首页> 美国卫生研究院文献>Nanomaterials >Effect of pH-Responsive Charge-Conversional Polymer Coating to Cationic Reduced Graphene Oxide Nanostructures for Tumor Microenvironment-Targeted Drug Delivery Systems
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Effect of pH-Responsive Charge-Conversional Polymer Coating to Cationic Reduced Graphene Oxide Nanostructures for Tumor Microenvironment-Targeted Drug Delivery Systems

机译:pH响应电荷转换聚合物涂层对肿瘤微环境靶向药物传递系统的阳离子还原石墨烯氧化物纳米结构的影响。

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摘要

Tumor tissue represents a slightly acidic pH condition compared to normal tissue due to the accumulation of lactic acids via anaerobic metabolism. In this work, pH-responsive charge-conversional polymer (poly(ethylene imine)-poly(l-lysine)-poly(l-glutamic acid), PKE polymer) was employed for endowing charge-conversional property and serum stability to poly(ethylene imine) conjugated reduced graphene oxide-based drug delivery system (PEI-rGO). Zeta-potential value of PEI-rGO coated with PK5E7 polymer (PK5E7(PEI-rGO)) was −10.9 mV at pH 7.4 and converted to 29.2 mV at pH 6.0, showing pH-responsive charge-conversional property. Sharp-edged plate morphology of PEI-rGO was transformed to spherical nanostructures with vague edges by PK5E7 coating. Size of PK5E7(PEI-rGO) was found to be smaller than that of PEI-rGO in the serum condition, showing its increased serum stability. Loaded doxorubicin (DOX) in PK5E7(PEI-rGO) could be released rapidly in lysosomal condition (pH 5.0, 5 mM glutathione). Furthermore, DOX-loaded PK5E7(PEI-rGO) showed enhanced anticancer activity in HeLa and A549 cells in the tumor microenvironment-mimicking condition (pH 6.0, serum), which would be mediated by non-specific cellular interaction with decorated serum proteins. These results indicate that the pH-responsive charge-conversional PKE polymer coating strategy of cationic rGO nanostructures possesses a potential for acidic tumor microenvironment-targeted drug delivery systems.
机译:由于乳酸通过厌氧代谢的积累,因此与正常组织相比,肿瘤组织表现出弱酸性的pH条件。在这项工作中,pH响应电荷转换聚合物(聚(亚乙基亚胺)-聚(1-赖氨酸)-聚(1-谷氨酸),PKE聚合物)用于赋予电荷转换性质和血清稳定性。乙烯亚胺)共轭还原氧化石墨烯基药物递送系统(PEI-rGO)。涂有PK5E7聚合物的PEI-rGO(PK5E7(PEI-rGO))的Zeta电位值在pH 7.4时为-10.9 mV,在pH 6.0时转化为29.2 mV,表现出pH响应的电荷转换特性。 PEI-rGO的锐边板形态通过PK5E7涂层转变为边缘模糊的球形纳米结构。发现在血清条件下PK5E7(PEI-rGO)的大小小于PEI-rGO的大小,表明其血清稳定性增加。在溶酶体条件下(pH 5.0,5 mM谷胱甘肽),PK5E7(PEI-rGO)中负载的阿霉素(DOX)可以快速释放。此外,DOX加载的PK5E7(PEI-rGO)在肿瘤微环境模拟条件下(pH 6.0,血清)在HeLa和A549细胞中显示出增强的抗癌活性,这可能是由与修饰的血清蛋白的非特异性细胞相互作用介导的。这些结果表明,阳离子rGO纳米结构的pH响应电荷转换PKE聚合物涂层策略具有针对酸性肿瘤微环境靶向药物递送系统的潜力。

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