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制药行业中基于膜的技术与聚合物包衣晶体/颗粒的连续生产。

Membrane-Based Technologies in the Pharmaceutical Industry and Continuous Production of Polymer-Coated Crystals/Particles.

作者信息

Chen Dengyue, Sirkar Kamalesh K, Jin Chi, Singh Dhananjay, Pfeffer Robert

机构信息

Otto York Department of Chemical, Biological and Pharmaceutical Engineering, New Jersey Institute of Technology, University Heights, Newark, NJ 07102. United States.

School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, AZ 85287, United States.

出版信息

Curr Pharm Des. 2017;23(2):242-249. doi: 10.2174/1381612822666161025145229.

Abstract

BACKGROUND

Membrane technologies are of increasing importance in a variety of separation and purification applications involving liquid phases and gaseous mixtures. Although the most widely used applications at this time are in water treatment including desalination, there are many applications in chemical, food, healthcare, paper and petrochemical industries. This brief review is concerned with existing and emerging applications of various membrane technologies in the pharmaceutical and biopharmaceutical industry.

METHODS

The goal of this review article is to identify important membrane processes and techniques which are being used or proposed to be used in the pharmaceutical and biopharmaceutical operations. How novel membrane processes can be useful for delivery of crystalline/particulate drugs is also of interest.

RESULTS

Membrane separation technologies are extensively used in downstream processes for bio-pharmaceutical separation and purification operations via microfiltration, ultrafiltration and diafiltration. Also the new technique of membrane chromatography allows efficient purification of monoclonal antibodies. Membrane filtration techniques of reverse osmosis and nanofiltration are being combined with bioreactors and advanced oxidation processes to treat wastewaters from pharmaceutical plants. Nanofiltration with organic solvent-stable membranes can implement solvent exchange and catalyst recovery during organic solvent-based drug synthesis of pharmaceutical compounds/intermediates. Membranes in the form of hollow fibers can be conveniently used to implement crystallization of pharmaceutical compounds. The novel crystallization methods of solid hollow fiber cooling crystallizer (SHFCC) and porous hollow fiber anti-solvent crystallization (PHFAC) are being developed to provide efficient methods for continuous production of polymer-coated drug crystals in the area of drug delivery.

CONCLUSION

This brief review provides a general introduction to various applications of membrane technologies in the pharmaceutical/biopharmaceutical industry with special emphasis on novel membrane techniques for pharmaceutical applications. The method of coating a drug particle with a polymer using the SHFCC method is stable and ready for scale-up for operation over an extended period.

摘要

背景

膜技术在涉及液相和气态混合物的各种分离和纯化应用中日益重要。尽管目前应用最广泛的领域是包括海水淡化在内的水处理,但在化工、食品、医疗保健、造纸和石化行业也有许多应用。本简要综述关注各种膜技术在制药和生物制药行业的现有及新兴应用。

方法

本文的目的是识别在制药和生物制药操作中正在使用或拟使用的重要膜工艺和技术。新型膜工艺如何有助于结晶/颗粒药物的递送也备受关注。

结果

膜分离技术广泛应用于生物制药分离和纯化操作的下游工艺,通过微滤、超滤和渗滤实现。此外,膜色谱新技术可实现单克隆抗体的高效纯化。反渗透和纳滤的膜过滤技术正与生物反应器和高级氧化工艺相结合,用于处理制药厂的废水。具有有机溶剂稳定性的纳滤膜可在基于有机溶剂的药物化合物/中间体合成过程中实现溶剂交换和催化剂回收。中空纤维形式的膜可方便地用于实现药物化合物的结晶。正在开发固体中空纤维冷却结晶器(SHFCC)和多孔中空纤维抗溶剂结晶(PHFAC)等新型结晶方法,以提供在药物递送领域连续生产聚合物包衣药物晶体的有效方法。

结论

本简要综述对膜技术在制药/生物制药行业的各种应用进行了总体介绍,特别强调了用于制药应用的新型膜技术。使用SHFCC方法用聚合物包衣药物颗粒的方法稳定,可随时扩大规模以进行长期操作。

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