Wischke C, Borchert H-H
Department of Pharmacy, Free University of Berlin, Germany.
J Microencapsul. 2006 Jun;23(4):435-48. doi: 10.1080/02652040600612512.
Microparticles prepared from poly(lactic-co-glycolic acid) (PLGA) using a W1/O/W2 double emulsion solvent evaporation method are suitable vehicles for the delivery of proteins to antigen presenting cells, e.g. dendritic cells. In this study, the influence of different techniques for the preparation of the primary W1/O emulsion was investigated with respect to the protein localization within the microparticles, morphological characteristics of these particles, protein burst release and the native state of the released protein. Bovine serum albumin bearing fluorescein isothiocyanate (FITC-BSA) was used as model protein. A static micromixer was applied for the preparation of the W1/O/W2 double emulsion. Employing a rotor-stator homogenizer (Ultra-Turrax) for primary emulsification, microcapsules with a high burst release were produced, because nearly all FITC-BSA was attached to the outside of the particle wall. Using a high pressure homogenizer or an ultrasonic procedure resulted in the formation of microspheres with homogeneous protein distribution and a reduced burst release.
采用W1/O/W2双乳液溶剂蒸发法由聚乳酸-乙醇酸共聚物(PLGA)制备的微粒是将蛋白质递送至抗原呈递细胞(如树突状细胞)的合适载体。在本研究中,针对微粒内蛋白质的定位、这些颗粒的形态特征、蛋白质的突释以及释放蛋白的天然状态,研究了制备初级W1/O乳液的不同技术的影响。携带异硫氰酸荧光素的牛血清白蛋白(FITC-BSA)用作模型蛋白。使用静态微混合器制备W1/O/W2双乳液。采用转子-定子均质器(Ultra-Turrax)进行初级乳化时,会产生具有高突释率的微胶囊,因为几乎所有FITC-BSA都附着在颗粒壁的外部。使用高压均质器或超声程序会导致形成蛋白质分布均匀且突释率降低的微球。