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Anticancer drug delivery systems based on specific interactions between albumin and polyglycerol

机译:基于白蛋白和聚甘油之间的特异性相互作用的抗癌药物递送系统

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摘要

Here, we report for the first time a facile method for the preparation of novel drug delivery systems based on supramolecular interactions between beta-cyclodextrin-polyglycerol conjugates (beta-CD-g-PG) and human serum albumin (HSA). The results obtained by combined experimental/modeling studies showed that the main drivers to the formation of HSA/beta-CD-g-PG supramolecular entities are host-guest interactions between beta-CD-g-PG and the aromatic side-chains of HSA residues. Due to these interactions, HSA undergoes a confined yet fundamental conformational transition, leading to greater exposure of the hydrophobic protein domains available to hydrophobic drug binding. Next, the binding affinity and loading capacity of the HSA/beta-CD-g-PG supramolecular nanovector for doxorubicin (DOX) and paclitaxel (PTX) were investigated. Both drug/HSA binding constants (K-b,K-HSA/DOX = 3.24 x 10(3) M-1 and K-b,K-HSA/PTX = 5.65 x 10(1) M-1) sensibly increased in the presence of beta-CD-g-PG (K-b,K-HSA/beta-CD-g-PG/DOX = 2.78 x 10(4) M-1 and K-b,K-HSA/beta-CD-g-PG/PTX = 2.82 x 10(2) M-1). In line, both protein drug loadings increased by about 20% upon HSA/beta-CD-g-PG interaction (80% and 71% for DOX and PTX, respectively) with respect to the loading capacity of the bare HSA (60% and 50%). Due to the improved loading capacity with minimal changes in the structure of HSA, this system is a promising vector for future cancer therapy.
机译:这里,我们报告首次基于β-环糊精 - 聚甘油缀合物(β-CD-G-PG)和人血清白蛋白(HSA)之间的超分子相互作用新颖药物递送系统的制备的简便方法。由组合的实验获得的结果/模拟研究表明,主要驱动到HSA /β-CD-G-PG超分子实体的形成是β-CD-G-PG和HSA的芳香侧链之间主 - 客体相互作用残留物。由于这些相互作用,HSA进行密闭尚未根本构象转变,导致可用于疏水性药物结合疏水蛋白结构域的更大的曝光。接着,多柔比星(DOX)和紫杉醇(PTX)的HSA /β-CD-G-PG超分子纳米载体的结合亲和力和负载能力进行了研究。两个药物/ HSA结合常数(KB,K-HSA / DOX = 3.24×10(3)M-1和KB,K-HSA / PTX = 5.65×10(1)M-1)中的β的存在明显地增加-CD-G-PG(KB,K-HSA /β-CD-G-PG / DOX = 2.78×10(4)M-1和KB,K-HSA /β-CD-G-PG / PTX = 2.82 ×10(2)M-1)。线,两个蛋白质药物负载时HSA /β-CD-G-PG相互作用(80%和71%为DOX和PTX,分别地)相对于增加了约20%到裸HSA的负载能力(60%和50%)。由于与在HSA的结构最小的变化,改进负载能力,该系统是为未来的癌症治疗的有前途的载体。

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  • 来源
    《RSC Advances》 |2016年第14期|共12页
  • 作者单位

    Lorestan Univ Dept Chem Fac Sci Khorramabad Iran;

    Univ Tehran Inst Biochem &

    Biophys Tehran Iran;

    Lorestan Univ Dept Chem Fac Sci Khorramabad Iran;

    Univ Trieste DEA Mol Simulat Engn MOSE Lab Piazzale Europa 1 I-34127 Trieste Italy;

    Univ Trieste DEA Mol Simulat Engn MOSE Lab Piazzale Europa 1 I-34127 Trieste Italy;

    Univ Trieste DEA Mol Simulat Engn MOSE Lab Piazzale Europa 1 I-34127 Trieste Italy;

    Lorestan Univ Dept Chem Fac Sci Khorramabad Iran;

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  • 正文语种 eng
  • 中图分类 化学;
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