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首页> 外文期刊>ACS nano >Traceable multifunctional micellar nanocarriers for cancer-targeted co-delivery of MDR-1 siRNA and doxorubicin
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Traceable multifunctional micellar nanocarriers for cancer-targeted co-delivery of MDR-1 siRNA and doxorubicin

机译:可追踪的多功能胶束纳米载体,用于靶向MDR-1 siRNA和阿霉素的共同递送

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摘要

In this article we report on the development of polymeric micelles that can integrate multiple functions in one system, including the capability to accommodate a combination of therapeutic entities with different physicochemical properties (i.e., siRNA and doxorubicin; DOX), passive and active cancer targeting, cell membrane translocation, and pH-triggered drug release. A micellar system was constructed from degradable poly(ethylene oxide)-block-poly(?-caprolactone) (PEO-b-PCL) block copolymers with functional groups on both blocks. The functional group on the PCL block was used to incorporate short polyamines for complexation with siRNA or to chemically conjugate DOX via a pH-sensitive hydrazone linkage. A virus mimetic shell was conferred by attaching two ligands, i.e., the integrin αvβ3-specific ligand (RGD4C) for active cancer targeting and the cell-penetrating peptide TAT for membrane activity. This system was used to improve the efficacy of DOX in multidrug-resistant MDA-MB-435 human tumor models that overexpress P-glycoprotein (P-gp), by simultaneous intracellular delivery of DOX and siRNA against P-gp expression. The carrier was tagged with near-infrared fluorescent imaging probes to provide a means to follow the fate of the system in vivo upon intravenous administration. Dy677-labeled siRNA was also used to assess the in vivo stability of the siRNA carrier. This multifunctional polymeric micellar system was shown to be capable of DOX and siRNA delivery to their intracellular targets, leading to the inhibition of P-gp-mediated DOX resistance in vitro and targeting of αvβ3-positive tumors in vivo.
机译:在本文中,我们报告了可在一个系统中整合多种功能的聚合胶束的发展,包括容纳具有不同理化特性(即siRNA和阿霉素; DOX),被动和主动靶向癌症的治疗实体的组合的能力,细胞膜易位和pH触发的药物释放。由可降解的聚(环氧乙烷)-嵌段-聚(ε-己内酯)(PEO-b-PCL)嵌段共聚物组成的胶束体系在两个嵌段上均具有官能团。 PCL嵌段上的官能团用于掺入短多胺以与siRNA络合,或通过pH敏感的linkage键化学偶联DOX。通过附着两个配体,即用于主动靶向癌症的整联蛋白αvβ3特异性配体(RGD4C)和用于膜活性的细胞穿透肽TAT,来赋予模拟病毒壳的作用。通过同时细胞内递送DOX和siRNA对抗P-gp表达,该系统用于提高DOX在过表达P-糖蛋白(P-gp)的多药耐药MDA-MB-435人肿瘤模型中的功效。用近红外荧光成像探针标记载体,以提供一种在静脉内给药后在体内追踪系统命运的手段。 Dy677标记的siRNA也用于评估siRNA载体的体内稳定性。该多功能聚合物胶束系统显示能够将DOX和siRNA传递至其细胞内靶标,从而在体外抑制P-gp介导的DOX耐药性,并在体内靶向αvβ3阳性肿瘤。

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