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Conjugation of squalene to gemcitabine as unique approach exploiting endogenous lipoproteins for drug delivery

机译:角鲨烯与吉西他滨的结合是利用内源性脂蛋白进行药物递送的独特方法

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摘要

Once introduced in the organism, the interaction of nanoparticles with various biomolecules strongly impacts their fate. Here we show that nanoparticles made of the squalene derivative of gemcitabine (SQGem) interact with lipoproteins (LPs), indirectly enabling the targeting of cancer cells with high LP receptors expression. In vitro and in vivo experiments reveal preeminent affinity of the squalene-gemcitabine bioconjugates towards LP particles with the highest cholesterol content and in silico simulations further display their incorporation into the hydrophobic core of LPs. To the best of our knowledge, the use of squalene to induce drug insertion into LPs for indirect cancer cell targeting is a novel concept in drug delivery. Interestingly, not only SQGem but also other squalene derivatives interact similarly with lipoproteins while such interaction is not observed with liposomes. The conjugation to squalene represents a versatile platform that would enable efficient drug delivery by simply exploiting endogenous lipoproteins.
机译:一旦引入生物体,纳米颗粒与各种生物分子的相互作用会强烈影响其命运。在这里,我们显示了由吉西他滨的角鲨烯衍生物(SQGem)制成的纳米颗粒与脂蛋白(LP)相互作用,从而间接使靶向高LP受体表达的癌细胞成为可能。体外和体内实验表明,角鲨烯-吉西他滨生物缀合物对具有最高胆固醇含量的LP颗粒具有卓越的亲和力,并且计算机模拟进一步显示了它们掺入LP的疏水核中。据我们所知,使用角鲨烯诱导药物插入LP以间接靶向癌细胞是药物递送中的新概念。有趣的是,不仅SQGem,而且其他角鲨烯衍生物也与脂蛋白类似地相互作用,而在脂质体中未观察到这种相互作用。与角鲨烯的结合代表了一个多功能平台,通过简单地利用内源性脂蛋白即可实现有效的药物递送。

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