Guo H X, Heinämäki J, Yliruusi J
Department of Pharmacy, Pharmaceutical Technology Division, P.O. Box 56, Viikinkaari 5, University of Helsinki, Helsinki, Finland.
Int J Pharm. 1999 Sep 20;186(2):99-108. doi: 10.1016/s0378-5173(99)00141-6.
Direct compression of riboflavin sodium phosphate tablets was studied by confocal laser scanning microscopy (CLSM). The technique is non-invasive and generates three-dimensional (3D) images. Tablets of 1% riboflavin sodium phosphate with two grades of microcrystalline cellulose (MCC) were individually compressed at compression forces of 1.0 and 26.8 kN. The behaviour and deformation of drug particles on the upper and lower surfaces of the tablets were studied under compression forces. Even at the lower compression force, distinct recrystallized areas in the riboflavin sodium phosphate particles were observed in both Avicel PH-101 and Avicel PH-102 tablets. At the higher compression force, the recrystallization of riboflavin sodium phosphate was more extensive on the upper surface of the Avicel PH-102 tablet than the Avicel PH-101 tablet. The plastic deformation properties of both MCC grades reduced the fragmentation of riboflavin sodium phosphate particles. When compressed with MCC, riboflavin sodium phosphate behaved as a plastic material. The riboflavin sodium phosphate particles were more tightly bound on the upper surface of the tablet than on the lower surface, and this could also be clearly distinguished by CLSM. Drug deformation could not be visualized by other techniques. Confocal laser scanning microscopy provides valuable information on the internal mechanisms of direct compression of tablets.
采用共聚焦激光扫描显微镜(CLSM)对核黄素磷酸钠片的直接压片进行了研究。该技术是非侵入性的,可生成三维(3D)图像。分别以1.0和26.8 kN的压力对含有两种微晶纤维素(MCC)等级的1%核黄素磷酸钠片剂进行压片。研究了在压力作用下片剂上下表面药物颗粒的行为和变形情况。即使在较低的压力下,在微晶纤维素PH - 101和微晶纤维素PH - 102片剂的核黄素磷酸钠颗粒中均观察到明显的重结晶区域。在较高压力下,微晶纤维素PH - 102片剂上表面的核黄素磷酸钠重结晶比微晶纤维素PH - 101片剂更广泛。两种微晶纤维素等级的塑性变形特性减少了核黄素磷酸钠颗粒的破碎。当与微晶纤维素一起压片时,核黄素磷酸钠表现为塑性材料。核黄素磷酸钠颗粒在片剂上表面的结合比下表面更紧密,这也可以通过共聚焦激光扫描显微镜清楚地辨别出来。其他技术无法观察到药物的变形情况。共聚焦激光扫描显微镜为片剂直接压片的内部机制提供了有价值的信息。