Sanyal Shalini, Das Prosun, Law Sujata
Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, 108, C.R. Avenue, Kolkata, 700073, West Bengal, India.
Cell Biol Toxicol. 2016 Feb;32(1):7-22. doi: 10.1007/s10565-016-9314-4. Epub 2016 Feb 20.
Pesticide exposure can occur directly or indirectly in an occupational setting or otherwise. The health hazards of pesticides have long been studied; however, little is known about the ocular insult of these potent chemicals. In this study, we examined the consequences of long-term pesticide exposure on the ocular tissue in animal model with special focus on the cornea. Swiss Albino mice were sacrificed to obtain the eye globes and various cytological, cytotoxic and histological evaluations, in vitro growth kinetic studies and flow cytometric analyses of select cytokeratins were performed to determine the structural and functional damage due to pesticide exposure. Our study revealed the detrimental impact of this xenobiotic insult by cataloguing the damage to each layer of the cornea wherein it was discovered that all the functional layers as well as the membranes were compromised. We hope that our investigation will pave the way for future studies in this oft overlooked area of affront caused by pesticide exposure to the ocular surface.
在职业环境或其他情况下,可能直接或间接接触农药。农药对健康的危害早已得到研究;然而,对于这些强效化学物质对眼睛的损害却知之甚少。在本研究中,我们在动物模型中研究了长期接触农药对眼部组织的影响,特别关注角膜。处死瑞士白化小鼠以获取眼球,并进行了各种细胞学、细胞毒性和组织学评估、体外生长动力学研究以及选定细胞角蛋白的流式细胞术分析,以确定农药接触导致的结构和功能损伤。我们的研究通过对角膜各层损伤进行分类,揭示了这种异源物质损伤的有害影响,发现所有功能层以及膜都受到了损害。我们希望我们的研究将为未来在这个经常被忽视的农药暴露对眼表造成损害的领域的研究铺平道路。