018.
Genetic disorders account for a wide range of renal diseases emerging during childhood and adolescence. Due to the utilization of modern biochemical and biomedical techniques, the number of identified disease-associated genes is increasing rapidly. Modeling of congenital human disease in animals is key to our understanding of the biological mechanism underlying pathological processes and thus developing novel potential treatment options. The zebrafish () has been established as a versatile small vertebrate organism that is widely used for studying human inherited diseases. Genetic accessibility in combination with elegant experimental methods in zebrafish permit modeling of human genetic diseases and dissecting the perturbation of underlying cellular networks and physiological processes. Beyond its utility for genetic analysis and pathophysiological and mechanistic studies, zebrafish embryos, and larvae are amenable for phenotypic screening approaches employing high-content and high-throughput experiments using automated microscopy. This includes large-scale chemical screening experiments using genetic models for searching for disease-modulating compounds. Phenotype-based approaches of drug discovery have been successfully performed in diverse zebrafish-based screening applications with various phenotypic readouts. As a result, these can lead to the identification of candidate substances that are further examined in preclinical and clinical trials. In this review, we discuss zebrafish models for inherited kidney disease as well as requirements and considerations for the technical realization of drug screening experiments in zebrafish.
遗传性疾病导致了儿童期和青春期出现的多种肾脏疾病。由于现代生化和生物医学技术的应用,已鉴定出的与疾病相关的基因数量正在迅速增加。在动物中对先天性人类疾病进行建模是我们理解病理过程背后的生物学机制从而开发新的潜在治疗方案的关键。斑马鱼已成为一种通用的小型脊椎动物,被广泛用于研究人类遗传性疾病。斑马鱼的遗传易操作性与精妙的实验方法相结合,使得对人类遗传疾病进行建模并剖析潜在细胞网络和生理过程的扰动成为可能。除了在遗传分析以及病理生理和机制研究方面的用途外,斑马鱼胚胎和幼体还适用于采用自动显微镜进行高内涵和高通量实验的表型筛选方法。这包括使用遗传模型进行大规模化学筛选实验以寻找疾病调节化合物。基于表型的药物发现方法已在各种基于斑马鱼的筛选应用中成功实施,并具有各种表型读数。因此,这些方法可以导致鉴定出在临床前和临床试验中进一步研究的候选物质。在本综述中,我们讨论了遗传性肾病的斑马鱼模型以及斑马鱼药物筛选实验技术实现的要求和注意事项。