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斑马鱼视网膜冷冻损伤后不完全恢复。

Incomplete Recovery of Zebrafish Retina Following Cryoinjury.

机构信息

Institute for Research in Ophthalmology, 1950 Sion, Switzerland.

Global Health Institute, School of Life Sciences, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.

出版信息

Cells. 2022 Apr 18;11(8):1373. doi: 10.3390/cells11081373.

Abstract

Zebrafish show an extraordinary potential for regeneration in several organs from fins to central nervous system. Most impressively, the outcome of an injury results in a near perfect regeneration and a full functional recovery. Indeed, among the various injury paradigms previously tested in the field of zebrafish retina regeneration, a perfect layered structure is observed after one month of recovery in most of the reported cases. In this study, we applied cryoinjury to the zebrafish eye. We show that retina exposed to this treatment for one second undergoes an acute damage affecting all retinal cell types, followed by a phase of limited tissue remodeling and regrowth. Surprisingly, zebrafish developed a persistent retinal dysplasia observable through 300 days post-injury. There is no indication of fibrosis during the regeneration period, contrary to the regeneration process after cryoinjury to the zebrafish cardiac ventricle. RNA sequencing analysis of injured retinas at different time points has uncovered enriched processes and a number of potential candidate genes. By means of this simple, time and cost-effective technique, we propose a zebrafish injury model that displays a unique inability to completely recover following focal retinal damage; an outcome that is unreported to our knowledge. Furthermore, RNA sequencing proved to be useful in identifying pathways, which may play a crucial role not only in the regeneration of the retina, but in the first initial step of regeneration, degeneration. We propose that this model may prove useful in comparative and translational studies to examine critical pathways for successful regeneration.

摘要

斑马鱼在多个器官(从鳍到中枢神经系统)中表现出非凡的再生潜力。最令人印象深刻的是,损伤的结果导致近乎完美的再生和完全的功能恢复。事实上,在以前在斑马鱼视网膜再生领域测试的各种损伤范例中,在大多数报道的情况下,在一个月的恢复后观察到近乎完美的分层结构。在这项研究中,我们对斑马鱼的眼睛进行了冷冻损伤。我们表明,暴露于这种处理的视网膜会在一秒钟内发生急性损伤,影响所有视网膜细胞类型,随后是有限的组织重塑和再生阶段。令人惊讶的是,斑马鱼在损伤后 300 天内发展出了一种可观察到的持续性视网膜发育不良。在再生期间没有纤维化的迹象,这与冷冻损伤后斑马鱼心脏心室的再生过程相反。对不同时间点受伤视网膜的 RNA 测序分析揭示了丰富的过程和一些潜在的候选基因。通过这种简单、省时且经济高效的技术,我们提出了一种斑马鱼损伤模型,该模型在受到局灶性视网膜损伤后表现出无法完全恢复的独特能力;据我们所知,这种结果尚未有报道。此外,RNA 测序证明在鉴定通路方面非常有用,这些通路不仅可能在视网膜再生中发挥关键作用,而且在再生的初始退化步骤中也可能发挥关键作用。我们提出,这种模型可能在比较和转化研究中证明有用,可用于检查成功再生的关键途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be44/9030934/cd018d7f66b1/cells-11-01373-g001.jpg

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