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Role of the complement cascade in the biological fate of liposomes in rodents

机译:补体级联的生物作用脂质体在啮齿动物的命运

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Nanomedicines, including liposomes, have been used to improve the clinical efficacy and safety of drugs. In some liposomal formulations, a hydrophilic polymer coating of poly(ethylene glycol) (PEG) is used to increase the circulation time. Understanding the biological mechanisms responsible for the clearance of PEGylated and non-PEGylated nanomedicines is necessary to develop better-performing materials. The purpose of this work is to explore the role of complement in the elimination of intravenously administered liposomes (PEGylated and non-PEGylated) in mice and rats. Here, the complement cascade was depleted by intraperitoneal injections of cobra venom factor (CVF) 12 and 24 hours before the intravenous injection of radiolabeled liposomes. In both mice and rats, non-PEGylated liposomes showed faster elimination than PEGylated liposomes. At a lipid dose of 20 mg kg(-1), the abrogation of the complement cascade (in CVF group) did not alter the circulation time of either PEGylated or non-PEGylated liposomes. In contrast, at lower doses (2 mg kg(-1)), animals treated with CVF had slightly higher levels of circulating liposomes, especially during the 24 hours pharmacokinetic studies. The complement cascade seems to govern the uptake of non-PEGylated liposomes by splenic B cells. Altogether, these results suggest that although PEGylated and non-PEGylated liposomes can activate complement, the impact of this cascade on their circulation time is minor and mostly perceivable at later phases of distribution. This work enlightens biological pathways responsible forin vivoclearance of liposomes and will help in orienting future research in elucidating the nano-bio interface.
机译:纳米药物,包括脂质体、已使用改善的临床疗效和安全性药物。亲水聚合物涂层的聚(乙烯乙二醇)(挂钩)是用来增加发行量时间。聚乙二醇的间隙和负责non-PEGylated纳米药物是必要的开发性能更好的材料。这些工作是探索补充的作用在静脉注射的消除脂质体(聚乙二醇和non-PEGylated)在老鼠身上和老鼠。减少腹腔内注射的眼镜蛇毒液因子(CVF) 12和24小时之前静脉注射放射性标记的脂质体。在这两种小鼠和大鼠,non-PEGylated脂质体显示比聚乙二醇更快消除脂质体。补体级联(CVF的废除集团)没有改变的循环时间聚乙二醇或non-PEGylated脂质体。相反,在低剂量(2毫克公斤(1)),动物对待CVF的水平略高循环脂质体,特别是在24小时的药代动力学研究。级联管理的吸收non-PEGylated脾脏B细胞的脂质体。总之,这些结果表明,尽管聚乙二醇和non-PEGylated脂质体激活补体,这种级联的影响循环时间是次要,主要是可感知的稍后阶段的分布。生物通路负责工作的启示forin vivoclearance脂质体和将帮助未来定向的研究阐明nano-bio接口。

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