首页> 美国卫生研究院文献>International Journal of Nanomedicine >A multifunctional supramolecular vesicle based on complex of cystamine dihydrochloride capped pillar5arene and galactose derivative for targeted drug delivery
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A multifunctional supramolecular vesicle based on complex of cystamine dihydrochloride capped pillar5arene and galactose derivative for targeted drug delivery

机译:基于巯基乙二胺盐酸盐柱5芳烃和半乳糖衍生物的复合物的多功能超分子囊泡用于靶向药物递送

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摘要

>Background: Supramolecular vesicles are a novel class of nanocarriers that have great potential in biomedicine.>Methods: A multifunctional supramolecular vesicle (CAAP5G) based on the complex of CAAP5 and galactose derivative (G) assembled via host-guest interaction was constructed.>Results: Using Human embryonic kidney T (293T) cells as experimental models, the cytotoxic effects of CAAP5G was investigated to 0–50 µmol/L for 24 h. Notably, the CAAP5G vesicles revealed low-toxicity to 293T cells, it was critical to designing drug nano-carriers. Simultaneously, we have evaluated doxorubicin hydrochloride (DOX)-loaded CAAP5G vesicles anticancer efficiency, where DOX-loaded CAAP5G vesicles and free DOX incubated with Human hepatocellular carcinoma cancer cell (HpeG2 cells) and 293T cells for 24 h, 48 h, 72 h. It turned out that CAAP5G vesicles encapsulated anticancer drug (DOX) could decrease DOX side-effect on 293T cells and increase DOX anticancer efficiency. More importantly, the cysteamine as an adjuvant chemotherapy drug was released from CAAP5G vesicles in HepG2 cells where a higher GSH concentration exists. The adjuvant chemotherapy efficiency was evaluated, where free DOX and DOX-loaded CAAP5G vesicles incubated with DOX-resistance HepG2 cells (HepG2-ADR cells) for 24, 48, 72 h, respectively.>Conclusion: The results revealed that the DOX encapsulated by CAAP5G vesicles could enhance the cytotoxicity of DOX and provide insights for designing advanced nano-carriers toward adjuvant chemotherapies.
机译:>背景:超分子囊泡是一类在生物医学中具有巨大潜力的新型纳米载体。>方法:基于CAAP5和半乳糖衍生物(CAAP5)的复合物的多功能超分子囊泡(CAAP5G)。 >结果:以人胚胎肾T(293T)细胞为实验模型,研究了CAAP5G在0–50 µmol / L的作用下24 h的细胞毒性作用。 。值得注意的是,CAAP5G囊泡对293T细胞显示出低毒性,这对设计药物纳米载体至关重要。同时,我们评估了负载阿霉素的盐酸CAAP5G囊泡的抗癌效率,其中负载DOX的CAAP5G囊泡和游离的DOX与人肝细胞癌细胞(HpeG2细胞)和293T细胞孵育24 h,48 h,72 h。事实证明,CAAP5G囊泡封装的抗癌药(DOX)可以降低DOX对293T细胞的副作用,并提高DOX的抗癌效率。更重要的是,半胱胺作为辅助化疗药物从存在较高GSH浓度的HepG2细胞中的CAAP5G囊泡中释放出来。评估了辅助化疗的效率,将游离DOX和负载DOX的CAAP5G囊泡分别与抗DOX的HepG2细胞(HepG2-ADR细胞)分别孵育24、48、72 h。>结论:揭示了CAAP5G囊泡封装的DOX可以增强DOX的细胞毒性,并为设计用于辅助化学疗法的先进纳米载体提供了见识。

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