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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >The encapsulation of idarubicin within liposomes using the novel EDTA ion gradient method ensures improved drug retention in vitro and in vivo
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The encapsulation of idarubicin within liposomes using the novel EDTA ion gradient method ensures improved drug retention in vitro and in vivo

机译:使用新型EDTA离子梯度法将伊达比星在脂质体中的包封可确保改善的体内和体外药物保留

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摘要

The purpose of this study was to design a new stable liposomal formulation for the anticancer drug idarubicin. Idarubicin is a relatively hydrophobic member of the anthracycline family. It exhibits pronounced bilayer interactions leading to rapid in vivo drug release from liposomes. This rapid drug leakage is due to the presence of cholesterol and charged lipids in the liposomal bilayer. Therefore, a novel method of remote drug loading was developed to prevent rapid drug release from PEGylated cholesterol-containing liposomes. This method uses EDTA disodium or diammonium salt as an agent to form low solubility complexes between the drug and EDTA molecules inside the liposomes, thus yielding improved drug retention. The efficiency of idarubicin encapsulation is close to 98% at a drug to lipid molar ratio of 1:5. An in vitro long-term storage experiment confirmed the high stability of the liposomes. The in vivo studies also showed the superiority of the new idarubicin formulation over the recently used remote loading methods. The plasma level of idarubicin was much higher when EDTA liposomes were used. The presented results fully demonstrate the superiority of the proposed method of idarubicin encapsulation over existing methods. The method offers the possibility of encapsulating not only all the anthracyclines, but also other weakly amphiphilic bases within the liposomes.
机译:这项研究的目的是为抗癌药物伊达比星设计一种新的稳定脂质体制剂。依达比星是蒽环家族的相对疏水成员。它表现出明显的双层相互作用,从而导致体内药物从脂质体中快速释放出来。这种快速的药物泄漏是由于脂质体双层中存在胆固醇和带电脂质。因此,开发了一种新的远程药物加载方法,以防止药物从聚乙二醇化的含胆固醇脂质体中快速释放。该方法使用EDTA二钠盐或二铵盐作为试剂,在药物与脂质体内的EDTA分子之间形成低溶解度的复合物,从而提高了药物的保留率。当药物与脂质的摩尔比为1:5时,伊达比星的包封效率接近98%。体外长期储存实验证实了脂质体的高稳定性。体内研究还表明,新的伊达比星制剂比最近使用的远程装载方法具有优越性。当使用EDTA脂质体时,伊达比星的血浆水平高得多。提出的结果充分证明了所提出的伊达比星包封方法优于现有方法的优越性。该方法提供了不仅在脂质体内包封所有蒽环类药物,而且还包封其他弱两亲性碱基的可能性。

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