Baldeschwieler J D
Ann N Y Acad Sci. 1985;446:349-67. doi: 10.1111/j.1749-6632.1985.tb18413.x.
The interactions of carbohydrate-modified phospholipid vesicles with various isolated cell types in vitro have been studied to establish a better basis for understanding the mechanisms for recognition and transport of such modified vesicles in vivo. The physical basis for the use of perturbed angular correlation spectroscopy for the measurement of phospholipid vesicle integrity, and the kinetics of uptake of modified phospholipid vesicles by mouse peritoneal macrophage are first reviewed. The effects of variation of the chemical structure of the determinant and other factors indicate that the rate of uptake of cationic vesicles by mouse peritoneal macrophage is directly related to the distance that an amine group can be extended beyond the vesicle surface, and not, for example, to the stereochemistry of the carbohydrate determinant. The uptake mechanism appears to involve generalized phagocytosis and not a receptor-mediated mechanism, or an opsonization process that is not stereospecific.
已对碳水化合物修饰的磷脂囊泡与各种体外分离的细胞类型之间的相互作用进行了研究,以便为更好地理解此类修饰囊泡在体内的识别和运输机制奠定基础。首先综述了使用扰动角关联光谱法测量磷脂囊泡完整性的物理基础,以及小鼠腹膜巨噬细胞摄取修饰磷脂囊泡的动力学。决定簇化学结构变化及其他因素的影响表明,小鼠腹膜巨噬细胞对阳离子囊泡的摄取速率与胺基团可延伸至囊泡表面以外的距离直接相关,例如,与碳水化合物决定簇的立体化学无关。摄取机制似乎涉及广义的吞噬作用,而非受体介导机制或非立体特异性的调理过程。