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热熔挤出技术及其药物应用。

Hot-melt extrusion technology and pharmaceutical application.

作者信息

Wilson Matthew, Williams Marcia A, Jones David S, Andrews Gavin P

机构信息

Queen's University Belfast, School of Pharmacy, 97 Lisburn Road, Belfast BT9 7BL, UK.

出版信息

Ther Deliv. 2012 Jun;3(6):787-97. doi: 10.4155/tde.12.26.

Abstract

The use of hot-melt extrusion (HME) within the pharmaceutical industry is steadily increasing, due to its proven ability to efficiently manufacture novel products. The process has been utilized readily in the plastics industry for over a century and has been used to manufacture medical devices for several decades. The development of novel drugs with poor solubility and bioavailability brought the application of HME into the realm of drug-delivery systems. This has specifically been shown in the development of drug-delivery systems of both solid dosage forms and transdermal patches. HME involves the application of heat, pressure and agitation through an extrusion channel to mix materials together, and subsequently forcing them out through a die. Twin-screw extruders are most popular in solid dosage form development as it imparts both dispersive and distributive mixing. It blends materials while also imparting high shear to break-up particles and disperse them. HME extrusion has been shown to molecularly disperse poorly soluble drugs in a polymer carrier, increasing dissolution rates and bioavailability. The most common difficulty encountered in producing such dispersions is stabilization of amorphous drugs, which prevents them from recrystallization during storage. Pharmaceutical industrial suppliers, of both materials and equipment, have increased their development of equipment and chemicals for specific use with HME. Clearly, HME has been identified as an important and significant process to further enhance drug solubility and solid-dispersion production.

摘要

在制药行业中,热熔挤出(HME)的应用正在稳步增加,这归因于其已被证实的高效制造新型产品的能力。该工艺在塑料行业已被广泛应用了一个多世纪,并用于制造医疗设备已有数十年。溶解度和生物利用度较差的新型药物的开发将HME的应用带入了药物递送系统领域。这在固体剂型和透皮贴剂的药物递送系统开发中得到了具体体现。HME包括通过挤出通道施加热量、压力和搅拌,将物料混合在一起,随后通过模头将其挤出。双螺杆挤出机在固体剂型开发中最为常用,因为它兼具分散混合和分布混合的功能。它在混合物料的同时还施加高剪切力以破碎颗粒并使其分散。HME挤出已被证明能使难溶性药物在聚合物载体中分子分散,提高溶解速率和生物利用度。制备此类分散体时遇到的最常见困难是无定形药物的稳定性,这可防止它们在储存期间重结晶。制药工业的材料和设备供应商都加大了针对HME特定用途的设备和化学品的开发力度。显然,HME已被视为进一步提高药物溶解度和固体分散体生产的重要且关键的工艺。

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