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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Hyperbranched-hyperbranched polymeric nanoassembly to mediate controllable co-delivery of siRNA and drug for synergistic tumor therapy
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Hyperbranched-hyperbranched polymeric nanoassembly to mediate controllable co-delivery of siRNA and drug for synergistic tumor therapy

机译:超支化-超支化聚合物纳米组装体,用于介导可协同递送的siRNA和用于协同肿瘤治疗的药物

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摘要

This study reported a flexible nanoplatform constructed on the pH-dependent self-assembly of two kinds of hyperbranched polymers, and then validated its potency as the controllable siRNA/drug co-delivery vehicle for the combination of chemotherapy with RNA interfering (RNAi) therapy. By virtue of pH-reversible phenylboronate linking, phenylboronic acid-tethered hyperbranched oligoethylenimine (OEI600-PBA) and 1,3-diol-rich hyperbranched polyglycerol (HBPO) can be spontaneously interlinked together into a core-corona nanoconstruction. The special buildup of compactly clustering OEI600-PBA units around hydrophobic HBPO aggregate offered significant advantages over parent OEI600-PBA, including strengthened affinity to siRNA, ability of further loading anticancer drug, easier cellular transport, and acidity-responsive release of payloads. To evaluate the co-delivery capability, Beclin1 siRNA and antitumor DOX were used as the therapeutic models in order to suppress the post-chemotherapy survival of tumor cells caused by drug-induced autophagy. The nanoassembly-mediated single delivery of DOX displayed even better anticancer effects than free DOX, demonstrating the superiority of our pH-responsive nano-design. The nanoassembly-mediated co-delivery of siRNA together with DOX can effectively silence Beclin1 gene, suppress DOX-induced autophagy, and consequently provide strong synergism with a significant enhancement of cell-killing effects in cultured cancerous cells. The in vivo combinational treatment was shown to make the tumor more sensitive to DOX chemotherapy while displaying substantially improved safety as compared with the monochemotherapy. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究报告了一种柔性的纳米平台,该平台基于两种超支化聚合物的pH依赖性自组装构建,然后验证了其作为化学疗法与RNA干扰(RNAi)治疗相结合的可控siRNA /药物共同递送载体的潜力。借助pH可逆的苯基硼酸酯连接,可以将苯基硼酸拴系的超支化低聚亚乙基亚胺(OEI600-PBA)和富含1,3-二醇的超支化聚甘油(HBPO)自发地互连在一起,形成核冠状纳米结构。与疏水性HBPO聚集体紧密结合的OEI600-PBA单元的特殊堆积提供了优于亲代OEI600-PBA的显着优势,包括增强了对siRNA的亲和力,进一步装载抗癌药的能力,更容易的细胞运输以及酸度有效载荷释放。为了评估共递送能力,使用Beclin1 siRNA和抗肿瘤DOX作为治疗模型,以抑制药物诱导的自噬引起的肿瘤细胞在化疗后的存活。纳米组装体介导的DOX单次递送显示出比游离DOX更好的抗癌效果,证明了我们的pH响应纳米设计的优越性。纳米组装介导的siRNA与DOX共同递送可有效沉默Beclin1基因,抑制DOX诱导的自噬,并因此提供强大的协同作用,显着增强培养的癌细胞中的细胞杀伤作用。与单一化学疗法相比,体内联合疗法显示使肿瘤对DOX化学疗法更敏感,同时显示出显着改善的安全性。 (C)2015 Elsevier B.V.保留所有权利。

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