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小分子赋形剂与聚合物共处理以改善功能。

Co-processing of small molecule excipients with polymers to improve functionality.

机构信息

Solid State Pharmaceutics Lab, Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Mohali, Punjab, India.

出版信息

Expert Opin Drug Deliv. 2021 Jul;18(7):907-928. doi: 10.1080/17425247.2021.1873946. Epub 2021 Feb 5.

Abstract

INTRODUCTION

Polymers have various applications such as binder, film coating agent, stabilizer, drug release modification, and as primary packaging materials. Recently, they have been explored in co-processing technique to improve the functionality of small molecule excipients (SMEs). Co-processing is a concept wherein two or more excipients interact at sub-particle level to provide synergy in functionality and minimize drawbacks of individual excipients.

AREA COVERED

The present review highlights the application of co-processing to improve the functionality of SMEs using polymers; physicochemical and mechanical properties of polymers for co-processing; advantages of co-processed excipients for different applications; functionality enhancement of co-processed excipients; novel concepts/methods for co-processing; mechanistic insights on co-processing and commercial products available in the market.

EXPERT OPINION

Most of the SMEs do not possess optimal multifunctional properties like flow, compressibility, compactibility, and disintegration ability, required to compensate for poorly compactable drugs. Some of these drawbacks can be overcome by co-processing of SMEs with polymers. For example, co-processing of a brittle SME and plastic material (polymer) can provide a synergistic effect and result in the generation of single entity multi-functional excipient. Besides, novel co-processed excipients generated using combinations of SMEs and polymers can also generate intellectual property rights.

摘要

简介

聚合物具有各种应用,如粘合剂、薄膜包衣剂、稳定剂、药物释放改性剂和主要包装材料。最近,它们在共加工技术中得到了探索,以提高小分子赋形剂(SMEs)的功能。共加工是一种概念,其中两个或更多赋形剂在亚颗粒水平上相互作用,以提供功能协同作用,并最小化单个赋形剂的缺点。

涵盖领域

本综述强调了使用聚合物改善 SMEs 功能的共加工应用;用于共加工的聚合物的物理化学和机械性能;共加工赋形剂在不同应用中的优势;共加工赋形剂的功能增强;共加工的新概念/方法;共加工的机械见解和市场上可用的商业产品。

专家意见

大多数 SMEs 不具备流动、可压缩性、可压缩性和崩解能力等优化的多功能特性,这些特性是补偿可压缩性差的药物所必需的。通过与聚合物共加工,可以克服其中一些缺点。例如,脆性 SMEs 和塑性材料(聚合物)的共加工可以提供协同作用,并导致产生单一实体多功能赋形剂。此外,使用 SMEs 和聚合物组合生成的新型共加工赋形剂也可以产生知识产权。

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