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通过应力松弛测量探测片剂崩解的早期阶段。

Probing the early stages of tablet disintegration by stress relaxation measurement.

机构信息

Department of Chemical Engineering, University of Chemistry and Technology, Prague, Technická 3, 166 28 Prague 6, Czech Republic; Zentiva, k.s., U Kabelovny 130, 102 00 Prague 10, Czech Republic.

Zentiva, k.s., U Kabelovny 130, 102 00 Prague 10, Czech Republic.

出版信息

Eur J Pharm Sci. 2018 Nov 1;124:145-152. doi: 10.1016/j.ejps.2018.08.029. Epub 2018 Aug 24.

Abstract

Rapid tablet disintegration is a requirement for the efficient dissolution of the active pharmaceutical ingredient (API) from immediate release tablets. From the mechanistic viewpoint, tablet disintegration begins by the wetting of the tablet surface and the ingress of dissolution medium into the tablet pore structure, followed by the loosening of inter-particle bonds. The present work introduces a new methodology for probing and quantifying the early stages of tablet disintegration by stress relaxation measurements using texture analysis (TA). The method is based on applying a pre-defined load on the tablet by means of a needle-shaped probe and measuring the tablet resistance in time after the addition of the dissolution medium. This measurement provides information about the extent and rate of stress relaxation within the tablet upon hydration. Using a tablet formulation containing ibuprofen as the API and lactose as excipient, the effect of the API content, compaction pressure, and pH of the dissolution medium on the stress relaxation rate was systematically investigated. It is shown that using a dissolution medium pre-saturated by the formulation components has only a minor effect on the tablet disintegration rate compared to a pure phosphate buffer, meaning that the surface dissolution of particles within the tablet is not the main pre-requisite of disintegration in this case. On the other hand, pH of the dissolution medium was found to have a very strong effect on the stress relaxation rate in the tablet after wetting, suggesting that van der Waals interactions rather than solid bridges are the predominant particle bonding mechanism in the investigated formulations.

摘要

快速片剂崩解是高效溶解即释片剂中活性药物成分(API)的要求。从机械的角度来看,片剂崩解首先是通过片剂表面的润湿和溶解介质进入片剂孔结构,然后是颗粒间键的松动。本工作通过使用纹理分析(TA)的应力松弛测量来探测和量化片剂崩解的早期阶段,引入了一种新方法。该方法基于通过针状探针在片剂上施加预定的负载,并在添加溶解介质后测量片剂的阻力随时间的变化。该测量提供了关于水合时片剂内部应力松弛的程度和速率的信息。使用含有布洛芬作为 API 和乳糖作为赋形剂的片剂配方,系统研究了 API 含量、压缩压力和溶解介质 pH 值对应力松弛速率的影响。结果表明,与纯磷酸盐缓冲液相比,用配方成分预先饱和的溶解介质对片剂崩解速率的影响较小,这意味着在这种情况下,颗粒的表面溶解不是崩解的主要前提。另一方面,发现溶解介质的 pH 值对润湿后片剂中的应力松弛速率有很强的影响,这表明范德华相互作用而不是固体桥接是所研究配方中主要的颗粒结合机制。

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