眼内给药原位胶凝系统研究进展

Urvashi Vyas, Narendra Gehalot, V. Jain, S. Mahajan
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摘要

由于眼睛的正常生理特性限制了眼部产品的生物利用度,眼科药物输送系统既令人着迷又存在问题。为了提高现有药物的疗效和生物利用度,以及患者的依从性和便利性,开发新的眼用剂型已成为制药行业的主要关注点。眼原位凝胶系统是一种新型的眼部药物输送系统,它开始是溶液,但当植入或插入到持续输送活性药物的眼腔中时,迅速转化为厚凝胶。这种溶胶-凝胶相转化受到一系列变量的影响,包括pH值的变化、离子的存在和温度波动。选择移植后凝胶是因为它的粘度和生物粘附性,这可以延长凝胶在眼部区域的存在,并确保药物缓慢连续地释放,这与典型的滴眼液和软膏不同。这篇文章提供了原位凝胶的概述,他们的许多凝胶技术,许多类型的聚合物在原位凝胶中使用,他们的凝胶为基础的方法,以及原位凝胶的聚合物测试。关键词:眼科,原位凝胶,生物利用度,聚合物,新型溶胶-凝胶相
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A REVIEW ON IN SITU GELLING SYSTEM FOR OPHTHALMIC DRUG DELIVERY
Ophthalmic drug delivery systems are both fascinating and problematic due to the normal physiological properties of the eyes, which restrict ocular product bioavailability. The development of novel ocular dosage forms for current drugs in order to enhance efficacy and bioavailability, as well as patient compliance and convenience, has become a major focus in the pharmaceutical business. Ocular In-situ gelling systems are a novel type of eye drug delivery systems that begin as a solution but rapidly convert into a thick gel when implanted or inserted into an ocular cavity where active pharmaceuticals are continually delivered. This sol-to-gel phase conversion is influenced by a range of variables, including variations in pH, the presence of ions, and temperature fluctuations. Post-transplantation gel is chosen for its viscosity and bio adhesive qualities, which prolongs the gel's presence in the ocular area and also ensures that the medicine is released slowly and continuously, in contrast to typical eye drops and ointments. This article provides an overview of situ gels, their numerous techniques of gelling, the many types of polymers utilized in situ gels, their gel-based methodologies, and the polymeric testing of situ gels. KEYWORDS: Ophthalmic, In situ gel, bioavailability, polymers, novel, sol-to-gel phase
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