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首页> 外文期刊>Biomacromolecules >Cyclic Peptide-Polymer Nanotubes as Efficient and Highly Potent Drug Delivery Systems for Organometallic Anticancer Complexes
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Cyclic Peptide-Polymer Nanotubes as Efficient and Highly Potent Drug Delivery Systems for Organometallic Anticancer Complexes

机译:环状肽 - 聚合物纳米管作为有机金属抗癌复合物的有效和高效的药物递送系统

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Functional drug carrier systems have potential for increasing solubility and potency of drugs while reducing side effects. Complex polymeric materials, particularly anisotropic structures, are especially attractive due to their long circulation times. Here, we have conjugated cyclic peptides to the biocompatible polymer poly(2-hydroxypropyl methacrylamide) (pHPMA). The resulting conjugates were functionalized with organoiridium anticancer complexes. Small angle neutron scattering and static light scattering confirmed their self-assembly and elongated cylindrical shape. Drug-loaded nanotubes exhibited more potent antiproliferative activity toward human cancer cells than either free drug or the drug-loaded polymers, while the nanotubes themselves were nontoxic. Cellular accumulation studies revealed that the increased potency of the conjugate appears to be related to a more efficient mode of action rather than a higher cellular accumulation of iridium.
机译:功能性药物载体系统具有增加药物的溶解度和效力,同时降低副作用。 由于它们的长循环时间,复杂的聚合物材料,特别是各向异性结构特别有吸引力。 这里,我们将缀合的循环肽与生物相容性聚合物聚(2-羟丙基甲基丙烯酰胺)(pHPMA)具有共轭循环肽。 通过有机铱抗癌复合物官能化所得缀合物。 小角度散射和静态光散射证实了它们的自组装和细长的圆柱形状。 载有药物纳米管比游离药物或药物负载的聚合物向人癌细胞表现出更多有效的抗增殖活性,而纳米管本身是无毒的。 细胞累积研究表明,缀合物的增加效力似乎与更有效的作用方式相关,而不是铱的更高细胞积累。

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