首页> 外文期刊>Molecular pharmaceutics >Higher liposomal membrane fluidity enhances the in vitro antitumor activity of folate-targeted liposomal mitoxantrone.
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Higher liposomal membrane fluidity enhances the in vitro antitumor activity of folate-targeted liposomal mitoxantrone.

机译:较高的脂质体膜流动性增强了叶酸靶向脂质体米托蒽醌的体外抗肿瘤活性。

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The efficacy of folate-targeted liposomal drug delivery has not been fully achieved in part because of the slow release of the encapsulated drugs following uptake of the liposomes by target cells. Since liposomal mitoxantrone (MXN) composed of lipids with high fluidity was reported to achieve strong anticancer effects in vivo, we hypothesized that folate-targeted liposomal MXN uptake via folate receptor (FR)-mediated endocytosis could effectively release drugs into the endosomal compartment. Folate-targeted liposomal MXN was prepared using two lipids with different fluidities. MXN was released slowly from all types of liposome into PBS, indicating that the cellular uptake of MXN was considered to be in the liposomal form. Folate-targeted liposomes with high fluidity exhibited lower cellular uptake of loaded FITC-labeled dextran into FR (+) KB cells, but, when MXN was loaded, higher cytotoxicity than liposomes with lower fluidity. On the other hand, the cellular uptake of non-folate liposomes was not affected by the membrane fluidity, but higher cytotoxicity was observed in liposomal MXN with high fluidity, which suggested a higher rate of release of the drug from the liposomes. High levels of cytotoxic activity were achieved with folate-targeted liposomal MXN though the cellular uptake rate was restricted by selecting liposomes with higher lipid membrane fluidity. This finding provides a new insight into folate-targeted carrier drug delivery.
机译:叶酸靶向脂质体药物递送的功效尚未完全实现,部分原因是在靶细胞摄取脂质体后封装药物缓慢释放。由于据报道由高流动性脂质组成的脂质体米托蒽醌(MXN)在体内具有较强的抗癌作用,因此我们假设通过叶酸受体(FR)介导的内吞作用以叶酸为靶标的脂质体MXN摄取可以有效地将药物释放到内体区室中。使用两种流动性不同的脂质制备了叶酸靶向脂质体MXN。 MXN从所有类型的脂质体缓慢释放到PBS中,表明MXN的细胞摄取被认为是脂质体形式。具有高流动性的叶酸靶向脂质体表现出较低的细胞装载FITC标记的葡聚糖进入FR(+)KB细胞的细胞摄取,但是,当装载MXN时,其细胞毒性高于具有较低流动性的脂质体。另一方面,非叶酸脂质体的细胞摄取不受膜流动性的影响,但是在具有高流动性的脂质体MXN中观察到更高的细胞毒性,这表明药物从脂质体中的释放速率更高。以叶酸为靶点的脂质体MXN可以实现高水平的细胞毒活性,尽管通过选择脂质膜流动性更高的脂质体来限制细胞的吸收速率。这一发现为叶酸靶向载体药物的输送提供了新的见解。

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