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LC-MS/MS study of in vivo fate of hyaluronan polymeric micelles carrying doxorubicin

机译:LC-MS / MS研究携带多柔比星的透明质酸聚合物胶束体内命运

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摘要

A better understanding of in vivo behavior of nanocarriers is necessary for further improvement in their development. Here we present a novel approach, where both the matrix and the drug can be analyzed by LC-MS/MS after one sample handling. The developed method was applied for the comparison of pharmacokinetic profile of free and encapsulated doxorubicin (DOX) in oleyl hyaluronan (HA-C18:1) polymeric micelles. The results indicated that nanocarriers were rapidly dissociated upon in vivo administration. Despite this fact, the administration of encapsulated DOX led to its longer circulation time and enhanced tumor targeting. This effect was not observed injecting blank HA-C18:1 micelles followed by unencapsulated DOX. Biodistribution studies and molecular weight estimation of the carrier matrix indicated relatively high stability of HA-C18:1 ester bond in bloodstream and complete elimination of the derivative within 72 h. The proposed methodology provides a novel strategy to elucidate the pharmacokinetic behavior of polysaccharide-based drug delivery systems.
机译:更好地理解纳米载波的体内行为对于进一步改善其发展是必要的。在这里,我们提出了一种新方法,其中基质和药物可以通过LC-MS / MS进行分析,在一个样品处理之后。应用了开发的方法,用于比较油透明油(HA-C18:1)聚合物胶束的自由和包封的多柔比星(DOX)的药代动力学分布。结果表明,体内施用纳米载体迅速解离。尽管如此,封装的DOX的给药导致其较长的循环时间和增强的肿瘤靶向。未观察到这种效果注射空白HA-C18:1胶束,然后是未封闭的DOX。载体基质的生物分布研究和分子量估计表明血液中HA-C18:1酯键的相对高的稳定性,并在72小时内完全消除衍生物。该提出的方法提供了一种新的策略来阐明多糖的药物递送系统的药代动力学行为。

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