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首页> 外文期刊>Acta biomaterialia >A pH-sensitive charge-conversion system for doxorubicin delivery.
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A pH-sensitive charge-conversion system for doxorubicin delivery.

机译:用于阿霉素递送的pH敏感电荷转换系统。

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A novel pH-sensitive charge-conversion shielding system was designed by the electrostatic binding of polyethylenimine (PEI)-poly(l-lysine)-poly(l-glutamic acid) (PELG), PEI, and cis-aconityl-doxorubicin (CAD). Doxorubicin (DOX) was modified by cis-aconityl linkage to form acid-sensitive CAD, which was then adsorbed by the positively charged PEI. The PEI/CAD complexes were subsequently shielded with the pH-responsive charge-conversion PELG. In normal tissues, the PELG/PEI/CAD complexes were negatively charged; in acidic tumor tissues, the shielding PELG was positively charged and detached from the PELG/PEI/CAD complexes. The resulting positively charged PEI/CAD complexes thus became exposed and were endocytosed. CAD was then cleaved in the acidic intracellular environment of endosomes and lysosomes, and converted back into DOX. The charge reversal of the PELG/PEI/CAD complexes was verified by zeta potential analysis at different pH values. Moreover, DOX release increased with decreasing pH. Cell uptake and confocal laser scanning microscopy analyses showed that, at pH 6.8, PELG/PEI/CAD had the highest endocytosis rate and more DOX entered cell nuclei. More importantly, the system showed remarkable cytotoxicity against cancer cells. These results revealed that the combination of pH-sensitive charge-conversion shielding with pH-sensitive drug release is a potential drug delivery system for tumor treatment.
机译:通过静电结合聚乙烯亚胺(PEI)-聚(1-赖氨酸)-聚(1-谷氨酸)(PELG),PEI和顺式-乙酰基-阿霉素(CAD)设计了一种新型的pH敏感的电荷转换屏蔽系统)。阿霉素(DOX)通过顺式-乙酰基键修饰形成酸敏感性CAD,然后被带正电的PEI吸附。随后用pH响应电荷转换PELG保护PEI / CAD复合物。在正常组织中,PELG / PEI / CAD复合物带负电;在酸性肿瘤组织中,屏蔽的PELG带正电并从PELG / PEI / CAD复合物中脱离。由此产生的带正电的PEI / CAD复合物被暴露并被胞吞。然后,CAD在内体和溶酶体的酸性细胞内环境中裂解,并转化回DOX。 PELG / PEI / CAD复合物的电荷反转通过在不同pH值下的Zeta电势分析进行验证。此外,DOX释放随pH值降低而增加。细胞摄取和共聚焦激光扫描显微镜分析表明,在pH 6.8时,PELG / PEI / CAD具有最高的内吞率,更多的DOX进入细胞核。更重要的是,该系统对癌细胞具有显着的细胞毒性。这些结果表明,pH敏感的电荷转换屏蔽与pH敏感的药物释放相结合是用于肿瘤治疗的潜在药物输送系统。

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