Vonarbourg A, Passirani C, Saulnier P, Simard P, Leroux J C, Benoit J P
INSERM, U646, Université d'Angers, F-49100 Angers, France.
J Biomed Mater Res A. 2006 Sep 1;78(3):620-8. doi: 10.1002/jbm.a.30711.
This work consisted in defining the in vitro behavior of pegylated lipid nanocapsules (LNC) toward the immune system. LNC were composed of an oily core surrounded by a shell of lecithin and polyethylene glycol (PEG) known to decrease the recognition of nanoparticles by the immune system. The "stealth" properties were evaluated by measuring complement activation (CH50 technique and crossed-immunoelectrophoresis (C3 cleavage)) and macrophage uptake. These experiments were performed on 20-, 50-, and 100-nm LNC before and after dialysis. A high density of PEG at the surface led to very low complement activation by LNC with a slight effect of size. This size effect, associated to a dialysis effect in macrophage uptake, was due to differences in density and flexibility of PEG chains related to LNC curvature radius. Thanks to a high density, 660-Da PEG provided LNC a steric stabilization and a protective effect versus complement protein opsonization, but this protection decreased with the increase of LNC size, especially versus macrophage uptake.
这项工作在于确定聚乙二醇化脂质纳米囊(LNC)对免疫系统的体外行为。LNC由油性核心和卵磷脂与聚乙二醇(PEG)外壳组成,已知后者可降低免疫系统对纳米颗粒的识别。通过测量补体激活(CH50技术和交叉免疫电泳(C3裂解))以及巨噬细胞摄取来评估“隐形”特性。这些实验在透析前后的20纳米、50纳米和100纳米LNC上进行。表面高密度的PEG导致LNC的补体激活非常低,且尺寸影响较小。这种尺寸效应与巨噬细胞摄取中的透析效应相关,是由于与LNC曲率半径相关的PEG链密度和柔韧性差异所致。由于高密度,660道尔顿的PEG为LNC提供了空间稳定作用以及针对补体蛋白调理作用的保护作用,但这种保护作用会随着LNC尺寸的增加而降低,尤其是针对巨噬细胞摄取。