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Potential of Stimuli-Responsive In Situ Gel System for Sustained Ocular Drug Delivery: Recent Progress and Contemporary Research

机译:刺激促进凝胶系统持续血液药物递送的潜力:最近进展和当代研究

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摘要

Eyesight is one of the most well-deserved blessings, amid all the five senses in the human body. It captures the raw signals from the outside world to create detailed visual images, granting the ability to witness and gain knowledge about the world. Eyes are exposed directly to the external environment; they are susceptible to the vicissitudes of diseases. The World Health Organization has predicted that the number of individuals affected by eye diseases will rise enormously in the next decades. However, the physical barriers of the eyes and the problems associated with conventional ocular formulations are significant challenges in ophthalmic drug development. This has generated the demand for a sustained ocular drug delivery system, which serves to deliver effective drug concentration at a reduced frequency for consistent therapeutic effect and better patient treatment adherence. Recent advancement in pharmaceutical dosage design has demonstrated that a stimuli-responsive in situ gel system exhibits the favorable characteristics for providing sustained ocular drug delivery and enhanced ocular bioavailability. Stimuli-responsive in situ gels undergo a phase transition (solution–gelation) in response to the ocular environmental temperature, pH, and ions. These stimuli transform the formulation into a gel at the cul de sac to overcome the shortcomings of conventional eye drops, such as rapid nasolacrimal drainage and short contact time with the ocular surface This review highlights the recent successful research outcomes of stimuli-responsive in situ gelling systems in treating in vivo models with glaucoma and various ocular infections. Additionally, it also presents the mechanism, recent development, and safety considerations of stimuli-sensitive in situ gel as the potential sustained ocular delivery system for treating common eye disorders.
机译:视力是最当之无愧的祝福之一,坐落在人体内所有的五官。它抓住了原始信号从外部世界创建详细的视觉图像,授予能力,对世界的见证和增益知识。眼睛直接暴露到外部环境;它们容易受到疾病的变迁。世界卫生组织预测,受眼疾的个体数目将极大上升,在未来几十年。然而,眼前的物理屏障,并与传统眼制剂相关的问题是眼科药物开发显著的挑战。这已经产生的需求的持续眼部药物递送系统,其用于在获得一致的治疗效果和更好的患者治疗依从性降低的频率提供有效的药物浓度。在药物剂型设计最近进步已经证明,刺激响应原位凝胶系统表现出良好的特性用于提供持续的眼部给药和增强的眼部生物利用度。刺激响应原位凝胶经历响应于眼部环境温度,pH值,和离子的相转变(溶液凝胶化)。这些刺激变换配制成凝胶在穹窿,以克服常规的滴眼剂,如快速鼻泪排水和短的接触时间与眼表面这篇综述亮点的最近成功的研究成果刺激响应原位胶凝的缺点系统在体内模型中有青光眼和各种眼部感染治疗。此外,它也呈现出机制,新的发展,并刺激敏感原位凝胶作为潜在的持续的眼部给药系统用于治疗常见的眼部疾病的安全考虑。

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