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直接压片辅料的颗粒工程:理解材料特性的作用

Particle Engineering of Excipients for Direct Compression: Understanding the Role of Material Properties.

作者信息

Mangal Sharad, Meiser Felix, Morton David, Larson Ian

机构信息

Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria 3052, Australia.

出版信息

Curr Pharm Des. 2015;21(40):5877-89. doi: 10.2174/1381612821666151008125117.

Abstract

Tablets represent the preferred and most commonly dispensed pharmaceutical dosage form for administering active pharmaceutical ingredients (APIs). Minimizing the cost of goods and improving manufacturing output efficiency has motivated companies to use direct compression as a preferred method of tablet manufacturing. Excipients dictate the success of direct compression, notably by optimizing powder formulation compactability and flow, thus there has been a surge in creating excipients specifically designed to meet these needs for direct compression. Greater scientific understanding of tablet manufacturing coupled with effective application of the principles of material science and particle engineering has resulted in a number of improved direct compression excipients. Despite this, significant practical disadvantages of direct compression remain relative to granulation, and this is partly due to the limitations of direct compression excipients. For instance, in formulating high-dose APIs, a much higher level of excipient is required relative to wet or dry granulation and so tablets are much bigger. Creating excipients to enable direct compression of high-dose APIs requires the knowledge of the relationship between fundamental material properties and excipient functionalities. In this paper, we review the current understanding of the relationship between fundamental material properties and excipient functionality for direct compression.

摘要

片剂是用于给药活性药物成分(API)的首选且最常配发的药物剂型。将商品成本降至最低并提高生产效率促使各公司将直接压片作为片剂生产的首选方法。辅料决定了直接压片的成败,特别是通过优化粉末配方的可压性和流动性,因此专门为满足直接压片的这些需求而设计的辅料激增。对片剂生产的更深入科学理解,再加上材料科学和颗粒工程原理的有效应用,已产生了许多改进的直接压片辅料。尽管如此,相对于制粒而言,直接压片仍存在明显的实际缺点,部分原因在于直接压片辅料的局限性。例如,在配制高剂量API时,相对于湿法制粒或干法制粒,需要更高水平的辅料,因此片剂会大得多。开发能够直接压片高剂量API的辅料需要了解基本材料特性与辅料功能之间的关系。在本文中,我们综述了目前对直接压片基本材料特性与辅料功能之间关系的理解。

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