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Contact Lens Materials: A Materials Science Perspective

机译:隐形眼镜材料:材料科学的视角

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摘要

More is demanded from ophthalmic treatments using contact lenses, which are currently used by over 125 million people around the world. Improving the material of contact lenses (CLs) is a now rapidly evolving discipline. These materials are developing alongside the advances made in related biomaterials for applications such as drug delivery. Contact lens materials are typically based on polymer- or silicone-hydrogel, with additional manufacturing technologies employed to produce the final lens. These processes are simply not enough to meet the increasing demands from CLs and the ever-increasing number of contact lens (CL) users. This review provides an advanced perspective on contact lens materials, with an emphasis on materials science employed in developing new CLs. The future trends for CL materials are to graft, incapsulate, or modify the classic CL material structure to provide new or improved functionality. In this paper, we discuss some of the fundamental material properties, present an outlook from related emerging biomaterials, and provide viewpoints of precision manufacturing in CL development.
机译:使用隐形眼镜进行眼科治疗的需求越来越大,目前全世界有超过1.25亿人在使用隐形眼镜。改进隐形眼镜(CL)的材料是一门快速发展的学科。这些材料与相关生物材料在诸如药物输送等应用中取得的进步一起发展。隐形眼镜材料通常基于聚合物或有机硅水凝胶,并采用其他制造技术来生产最终的眼镜。这些过程根本不足以满足CL的不断增长的需求以及隐形眼镜(CL)用户数量的不断增长。这篇综述提供了有关隐形眼镜材料的高级观点,重点是用于开发新的CL的材料科学。 CL材料的未来趋势是移植,封装或修改经典的CL材料结构,以提供新的或改进的功能。在本文中,我们讨论了一些基本的材料特性,介绍了相关新兴生物材料的前景,并提供了CL发展中的精密制造观点。

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