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首页> 外文期刊>Biomacromolecules >Synthesis and Characterization of Cleavable Core-Cross-Linked Micelles Based on Amphiphilic Block Copolypeptoids as Smart Drug Carriers
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Synthesis and Characterization of Cleavable Core-Cross-Linked Micelles Based on Amphiphilic Block Copolypeptoids as Smart Drug Carriers

机译:以两亲嵌段共聚肽为智能药物载体的可裂解核-交联胶束的合成与表征

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摘要

Amphiphilic block copolypeptoids consisting of a hydrophilic poly(N-ethyl glycine) segment and a hydrophobic poly[(N-propargyl glycine)-r-(N-decyl glycine)] random copolymer segment [PNEG-b-P(NPgG-r-NDG), EPgD] have been synthesized by sequential primary amine-initiated ring-opening polymerization (ROP) of the corresponding N-alkyl N-carboxyanhydride monomers. The block copolypeptoids form micelles in water and the micellar core can be cross-linked with a disulfide-containing diazide cross-linker by copper-mediated alkyne-azide cycloaddition (CuAAC) in aqueous solution. Transmission electron microscopy (TEM) and dynamic light scattering (DLS) analysis revealed the formation of spherical micelles with uniform size for both the core-cross-linked micelles (CCLMs) and non-cross-linked micelles (NCLMs) precursors for selective block copolypeptoid polymers. The CCLMs exhibited increased dimensional stability relative to the NCLMs in DMF, a nonselective solvent for the core and corona segments. Micellar dissociation of CCLMs can be induced upon addition of a reducing agent (e.g., dithiothreitol) in dilute aqueous solutions, as verified by a combination of fluorescence spectroscopy, size exclusion chromatography (SEC), and H-1 NMR spectroscopic measurement. Doxorubicin (DOX), an anticancer drug, can be loaded into the hydrophobic core of CCLMs with a maximal 23% drug loading capacity (DLC) and 37% drug loading efficiency (DLE). In vitro DOX release from the CCLMs can be triggered by DTT (10 mM), in contrast to significantly reduced DOX release in the absence of DTT, attesting to the reductively responsive characteristic of the CCLMs. While the CCLMs exhibited minimal cytotoxicity toward HepG2 cancer cells, DOX-loaded CCLMs inhibited the proliferation of the HepG2 cancer cells in a concentration and time dependent manner, suggesting the controlled release of DOX from the DOX-loaded CCLMS in the cellular environment.
机译:由亲水性聚(N-乙基甘氨酸)链段和疏水性聚[(N-炔丙基甘氨酸)-r-(N-癸基甘氨酸)]无规共聚物链段[PNEG-bP(NPgG-r-NDG)组成的两亲嵌段共多肽,EPgD]已经通过相应的N-烷基N-羧基酸酐单体的顺序伯胺引发的开环聚合(ROP)合成。嵌段共多肽在水中形成胶束,并且胶束核心可以通过水溶液中的铜介导的炔-叠氮化物环加成(CuAAC)与含二硫化物的二叠氮化物交联剂交联。透射电子显微镜(TEM)和动态光散射(DLS)分析显示,用于选择性嵌段共聚肽的核心交联胶束(CCLM)和非交联胶束(NCLM)前体均形成了大小均一的球形胶束聚合物。相对于DMF中的NCLM,CCLM表现出更高的尺寸稳定性,DMF是芯部和电晕段的非选择性溶剂。如通过荧光光谱法,尺寸排阻色谱法(SEC)和H-1 NMR光谱法的组合所证实的,在稀水溶液中添加还原剂(例如二硫苏糖醇)可诱导CCLM的胶束解离。阿霉素(DOX)是一种抗癌药物,可以以最大23%的药物装载量(DLC)和37%的药物装载效率(DLE)装载到CCLM的疏水核心中。与不存在DTT的情况下DOX释放明显减少相反,DTT(10 mM)可以触发CCLM的体外DOX释放,这证明了CCLM的还原反应特性。尽管CCLM对HepG2癌细胞表现出最小的细胞毒性,但装载DOX的CCLM以浓度和时间依赖性方式抑制HepG2癌细胞的增殖,表明在细胞环境中DOX从装载DOX的CCLMS中受控释放。

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