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首页> 外文期刊>Theranostics >Co-delivery of glycyrrhizin and doxorubicin by alginate nanogel particles attenuates the activation of macrophage and enhances the therapeutic efficacy for hepatocellular carcinoma
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Co-delivery of glycyrrhizin and doxorubicin by alginate nanogel particles attenuates the activation of macrophage and enhances the therapeutic efficacy for hepatocellular carcinoma

机译:通过藻酸盐纳米凝胶颗粒共同递送甘草蛋白和多柔比星颗粒衰减巨噬细胞的活化,提高肝细胞癌的治疗效果

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Nanocarrier drug delivery systems (NDDS) have been paid more attention over conventional drug delivery system for cancer therapy. However, the efficacy is hampered by the fast clearance of activated macrophage from the blood circulation system. In this study, glycyrrhizin (GL) was introduced into alginate (ALG) nanogel particles (NGPs) to construct multifunctional delivery vehicle to decrease the fast clearance of activated macrophage and enhance the anticancer efficacy with the combination therapy of GL and doxorubicin (DOX). Methods : We firstly synthesized the GL-ALG NGPs with intermolecular hydrogen bond and ionic bond as the multifunctional delivery vehicle. The immune response and phagocytosis of macrophage on GL-ALG NGPs were investigated on RAW 264.7 macrophages. The pharmacokinetic study of DOX loaded in GL-ALG NGPs was performed in rats. The active targeting effects of GL-ALG NGPs were further studied on hepatocellular carcinoma cell (HepG2) and H22 tumor-bearing mice. Moreover, the anticancer molecular mechanism of DOX/GL-ALG NGPs was investigated on HepG2 cells in vitro and tumor-bearing mice in vivo . Results : GL-ALG NGPs could not only avoid triggering the immuno-inflammatory responses of macrophages but also decreasing the phagocytosis of macrophage. The bioavailability of DOX was increased about 13.2 times by DOX/GL-ALG NGPs than free DOX in blood. The mice with normal immune functions used in constructing the tumor-bearing mice instead of the nude mouse also indicated the good biocompatibility of NGPs. GL-mediated ALG NGPs exhibited excellent hepatocellular carcinoma targeting effect in vitro and in vivo . The results suggested that the anticancer molecular mechanism of the combination therapy of glycyrrhizin and doxorubicin in ALG NGPs was performed via regulating apoptosis pathway of Bax/Bcl-2 ratio and caspase-3 activity, which was also verified in H22 tumor-bearing mice. Conclusion : DOX/GL-ALG NGPs could attenuate the activation of macrophage and enhance the therapeutic efficacy for hepatocellular carcinoma. Our results suggest that the combination therapy would provide a new strategy for liver cancer treatment.
机译:纳米载体药物递送系统(NDDS)已经更多地关注常规药物递送系统进行癌症治疗。然而,通过从血液循环系统的激活巨噬细胞的快速间隙阻碍了功效。在本研究中,将甘草素(GL)引入藻酸盐(alg)纳米凝胶颗粒(NGP)中以构建多功能递送载体,以降低活化巨噬细胞的快速间隙,并增强与GL和多柔比星的联合治疗(DOX)的抗癌疗效。方法:我们首先用分子间氢键和离子键合成GL-alg NGP,作为多官能输送载体。 RAW 264.7巨噬细胞研究了GL-ALG NGPS对GL-ALG NGPS的免疫应答和吞噬作用。在大鼠中进行了GL-ALG NGP中的DOX的药代动力学研究。在肝细胞癌细胞(HepG2)和H22肿瘤携带的小鼠上进一步研究了GL-ALG NGP的活性靶向效果。此外,在体外体外和肿瘤携带的小鼠的HepG2细胞上研究了DOX / GL-ALG NGP的抗癌分子机制。结果:GL-ALG NGP不仅可以避免触发巨噬细胞的免疫炎症反应,还可以降低巨噬细胞的吞噬作用。 DOX的生物利用度比血液中的免费DOX增加了约13.2倍。具有正常免疫功能的小鼠用于构建携带肿瘤小鼠而不是裸鼠的核心小鼠也表明了NGPS的良好生物相容性。 GL介导的ALG NGP在体外和体内表现出优异的肝细胞癌靶向效果。结果表明,通过调节Bax / Bcl-2比和Caspase-3活性的凋亡途径进行甘草蛋白和多柔比星组合治疗糖尿杆菌和多柔比星的抗癌分子机制,在H22肿瘤患者中也验证了H22肿瘤小鼠的凋亡途径。结论:DOX / GL-ALG NGP可以衰减巨噬细胞的激活,提高肝细胞癌的治疗疗效。我们的研究结果表明,联合治疗将为肝癌治疗提供新的策略。

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