Kanke M, Katayama H, Nakamura M
Faculty of Pharmacy and Pharmaceutical Sciences, Fukuyama University, Hiroshima, Japan.
Biol Pharm Bull. 1995 Aug;18(8):1104-8. doi: 10.1248/bpb.18.1104.
Tablets (300 mg) having two different surface areas were prepared from spray-dried particles of curdlan (100 mg)/theophylline(200 mg). Drug release from the tablets was studied in vitro and in vivo. The in vitro drug release from a tablet with a larger surface area (Tab L) was faster than that with a smaller one (Tab S). The water uptake of Tab L was larger than that of Tab S, probably due to the difference in the tablets' surface areas. However, the water uptake was not a rate-determining step for the drug release from curdlan tablets containing a large amount of theophylline. A straight line was obtained when release % was plotted vs. time. The slope of each curve was calculated as 0.59 for Tab L and 0.58 for Tab S. This indicates that the release mechanism is non-Fickian diffusion controlled. In addition, the curdlan tablets or theophylline powder were administered orally to 5 healthy volunteers, and saliva concentrations of theophylline were determined. Each saliva concentration was converted to plasma concentration using the saliva to plasma ratio of the drug in each subject. The AUC of Tab L was nearly the same as that of powder, while the AUC of Tab S was smaller than that of powder. The mean residence times (MRTs) of theophylline powder, Tab S and Tab L were 11.1 +/- 1.5, 25.4 +/- 6.3 and 17.1 +/- 1.5 h (N = 4-5, mean +/- S.D.), respectively.(ABSTRACT TRUNCATED AT 250 WORDS)
由凝胶多糖(100毫克)/茶碱(200毫克)的喷雾干燥颗粒制备了具有两种不同表面积的片剂(300毫克)。对片剂的药物释放进行了体外和体内研究。具有较大表面积的片剂(Tab L)的体外药物释放比表面积较小的片剂(Tab S)更快。Tab L的吸水量大于Tab S,这可能是由于片剂表面积的差异。然而,吸水量不是含大量茶碱的凝胶多糖片剂药物释放的速率决定步骤。当绘制释放百分比与时间的关系图时得到一条直线。Tab L每条曲线的斜率计算为0.59,Tab S为0.58。这表明释放机制是非菲克扩散控制的。此外,将凝胶多糖片剂或茶碱粉末口服给予5名健康志愿者,并测定茶碱的唾液浓度。使用每个受试者药物的唾液与血浆比率将每个唾液浓度转换为血浆浓度。Tab L的AUC与粉末的几乎相同,而Tab S的AUC小于粉末的。茶碱粉末、Tab S和Tab L的平均驻留时间(MRT)分别为11.1±1.5、25.4±6.3和17.1±1.5小时(N = 4 - 5,平均值±标准差)。(摘要截断于250字)