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Fish to learn: insights into the effects of environmental chemicals on eye development and visual function in zebrafish

Environmental Science and Pollution Research 2023 19 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Wenlong Huang, Tianjie Wu, Ruotong Wu, Jiajun Peng, Qiong Zhang, Xiaoling Shi, Kusheng Wu

Summary

This review examines how zebrafish are being used to study the effects of environmental chemicals on eye development and vision, offering insights relevant to understanding human visual impairments. Researchers highlight that zebrafish share key features of human color vision and retinal structure, making them a valuable model for studying how pollutants affect the visual system during early development. The study summarizes findings on chemicals ranging from heavy metals to pesticides and their impacts on eye formation and visual function.

Body Systems

Vision is the most essential sense system for the human being. Congenital visual impairment affects millions of people globally. It is increasingly realized that visual system development is an impressionable target of environmental chemicals. However, due to inaccessibility and ethical issues, the use of humans and other placental mammals is constrained, which limits our better understanding of environmental factors on ocular development and visual function in the embryonic stage. Therefore, as complementing laboratory rodents, zebrafish has been the most frequently employed to understand the effects of environmental chemicals on eye development and visual function. One of the major reasons for the increasing use of zebrafish is their polychromatic vision. Zebrafish retinas are morphologically and functionally analogous to those of mammalian, as well as evolutionary conservation among vertebrate eye. This review provides an update on harmful effects from exposure to environmental chemicals, involving metallic elements (ions), metal-derived nanoparticles, microplastics, nanoplastics, persistent organic pollutants, pesticides, and pharmaceutical pollutants on the eye development and visual function in zebrafish embryos. The collected data provide a comprehensive understanding of environmental factors on ocular development and visual function. This report highlights that zebrafish is promising as a model to identify hazardous toxicants toward eye development and is hopeful for developing preventative or postnatal therapies for human congenital visual impairment.

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