Chretien C, Boudy V, Allain P, Chaumeil J C
Laboratoire de Pharmacie Galénique, Faculté de Sciences Pharmaceutiques et Biologiques, Université Paris 5, 4 avenue de l'Observatoire, 75270 Paris cedex 06, France.
J Control Release. 2004 May 18;96(3):369-78. doi: 10.1016/j.jconrel.2004.01.020.
Ion-exchange microspheres (MS) designed as a drug delivery system for embolization coupling ability to occlude vessels and chemotherapy were used to evaluate a manufacturing process allowing to control the drug release rate through reduction of diffusion rate of the drug within the particle by impregnation of calcium alginate inside the porous MS. Impregnation was performed by diffusion of sodium alginate inside DEAE-Trisacryl(R) MS, dispersion of the MS in deionised water and gelling alginate by adding CaCl(2) to the dispersed MS. Studied parameters were alginate concentration, alginate diffusion time and calcium concentration. Indomethacin was loaded into the MS by eluting an aqueous indomethacin solution through a chromatographic column packed with impregnated MS. Indomethacin loading was reduced by alginate. Swelling studies showed indomethacin loading enhanced the hydrophobicity of MS while impregnation had no effect. This had an incidence on indomethacin release rate, which was assessed using the rapid elution of PBS through loaded impregnated MS packed in a column. Indomethacin loading reduced its own rate of release. MS impregnated with 2% w/v alginate gelled with a 40 mM calcium solution presented the lower release rate. This work indicated the manufacturing conditions to display a calcium alginate matrix effect on indomethacin release from DEAE-Trisacryl MS.
离子交换微球(MS)被设计为一种用于栓塞的药物递送系统,它兼具闭塞血管和化疗的耦合能力,通过在多孔MS内部浸渍海藻酸钙来降低药物在颗粒内的扩散速率,从而控制药物释放速率,以此来评估一种制造工艺。浸渍过程是通过将海藻酸钠扩散到二乙氨基乙基-三羟甲基氨基甲烷(DEAE-Trisacryl®)MS内部,将MS分散在去离子水中,然后向分散的MS中添加氯化钙使海藻酸凝胶化来完成的。研究的参数包括海藻酸盐浓度、海藻酸盐扩散时间和钙浓度。通过将吲哚美辛水溶液通过填充有浸渍MS的色谱柱洗脱,将吲哚美辛载入MS中。海藻酸盐降低了吲哚美辛的载入量。溶胀研究表明,吲哚美辛载入增强了MS的疏水性,而浸渍则没有影响。这对吲哚美辛的释放速率产生了影响,通过使用磷酸盐缓冲盐水(PBS)快速洗脱通过填充在柱中的载入浸渍MS来评估释放速率。吲哚美辛的载入降低了其自身的释放速率。用2% w/v海藻酸盐浸渍并用40 mM钙溶液凝胶化的MS呈现出较低的释放速率。这项工作表明了制造条件对海藻酸钙基质对吲哚美辛从DEAE-Trisacryl MS释放的影响。