Recent Advances in Nanocapsule: Types, Preparation Methods and Characterizatio

Raja Sekharan Thenrajan
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引用次数: 0

Abstract

Nanocapsules are submicroscopic colloidal drug carrier systems consist of a liquid/solid core in which the drug, gene, protein, and other substances are incorporated into the interior cavity that is surrounded by a distinctive polymeric membrane. Polymers like collagen, albumin, and gelatin are mainly using polymers in nanocapsule formulations. Nanocapsules can serve as nano-sized drug carriers to achieve controlled release as well as efficient drug targeting. The process is used to improve the poor aqueous drug solubility, taste, stabilizing drugs by protecting the molecule from the environment, providing the desired pharmacokinetic profile, allowing controlled release, as well as facilitating oral administration. Capsules are generally prepared between the range of 100 and 1000 nm. Their release and degradation properties largely depend on the composition and the structure of the capsule walls. The dispersion stability of nanocapsules determined by the surfactant, nature of the outer coating. This review describes various facts of nanocapsule drug delivery systems in relation to the method of formulation, characterization, potential benefits and risks, and pharmaceutical applications in drug delivery.
纳米胶囊研究进展:类型、制备方法及表征
纳米胶囊是一种亚微观的胶体药物载体系统,由液体/固体核心组成,其中药物、基因、蛋白质和其他物质被纳入由独特的聚合物膜包围的内腔。聚合物如胶原蛋白、白蛋白和明胶主要用于纳米胶囊配方。纳米胶囊可以作为纳米尺度的药物载体,实现药物的控释和高效靶向。该工艺用于改善水溶性差的药物,味道,通过保护分子不受环境影响来稳定药物,提供所需的药代动力学特征,允许控制释放,以及便于口服给药。胶囊通常在100至1000 nm的范围内制备。它们的释放和降解性能在很大程度上取决于胶囊壁的组成和结构。表面活性剂、外涂层的性质决定了纳米胶囊的分散稳定性。这篇综述描述了纳米胶囊给药系统的各种事实,包括配方方法、表征、潜在的益处和风险,以及在给药中的药物应用。
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