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首页> 外文期刊>ACS nano >Bundled Assembly of Helical Nanostructures in Polymeric Micelles Loaded with Platinum Drugs Enhancing Therapeutic Efficiency against Pancreatic Tumor
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Bundled Assembly of Helical Nanostructures in Polymeric Micelles Loaded with Platinum Drugs Enhancing Therapeutic Efficiency against Pancreatic Tumor

机译:聚合物胶束的螺旋纳米结构的捆绑组装,该胶束负载了铂类药物,可增强针对胰腺肿瘤的治疗效率。

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Supramolecular assemblies of amphiphilic block copolymers having polypeptide segments offer significant advantages for tailoring spatial arrangement based on secondary structures in their optically active backbones. Here, we demonstrated the critical effect of α-helix bundles in cisplatin-conjugated poly(L- (or D-)glutamate) [P(L(or D)Glu)-CDDP] segment on the packaging of poly(ethylene glycol) (PEG)- P(L(or D)Glu)-CDDP block copolymers in the core of polymeric micelles (CDDP/m) and enhanced micelle tolerability to harsh in vivo conditions for accomplishing appreciable antitumor efficacy against intractable pancreatic tumor by systemic injection. CDDP/m prepared from optically inactive PEG-poly(D,L-glutamate) (P(D,LGlu)), gradually disintegrated in the bloodstream, resulting in increased accumulation in liver and spleen and reduced antitumor efficacy. Alternatively, CDDP/m from optically active PEG-P(L(or D)Glu) maintained micelle structure during circulation, and eventually attained selective tumor accumulation while reducing nonspecific distribution to liver and spleen. Circular dichroism and small-angle X-ray scattering measurements indicated regular bundled assembly of R-helices in the core of CDDP/m from PEG-P(L(or D)Glu), which is suggested to stabilize the micelle structure against dilution in physiological condition. CDDP/m suffered corrosion by chlorides in medium, yet the optically active micelles with α-helix bundles kept the micelle structure for prolonged time, with slowly releasing unimers and dimers from the surface of the bundled core in an erosion-like process, as verified by ultracentrifugation analysis. This is in sharp contrast with the abrupt disintegration of CDDP/m from PEG-P(D,LGlu) without secondary structures. The tailored assembly in the core of the polymeric micelles through regular arrangement of constituting segments is key to overcome their undesirable disintegration in bloodstream, thereby achieving efficient delivery of loaded drugs into target tissues.
机译:具有多肽链段的两亲性嵌段共聚物的超分子组装为基于其光学活性主链中的二级结构定制空间排列提供了显着的优势。在这里,我们证明了α-螺旋束在顺铂偶联的聚(L-(或D-)谷氨酸)[P(L(或D)Glu)-CDDP]片段中对聚乙二醇包装的关键作用(PEG)-P(L(或D)Glu)-CDDP嵌段共聚物在聚合物胶束的核心(CDDP / m)中,并通过体内注射增强了对苛刻体内条件的胶束耐受性,从而实现了针对顽固性胰腺肿瘤的明显抗肿瘤功效。由旋光不活泼的PEG-聚(D,L-谷氨酸)(P(D,LGlu))制备的CDDP / m在血流中逐渐崩解,导致肝脏和脾脏中的积累增加,抗肿瘤功效降低。或者,来自旋光性PEG-P(L(或D)Glu)的CDDP / m在循环过程中保持胶束结构,并最终达到选择性肿瘤积累,同时减少了对肝和脾的非特异性分布。圆二色性和小角度X射线散射测量表明,R-螺旋在PEG-P(L(或D)Glu)的CDDP / m核芯中有规则的成束组装,建议稳定胶束结构以防在生理状况。 CDDP / m在介质中受到氯化物的腐蚀,但是具有α-螺旋束的旋光胶束可以长时间保持胶束结构,并在类似侵蚀的过程中缓慢从束芯表面释放出单体和二聚体。通过超速离心分析。这与CDDP / m从没有二级结构的PEG-P(D,LGlu)突然崩解形成鲜明对比。通过规则排列构成片段,在聚合物胶束核心中进行量身定制的组装是克服其在血流中发生不希望的崩解的关键,从而可以有效地将负载的药物输送到目标组织中。

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