La Pietra Alessandra, Bianchi Anna Rita, Capriello Teresa, Mobilio Teresa, Guagliardi Annamaria, De Maio Anna, Ferrandino Ida
Department of Biology, University of Naples Federico II, Via Cinthia 21, Naples 80126, Italy.
Environ Toxicol Pharmacol. 2024 Dec;112:104582. doi: 10.1016/j.etap.2024.104582. Epub 2024 Oct 29.
The structure of the zebrafish retina appears to be very similar to that of mammals, that is why it is used as a model for studying the eye. Indeed, the zebrafish retina can regenerate itself through mechanisms of Müller cell reprogramming. In this research, adult zebrafish were exposed to aluminum to cause damage in the retina and thus evaluate the regenerative capacity of the damaged tissue. Histological and histochemical analyses assessed the retinal structure and the neurodegenerative process, respectively. An expression analysis of PARPs was carried out to verify whether a potential oxidative DNA damage happens. In addition, some genes involved in the regeneration process (pax6a, pax2a, ngn1, and notch1a) were analyzed. The data confirmed the toxicity of aluminum which caused retinal neurodegeneration, but also highlighted the ability of zebrafish to regenerate the retinal structure, repairing the damage and confirming its use as a good model for translational studies.
斑马鱼视网膜的结构似乎与哺乳动物的非常相似,这就是它被用作研究眼睛的模型的原因。实际上,斑马鱼视网膜可以通过穆勒细胞重编程机制进行自我再生。在这项研究中,成年斑马鱼暴露于铝中,以造成视网膜损伤,从而评估受损组织的再生能力。组织学和组织化学分析分别评估了视网膜结构和神经退行性过程。进行了PARP的表达分析,以验证是否发生了潜在的氧化性DNA损伤。此外,还分析了一些参与再生过程的基因(pax6a、pax2a、ngn1和notch1a)。数据证实了铝的毒性,它会导致视网膜神经退行性变,但也突出了斑马鱼再生视网膜结构、修复损伤的能力,并证实了它作为转化研究的良好模型的用途。