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基于纳米技术的隐形眼镜缓解农药介导的眼毒性:综述。

Mitigation of pesticide-mediated ocular toxicity via nanotechnology-based contact lenses: a review.

机构信息

Laboratory of Self Assembled Biomaterials and Translational Science, Institute for Stem Cell Science and Regenerative Medicine (DBT-inStem), GKVK Post, Bellary Road, Bengaluru, 560065, Karnataka, India.

出版信息

Environ Sci Pollut Res Int. 2024 Jul;31(34):46602-46624. doi: 10.1007/s11356-023-28904-z. Epub 2023 Aug 5.

Abstract

The xenobiotic stress exerted by pesticides leads to the deterioration of human and animal health including ocular health. Acute or prolonged exposure to these agricultural toxicants has been implicated in a number of pathological conditions of the eye such as irritation, epiphora or hyper-lacrimation, abrasions on the ocular surface, and decreased visual acuity. The issue is compounded by the fact that tissues of the eye absorb pesticides faster than other organs of the body and are more susceptible to damage as well. However, there is a lacuna in our knowledge regarding the ways by which pesticide exposure-mediated ocular insult might be counteracted. Topical instillation of drugs known to combat the pesticide induced toxicity has been explored to mitigate the detrimental impact of pesticide exposure. However, topical eye drop solutions exhibit very low bioavailability and limited drug residence duration in the tear film decreasing their efficacy. Contact lenses have been explored in this respect to increase bioavailability of ocular drugs, while nanoparticles have lately been utilized to increase drug bioavailability and increase drug residence duration in different tissues. The current review focuses on drug delivery and futuristic aspects of corneal protection from ocular toxicity using contact lenses.

摘要

农药造成的异生物质应激会损害人类和动物健康,包括眼部健康。急性或长期接触这些农业毒物会导致眼部出现多种病理状况,如刺激、溢泪或多泪、眼表面擦伤和视力下降。由于眼睛组织比身体其他器官吸收农药更快,更容易受到损害,情况变得更加复杂。然而,我们对于对抗由农药暴露引起的眼部损伤的方法的了解还存在空白。人们已经探索了局部滴注已知可对抗农药毒性的药物来减轻农药暴露的有害影响。然而,局部滴眼溶液在泪膜中的生物利用度非常低,药物停留时间有限,从而降低了其疗效。在这方面,已经探索了隐形眼镜来增加眼部药物的生物利用度,而最近则利用纳米颗粒来增加药物在不同组织中的生物利用度和停留时间。目前的综述重点关注使用隐形眼镜通过药物输送来保护角膜免受眼部毒性的未来方面。

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