Photos Peter J, Bacakova Lucie, Discher Bohdana, Bates Frank S, Discher Dennis E
Department of Chemical and Biomolecular Engineering, School of Engineering and Applied Science, University of Pennsylvania, Philadelphia, PA 19104-6393, USA.
J Control Release. 2003 Jul 31;90(3):323-34. doi: 10.1016/s0168-3659(03)00201-3.
PEG-modified lipid vesicles have already shown considerable utility in delaying vesicle clearance from the circulation. They are, however, limited in their ability to stably integrate high molar ratios of PEG-lipid due to the high curvature and micellar preference of the very large hydrophilic PEG chain. Polymersomes, by contrast, are vesicles composed entirely of PEG-based block copolymer amphiphiles that are not only more proportionately designed, but also have already been shown to considerably broaden the range of vesicle properties (e.g. stability). Here, polymersomes composed of varying length copolymer chains were injected into rats and found to have in vivo circulation times, tau(1/2), up to about two-fold longer than PEGylated, or Stealth, liposomes. The dependence of tau(1/2) on PEG molecular weight is nonetheless limited by uptake into the liver and spleen-as with liposomes. In vitro incubations of polymersomes in plasma indicate gradual opsonization through plasma protein adsorption, such that, when vesicles are held in an optical trap and presented to a phagocyte, rapid engulfment occurs only after incubation times of similar magnitude to tau(1/2). The stealthiness introduced to liposomes through PEGylation is thus extended here with completely synthetic polymersomes.
聚乙二醇修饰的脂质体在延缓脂质体从循环系统中清除方面已显示出相当大的效用。然而,由于非常大的亲水性聚乙二醇链具有高曲率和胶束偏好性,它们在稳定整合高摩尔比聚乙二醇脂质的能力方面受到限制。相比之下,聚合物囊泡是完全由基于聚乙二醇的嵌段共聚物两亲物组成的囊泡,它们不仅设计得更合理,而且已被证明能显著拓宽囊泡性质的范围(如稳定性)。在此,将由不同长度共聚物链组成的聚合物囊泡注入大鼠体内,发现其体内循环时间τ(1/2)比聚乙二醇化脂质体或隐形脂质体长约两倍。然而,与脂质体一样,τ(1/2)对聚乙二醇分子量的依赖性受到肝脏和脾脏摄取的限制。聚合物囊泡在血浆中的体外孵育表明通过血浆蛋白吸附导致逐渐的调理作用,因此,当囊泡被捕获在光阱中并呈现给吞噬细胞时,只有在与τ(1/2)相似的孵育时间后才会迅速被吞噬。通过聚乙二醇化引入脂质体的隐形性在此通过完全合成的聚合物囊泡得以扩展。