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用于粘膜粘附给药系统的改性藻酸盐珠:专利最新综述

Modified alginate beads for mucoadhesive drug delivery system: an updated review of patents.

作者信息

Swain Suryakanta, Behera Aurobinda, Beg Sarwar, Patra Chinam N, Dinda Subash C, Sruti Jammula, Rao Muddana E B

机构信息

Department of Pharmaceutics, Roland Institute of Pharmaceutical Sciences, Khodasinghi, Berhampur, Ganjam, Odisha-760 010, India.

出版信息

Recent Pat Drug Deliv Formul. 2012 Dec;6(3):259-77. doi: 10.2174/187221112802652697.

Abstract

Pharmaceutical research and inventions are increasingly developed for the design of an ideal dosage regimen in drug therapy of many diseases, which attains therapeutic concentration of drug in plasma and maintains it constant for the entire duration of treatment and also minimizes the side effects. Recent trends in pharmaceutical technology indicated that mucoadhesive micro particle and modified alginate beads as drug delivery system especially suitable for achieving delivery of drug in a predetermined rate locally or systemically for a prolonged period of time. The release of drug from microparticle depends on a variety of factors including carrier used to form the micro particle and amount of drug contained in them. The main aim of the present review is to explain the various theories, mechanisms, advanced mucoadhesive polymers, various delivery approaches, methodologies for developing a mucoadhesive micro-particle and modified alginate beads formulation, in vitro, ex vivo and in vivo characterization. Apart from this, an innovative test method that is biacore is highlighted in this review to measure the mucoadhesive strength. This review is also briefly explained about the updated patenting system for the development of micro-particle and modified alginate beads as drug delivery system.

摘要

药物研究与发明越来越多地致力于为多种疾病的药物治疗设计理想的给药方案,该方案能使药物在血浆中达到治疗浓度,并在整个治疗期间保持恒定,同时还能将副作用降至最低。制药技术的最新趋势表明,粘膜粘附微粒和改性藻酸盐珠作为药物递送系统,特别适合以预定速率在局部或全身长时间实现药物递送。药物从微粒中的释放取决于多种因素,包括用于形成微粒的载体以及其中所含药物的量。本综述的主要目的是解释各种理论、机制、先进的粘膜粘附聚合物、各种递送方法、开发粘膜粘附微粒和改性藻酸盐珠制剂的方法、体外、离体和体内表征。除此之外,本综述还重点介绍了一种创新的测试方法——生物传感器,用于测量粘膜粘附强度。本综述还简要解释了作为药物递送系统的微粒和改性藻酸盐珠开发的最新专利制度。

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