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自乳化颗粒与微丸:速释或控释的组成与形成机制

Self-Emulsifying Granules and Pellets: Composition and Formation Mechanisms for Instant or Controlled Release.

作者信息

Nikolakakis Ioannis, Partheniadis Ioannis

机构信息

Department of Pharmaceutical Technology, School of Pharmacy, Faculty of Health Sciences, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Pharmaceutics. 2017 Nov 3;9(4):50. doi: 10.3390/pharmaceutics9040050.

Abstract

Many articles have been published in the last two decades demonstrating improvement in the dissolution and absorption of low solubility drugs when formulated into self-emulsifying drug delivery systems (SEDDS). Several such pharmaceutical products have appeared in the market for medium dose (Neoral for Cyclsoprin A, Kaletra for Lopinavir and Ritonavir), or low dose medications (Rocaltrol for Calcitriol and Avodart for Dutasteride). However, these are in the form of viscous liquids or semisolid presentations, characterized by the disadvantages of high production cost, stability problems and the requirement of large quantities of surfactants. Solid SEDDS (S-SEDDS), as coarse powders, granules or pellets, besides solubility improvement, can be filled easily into capsules or processed into tablets providing a handy dosage form with instant release, which can be further developed into controlled release by mixing with suitable polymers or coating with polymeric films. In this review, the materials used for the preparation of S-SEDDS, their properties and role in the formulations are detailed. Factors affecting the physical characteristics, mechanical properties of S-SEDDS as well as their in vitro release and in vivo absorption are discussed. The mechanisms involved in the formation of instant and sustained release self-emulsifying granules or pellets are elucidated. Relationships are demonstrated between the characteristics of S-SEDDS units (size, shape, mechanical properties, re-emulsification ability, drug migration and drug release) and the properties of the submicron emulsions used as massing liquids, with the aim to further elucidate the formation mechanisms. The influence of the composition of the powdered ingredients forming the granule or pellet on the properties of S-SEDDS is also examined. Examples of formulations of S-SEDDS that have been reported in the literature in the last thirteen years (2004-2017) are presented.

摘要

在过去二十年中,已经发表了许多文章,证明低溶解度药物制成自乳化药物递送系统(SEDDS)时,其溶解和吸收有所改善。市场上已经出现了几种这样的医药产品,用于中等剂量(环孢素A的新山地明、洛匹那韦和利托那韦的克力芝)或低剂量药物(骨化三醇的罗盖全、度他雄胺的安福达)。然而,这些产品是粘性液体或半固体剂型,具有生产成本高、稳定性问题以及需要大量表面活性剂等缺点。固体SEDDS(S-SEDDS),呈粗粉、颗粒或丸剂形式,除了提高溶解度外,还可以轻松装入胶囊或加工成片剂,提供一种方便的速释剂型,通过与合适的聚合物混合或用聚合物膜包衣,还可以进一步开发成控释剂型。在这篇综述中,详细介绍了用于制备S-SEDDS的材料、它们的性质以及在制剂中的作用。讨论了影响S-SEDDS物理特性、机械性能及其体外释放和体内吸收的因素。阐明了速释和缓释自乳化颗粒或丸剂形成过程中涉及的机制。证明了S-SEDDS单元的特性(尺寸、形状、机械性能、再乳化能力、药物迁移和药物释放)与用作制粒液体的亚微乳剂的性质之间的关系,目的是进一步阐明形成机制。还研究了形成颗粒或丸剂的粉末成分组成对S-SEDDS性质的影响。介绍了过去十三年(2004 - 2017年)文献中报道的S-SEDDS制剂实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbad/5750656/2204f26ba6c7/pharmaceutics-09-00050-g001.jpg

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