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首页> 外文期刊>Expert opinion on drug delivery >Pneumatic dry granulation: potential to improve roller compaction technology in drug manufacture.
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Pneumatic dry granulation: potential to improve roller compaction technology in drug manufacture.

机译:气动干法制粒:改进药物制造中辊压技术的潜力。

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摘要

INTRODUCTION: Solid dosage form manufacture still remains the most common in the production of pharmaceutical products. Established granulation processes can benefit from novel technical improvements, which can in turn enhance the behavior and properties of the process intermediates, that is, granules. These improvements in the manufacturing process can ultimately shorten development times, provide processing solutions for challenging materials and improve quality of drug delivery systems. AREAS COVERED: The aim of this review is to give the reader an overview of the latest trends in research with regard to roller compaction technology. Pneumatic dry granulation is also discussed as a new development with the potential to improve and extend the use of dry granulation processes, which can result in a substantial contribution to drug delivery system development and drug product manufacture. EXPERT OPINION: Dry granulation techniques, and more specifically roller compaction, can provide many advantages over the more established wet granulation techniques. There are still problems with roller compaction such as high amounts of fines and poor flow of granulate. Technical innovations that improve existing processes will have a considerable impact on development times and contribute to improved material processability and behavior of the end product. Pneumatic dry granulation has the potential to provide such alternatives.
机译:简介:固体剂型的生产仍然是药品生产中最常见的。既定的制粒工艺可以从新的技术改进中受益,该技术改进又可以增强工艺中间体(即颗粒)的行为和性能。制造过程中的这些改进最终可以缩短开发时间,为具有挑战性的材料提供加工解决方案,并改善药物输送系统的质量。涵盖的领域:这篇综述的目的是为读者提供有关辊压实技术研究最新趋势的概述。气动干法制粒也作为一种新的发展形式进行了讨论,它有可能改善和扩展干法制粒工艺的应用,这可以为药物输送系统的开发和药品的生产做出重大贡献。专家意见:与更成熟的湿法制粒技术相比,干法制粒技术(尤其是辊压法)可提供许多优势。辊压实仍然存在问题,例如大量的细粉和较差的颗粒流动。改善现有工艺的技术创新将对开发时间产生重大影响,并有助于改善材料的可加工性和最终产品的性能。气动干法制粒有潜力提供此类替代方案。

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