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壳聚糖-碳酸钙共处理物作为直接压片多功能片剂赋形剂的开发。

Development of Coprocessed Chitin-Calcium Carbonate as Multifunctional Tablet Excipient for Direct Compression.

机构信息

Ecole Doctorale des Sciences et Technologie (EDST), Laboratoire de Valorisation des Ressources Naturelles et Produits de Santé (VRNPS), Université Libanaise, Beyrouth, Lebanon; Institut Charles Gerhardt, UMR 5253, Equipe MACS, UFR Sciences Pharmaceutiques et Biologiques, Université de Montpellier, Montpellier, France.

Institut Charles Gerhardt, UMR 5253, Equipe MACS, UFR Sciences Pharmaceutiques et Biologiques, Université de Montpellier, Montpellier, France.

出版信息

J Pharm Sci. 2018 Aug;107(8):2152-2159. doi: 10.1016/j.xphs.2018.04.013. Epub 2018 Apr 24.

Abstract

Owing to the increasing interest in multifunctional excipients for tableting, coprocessing of individual excipients is regularly used to produce excipients of improved multifunctionality superior to individual excipients or their physical mix. The use of chitin as an excipient in tablet formulation is limited because of certain drawbacks such as poor flowability and low true density. The objective of this work is to improve these properties through coprocessing of chitin with calcium carbonate (CaCO) by precipitating CaCO on chitin particles using different methods. In addition, optimization of the coprocessed chitin was carried out to improve the excipient's properties. Physicochemical (CaCO content, true density, X-ray diffraction, infrared spectroscopy, and scanning electron microscopy) and functional testing (swelling force, flowability, tensile strength, deformation mechanism, and disintegration time) were used to characterize the coprocessed product. Results showed that the calcite CaCO polymorph is precipitated on the chitin surface and that it interacts with chitin at carbonyl- and amide-group level. In addition, the coprocessed excipient has an improved true density and powder flowability, with CaCO forming single layer on the chitin particles surface. Tableting studies showed that the coprocessed powder exhibited an intermediate deformation behavior between CaCO (most brittle) and chitin (most plastic). Tablets showed acceptable tensile strength and rapid disintegration (2-4 s). These results show the potential use of coprocessed chitin-CaCO as a multifunctional excipient for fast disintegration of tablets produced by direct compression.

摘要

由于人们对多功能片剂辅料的兴趣日益增加,通常会将单独的辅料进行共处理,以生产出具有更好多功能性的辅料,其性能优于单一辅料或它们的物理混合物。由于某些缺点,如流动性差和真实密度低,壳聚糖在片剂配方中的应用受到限制。本工作的目的是通过壳聚糖与碳酸钙(CaCO)的共处理来改善这些性质,通过使用不同的方法将 CaCO 沉淀在壳聚糖颗粒上。此外,还对共处理的壳聚糖进行了优化,以改善赋形剂的性质。采用物理化学(CaCO 含量、真实密度、X 射线衍射、红外光谱和扫描电子显微镜)和功能测试(溶胀力、流动性、拉伸强度、变形机制和崩解时间)对共处理产物进行了表征。结果表明,方解石 CaCO 多晶型物沉淀在壳聚糖表面上,并与壳聚糖在羰基和酰胺基水平上相互作用。此外,共处理的赋形剂具有更高的真实密度和更好的粉末流动性,CaCO 在壳聚糖颗粒表面形成单层。压片研究表明,共处理的粉末表现出 CaCO(最脆)和壳聚糖(最具塑性)之间的中间变形行为。片剂具有可接受的拉伸强度和快速崩解(2-4 s)。这些结果表明,共处理的壳聚糖-CaCO 可作为一种多功能赋形剂,用于直接压片法生产的快速崩解片剂。

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