斑马鱼作为先天性脑积水的模式生物:特征与启示。

Zebrafish Pub Date : 2024-12-01 Epub Date: 2024-11-07 DOI:10.1089/zeb.2024.0148
Kaiyue Wang, Zhi Tang, Yijian Yang, Yating Guo, Zhikun Liu, Zhangjie Su, Xuejun Li, Gelei Xiao
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引用次数: 0

摘要

脑积水是一种与脑脊液有关的疾病,通常表现为脑室异常扩张,并伴有行走困难、注意力下降、尿频或尿失禁等三联临床表现。先天性脑积水的发病与调节大脑发育的基因突变密切相关。目前,我们对先天性脑积水发病机制的了解仍然有限,现有治疗方法的预后也不尽人意。此外,先天性脑积水还没有合适或专用的模型生物。因此,确定先天性脑积水的机理并建立特殊的动物模型意义重大。近来,斑马鱼已成为发育生物学、遗传学和毒理学等许多领域的热门模型生物。斑马鱼的基因组与人类高度相似,而且繁殖速度快、成本低。这些优势使其适合研究各种疾病(尤其是先天性疾病)的发病机制和治疗方法。本研究探讨了将斑马鱼作为先天性脑积水模型生物的可能性。本综述介绍了斑马鱼的特征,并讨论了特定的先天性脑积水模型。文中强调了使用斑马鱼进行脑积水研究的优势和局限性,并对进一步的模型开发提出了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zebrafish as a Model Organism for Congenital Hydrocephalus: Characteristics and Insights.

Hydrocephalus is a cerebrospinal fluid-related disease that usually manifests as abnormal dilation of the ventricles, with a triad of clinical findings including walking difficulty, reduced attention span, and urinary frequency or incontinence. The onset of congenital hydrocephalus is closely related to mutations in genes that regulate brain development. Currently, our understanding of the mechanisms of congenital hydrocephalus remains limited, and the prognosis of existing treatments is unsatisfactory. Additionally, there are no suitable or dedicated model organisms for congenital hydrocephalus. Therefore, it is significant to determine the mechanism and develop special animal models of congenital hydrocephalus. Recently, zebrafish have emerged as a popular model organism in many fields, including developmental biology, genetics, and toxicology. Its genome shares high similarity with that of humans, and it has fast and low-cost reproduction. These advantages make it suitable for studying the pathogenesis and therapeutic approaches for various diseases, specifically congenital diseases. This study explored the possibility of using zebrafish as a model organism for congenital hydrocephalus. This review describes the characteristics of zebrafish and discusses specific congenital hydrocephalus models. The advantages and limitations of using zebrafish for hydrocephalus research are highlighted, and insights for further model development are provided.

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