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Promising Approach in the Treatment of Glaucoma Using Nanotechnology and Nanomedicine-Based Systems

机译:纳米技术和基于纳米药物的系统治疗青光眼的有前途的方法

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Glaucoma is considered a leading cause of blindness with the human eye being one of the body’s most delicate organs. Ocular diseases encompass diverse diseases affecting the anterior and posterior ocular sections, respectively. The human eye’s peculiar and exclusive anatomy and physiology continue to pose a significant obstacle to researchers and pharmacologists in the provision of efficient drug delivery. Though several traditional invasive and noninvasive eye therapies exist, including implants, eye drops, and injections, there are still significant complications that arise which may either be their low bioavailability or the grave ocular adverse effects experienced thereafter. On the other hand, new nanoscience technology and nanotechnology serve as a novel approach in ocular disease treatment. In order to interact specifically with ocular tissues and overcome ocular challenges, numerous active molecules have been modified to react with nanocarriers. In the general population of glaucoma patients, disease growth and advancement cannot be contained by decreasing intraocular pressure (IOP), hence a spiking in future research for novel drug delivery systems and target therapeutics. This review focuses on nanotechnology and its therapeutic and diagnostic prospects in ophthalmology, specifically glaucoma. Nanotechnology and nanomedicine history, the human eye anatomy, research frontiers in nanomedicine and nanotechnology, its imaging modal quality, diagnostic and surgical approach, and its possible application in glaucoma will all be further explored below. Particular focus will be on the efficiency and safety of this new therapy and its advances.
机译:青光眼被认为是失明的主要原因,人眼是人体最脆弱的器官之一。眼部疾病包括分别影响眼前部和后部的多种疾病。在提供有效的药物输送方面,人眼独特的解剖学和生理学继续对研究人员和药理人员构成重大障碍。尽管存在几种传统的侵入性和非侵入性眼部治疗方法,包括植入物,滴眼剂和注射剂,但仍会出现明显的并发症,可能是其生物利用度低或此后出现严重的眼部不良反应。另一方面,新的纳米科学技术和纳米技术是治疗眼病的一种新方法。为了与眼组织特异性相互作用并克服眼挑战,已修饰了许多活性分子以与纳米载体反应。在青光眼的普通人群中,降低眼内压(IOP)不能控制疾病的发展和进展,因此在新型药物递送系统和靶标治疗方法的未来研究中突飞猛进。这篇综述着眼于纳米技术及其在眼科特别是青光眼中的治疗和诊断前景。纳米技术和纳米医学的历史,人眼的解剖结构,纳米医学和纳米技术的研究前沿,其成像模态质量,诊断和手术方法及其在青光眼中的可能应用将在下面进行进一步探讨。将特别关注这种新疗法及其进展的效率和安全性。

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