Martínez Gómez Julia M, Csaba Noémi, Fischer Stefan, Sichelstiel Anke, Kündig Thomas M, Gander Bruno, Johansen Pål
Unit for Experimental Immunotherapy, Department of Dermatology, University Hospital Zurich, Gloriastrasse 31, 8091 Zurich, Switzerland.
J Control Release. 2008 Sep 10;130(2):161-7. doi: 10.1016/j.jconrel.2008.06.003. Epub 2008 Jun 7.
Surface modifications of poly(lactide-co-glycolide) microparticles with different polycationic electrolytes have mainly been studied for conjugation to antigens and/or adjuvants. However, the in vivo immunological effects of using surface charged particles have not been address yet. In this study, microparticles were coated or not with protamine, a cationic and arginine-rich electrolyte that confers microparticles with a positively surface charge. We then evaluated the potential of protamine-coatings to assist the induction of immune responses in mice. Interestingly, enhanced antibodies and T-cell responses were observed in mice treated with the coated particles. In vitro studies suggested that the improved immunological performance was mediated by an increased uptake. Indeed, protamine-coated particles that carried a plasmid were even internalised into non-phagocytic cells and to cause their transfection. These results open the way for further research into a novel technology that combines the use protamine for facilitated cell penetration of that and biodegradable microparticles for prolonged antigen or drug release.
用不同的聚阳离子电解质对聚(丙交酯-共-乙交酯)微粒进行表面修饰,主要是为了与抗原和/或佐剂结合。然而,使用表面带电颗粒的体内免疫效果尚未得到研究。在本研究中,微粒用鱼精蛋白(一种富含阳离子和精氨酸的电解质,赋予微粒正表面电荷)进行包被或不包被。然后,我们评估了鱼精蛋白包被在小鼠中辅助诱导免疫反应的潜力。有趣的是,在用包被颗粒处理的小鼠中观察到抗体和T细胞反应增强。体外研究表明,免疫性能的改善是由摄取增加介导的。事实上,携带质粒的鱼精蛋白包被颗粒甚至被内化到非吞噬细胞中并导致其转染。这些结果为进一步研究一种新技术开辟了道路,该技术将使用鱼精蛋白促进细胞穿透与可生物降解微粒用于延长抗原或药物释放相结合。