Innovative Polymeric Biomaterials for Intraocular Lenses in Cataract Surgery.

IF 5 3区 医学 Q1 ENGINEERING, BIOMEDICAL Journal of Functional Biomaterials Pub Date : 2024-12-23 DOI:10.3390/jfb15120391
Kevin Y Wu, Rebecca Khammar, Hafsah Sheikh, Michael Marchand
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Abstract

Intraocular lenses (IOLs) play a pivotal role in restoring vision following cataract surgery. The evolution of polymeric biomaterials has been central to addressing challenges such as biocompatibility, optical clarity, mechanical stability, and resistance to opacification. This review explores essential requirements for IOL biomaterials, emphasizing their ability to mitigate complications like posterior capsule opacification (PCO) and dysphotopsias while maintaining long-term durability and visual quality. Traditional polymeric materials, including polymethyl methacrylate (PMMA), silicone, and acrylic polymers, are critically analyzed alongside cutting-edge innovations such as hydrogels, shape memory polymers, and light-adjustable lenses (LALs). Advances in polymer engineering have enabled these materials to achieve enhanced flexibility, transparency, and biocompatibility, driving their adoption in modern IOL design. Functionalization strategies, including surface modifications and drug-eluting designs, highlight advancements in preventing inflammation, infection, and other complications. The incorporation of UV-blocking and blue-light-filtering agents is also examined for their potential in reducing retinal damage. Furthermore, emerging technologies like nanotechnology and smart polymer-based biomaterials offer promising avenues for personalized, biocompatible IOLs with enhanced performance. Clinical outcomes, including visual acuity, contrast sensitivity, and patient satisfaction, are evaluated to provide an understanding of the current advancements and limitations in IOL development. We also discuss the current challenges and future directions, underscoring the need for cost-effective, innovative polymer-based solutions to optimize surgical outcomes and improve patients' quality of life.

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用于白内障手术人工晶状体的新型高分子生物材料。
人工晶状体(iol)在白内障手术后的视力恢复中起着关键作用。高分子生物材料的发展一直是解决诸如生物相容性、光学清晰度、机械稳定性和抗混浊性等挑战的核心。本综述探讨了人工晶状体生物材料的基本要求,强调了它们在保持长期耐用性和视觉质量的同时,减轻后囊膜混浊(PCO)和光异常等并发症的能力。传统的聚合物材料,包括聚甲基丙烯酸甲酯(PMMA)、有机硅和丙烯酸聚合物,与水凝胶、形状记忆聚合物和光可调透镜(LALs)等尖端创新材料一起进行了严格的分析。聚合物工程的进步使这些材料具有更高的灵活性、透明度和生物相容性,推动了它们在现代人工晶状体设计中的应用。功能化策略,包括表面修饰和药物洗脱设计,在预防炎症、感染和其他并发症方面取得了突出进展。紫外线阻断剂和蓝光过滤剂的结合也检查了它们在减少视网膜损伤方面的潜力。此外,纳米技术和智能聚合物生物材料等新兴技术为个性化、生物相容性和增强性能的iol提供了有希望的途径。评估临床结果,包括视力、对比敏感度和患者满意度,以了解当前人工晶状体发展的进展和局限性。我们还讨论了当前的挑战和未来的方向,强调需要具有成本效益的创新聚合物解决方案,以优化手术结果和提高患者的生活质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Functional Biomaterials
Journal of Functional Biomaterials Engineering-Biomedical Engineering
CiteScore
4.60
自引率
4.20%
发文量
226
审稿时长
11 weeks
期刊介绍: Journal of Functional Biomaterials (JFB, ISSN 2079-4983) is an international and interdisciplinary scientific journal that publishes regular research papers (articles), reviews and short communications about applications of materials for biomedical use. JFB covers subjects from chemistry, pharmacy, biology, physics over to engineering. The journal focuses on the preparation, performance and use of functional biomaterials in biomedical devices and their behaviour in physiological environments. Our aim is to encourage scientists to publish their results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Several topical special issues will be published. Scope: adhesion, adsorption, biocompatibility, biohybrid materials, bio-inert materials, biomaterials, biomedical devices, biomimetic materials, bone repair, cardiovascular devices, ceramics, composite materials, dental implants, dental materials, drug delivery systems, functional biopolymers, glasses, hyper branched polymers, molecularly imprinted polymers (MIPs), nanomedicine, nanoparticles, nanotechnology, natural materials, self-assembly smart materials, stimuli responsive materials, surface modification, tissue devices, tissue engineering, tissue-derived materials, urological devices.
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