Rajabi-Siahboomi A R, Bowtell R W, Mansfield P, Davies M C, Melia C D
Department of Physics, Nottingham University, United Kingdom.
Pharm Res. 1996 Mar;13(3):376-80. doi: 10.1023/a:1016084224084.
The purpose of this study was to characterise the water mobility in the gel layer of hydrating HPMC tablets. Water mobility in the gel layer of different HPMCs was studied.
NMR imaging, a non-invasive technique, has been used to measure the spatial distribution of self-diffusion coefficient (SDC) and T2 relaxation times across the gel layer.
It has been shown that there is a water mobility gradient across the gel layer of HPMC tablets. Although SDC and T2 relaxation times in the outer parts of the gel layer approached that of free water, in the inner parts they decreased progressively. Water mobility and SDC in the gel layer of different HPMCs appeared to vary with degree of substitution of the polymer and the lowest values were obtained across the gel layer of K4M tablets.
Water mobility varies across the gel layer of hydrating HPMC tablets and it is dependent on the degree of substitution of the polymer.
本研究的目的是表征水合羟丙基甲基纤维素(HPMC)片剂凝胶层中的水迁移率。研究了不同HPMC凝胶层中的水迁移率。
核磁共振成像(NMR成像),一种非侵入性技术,已被用于测量凝胶层中自扩散系数(SDC)和T2弛豫时间的空间分布。
已表明,HPMC片剂凝胶层存在水迁移率梯度。尽管凝胶层外部的SDC和T2弛豫时间接近自由水的,但在内部它们逐渐降低。不同HPMC凝胶层中的水迁移率和SDC似乎随聚合物的取代度而变化,并且在K4M片剂凝胶层中获得了最低值。
水合HPMC片剂凝胶层中的水迁移率不同,并且它取决于聚合物的取代度。