Itiola O A, Pilpel N
Department of Pharmaceutics and Industrial Pharmacy, College of Medicine, University of Ibadan, Nigeria.
J Pharm Pharmacol. 1991 Mar;43(3):145-7. doi: 10.1111/j.2042-7158.1991.tb06655.x.
The individual and interaction effects of nature of binder (N), concentration of binder (C) and the physical form of the formulation (P) on the tensile strengths (T--a measure of the bond strength of tablets) and the brittle fracture index values (BFI--a measure of the lamination tendency of tablets) of metronidazole tablets have been studied using a 2(3) factorial experimental design in each case. Changing binder concentration from a 'low' to a 'high' level increased T and reduced the BFI of the tablets. Methylcellulose 20 exhibited stronger binding effect and greater ability to reduce the lamination tendency of the tablets than polyvinylpyrrolidone of molecular weight 44,000. Granular formulations produced tablets with lower T values but also with lower BFI values than tablets produced from powdered formulations. The ranking of these individual effects on tensile strength was P greater than C greater than N while the ranking for the BFI was P greater than N greater than C. For the interaction effects, the ranking for tensile strength was P-N much greater than N-C greater than P-C while the ranking for the BFI was N-C much greater than P-C greater than P-N.
在每种情况下,均采用2(3)析因实验设计,研究了粘合剂性质(N)、粘合剂浓度(C)和制剂物理形态(P)对甲硝唑片剂抗张强度(T,片剂粘结强度的一种度量)和脆碎度指数值(BFI,片剂分层倾向的一种度量)的个体效应和交互效应。将粘合剂浓度从“低”水平变为“高”水平会增加片剂的T值并降低其BFI值。与分子量为44,000的聚乙烯吡咯烷酮相比,甲基纤维素20表现出更强的粘结效果和更大的降低片剂分层倾向的能力。与由粉末状制剂制成的片剂相比,颗粒状制剂制成的片剂T值较低,但BFI值也较低。这些个体效应对抗张强度的排序为P大于C大于N,而对BFI的排序为P大于N大于C。对于交互效应,抗张强度的排序为P-N远大于N-C大于P-C,而BFI的排序为N-C远大于P-C大于P-N。