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Overview on Therapeutic Applications of Microparticulate Drug Delivery Systems

机译:微粒药物递送系统的治疗应用概述

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Research in novel drug delivery systems is being explored competitively in order to attain maximum therapeutic effect while minimizing the adverse effects. Despite several advancements in pharmaceutical formulations, one of the major challenges still persisting is sustained drug release. Microencapsulation enacts as an intelligent approach with a strong therapeutic impact and is in demand globally in medical technology due to its specific and attractive properties, including biocompatibility, stability, target specificity, uniform encapsulation, better compliance, and controlled and sustained release patterns that are responsible for diminishing the toxicity and dosage frequency. Microparticles are successful delivery systems that encapsulate both water-insoluble and sparingly water-soluble agents to elicit their efficacy with a great potential attributed to their unique properties: particle size, shape, structure, drug loading, entrapment efficiency, porosity, and release profile. Several marketed microparticle-based formulations are available, including risperidone, buserelin, and octreotide acetate, and some of them are in clinical trials. The present review highlights the detailed therapeutic applications of microparticles with advances from the last decade to treat various disease conditions, including cancer, diabetes, cardiovascular diseases, and neurological disorders, as well as for vaccine delivery, ocular and pulmonary delivery, gene transfer, etc., and exemplifies the future perspectives in these aspects. One day in the future, microparticle-based formulations may become broadly researched in drug delivery systems.
机译:为了获得最大的治疗效果,同时使副作用最小化,正在竞争性研究新型药物递送系统的研究。尽管药物制剂取得了一些进步,但仍然持续存在的主要挑战之一是药物的持续释放。微囊化是一种具有强大治疗效果的智能方法,由于其独特和吸引人的特性,包括生物相容性,稳定性,靶标特异性,均匀包封,更好的依从性以及受控和持续释放的模式,其在医疗技术领域受到全球的广泛需求减少毒性和给药频率。微粒是成功的传递系统,囊封了水不溶性和微水溶性的物质,具有巨大的潜力,这归因于其独特的特性:粒径,形状,结构,药物载量,包封率,孔隙率和释放特性,从而激发了其功效。有几种市售的基于微粒的制剂,包括利培酮,布塞林和醋酸奥曲肽,其中一些正在临床试验中。本综述着重介绍了微粒的详细治疗应用,该微粒在过去十年中取得了进步,可用于治疗各种疾病,包括癌症,糖尿病,心血管疾病和神经系统疾病,以及疫苗输送,眼和肺部输送,基因转移等。 ,并举例说明这些方面的未来前景。未来的一天,基于微粒的制剂可能会在药物输送系统中得到广泛的研究。

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