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首页> 外文期刊>Journal of biomedical nanotechnology >Multifunctional Hyaluronic Acid-Decorated Redox-Responsive Magnetic Complex Micelle for Targeted Drug Delivery with Enhanced Antitumor Efficiency and Anti-Cell-Migration Activity
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Multifunctional Hyaluronic Acid-Decorated Redox-Responsive Magnetic Complex Micelle for Targeted Drug Delivery with Enhanced Antitumor Efficiency and Anti-Cell-Migration Activity

机译:多功能透明质酸装饰氧化还原响应磁性复合胶束,用于靶向药物递送,抗肿瘤效率和抗细胞迁移活动增强

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摘要

A novel multifunctional hyaluronic acid-decorated redox-responsive magnetic complex micelle (HA/CSO-SS-Hex/Fe3O4/PTX) based on a reducible hexadecanol-modified chitosan oligosaccharide polymer micelle (CSO-SS-Hex) coated with hyaluronic acid (HA) and loaded with paclitaxel (PTX) Fe3O4 nanoparticles is developed. HA is coated onto the surface of micelles via electrostatic absorption and acts as a targeting ligand for CD44 over expression in many tumor cells. A CSO-SS-Hex polymer micelle was used for PTX incorporation and GSH-triggered intracellular release. The PTX in micelles was used to provide chemotherapy. Fe3O4 nanoparticles were used for magnetic targeting. The complex micelle showed enhanced antitumor efficiency and anti-cell-migration activity. The HA/CSO-SS-Hex/Fe3O4/PTX micelle was stable under physiological conditions, while it was sensitive to release the loaded drug in the presence of 10 mM glutathione (GSH). The complex micelle showed enhanced cellular uptake and fast drug release due to the combined effect of magnet targeting, CD44 receptor-mediated internalization and redox-response drug release in tumor cells. Cell viability tests revealed that HA/CSO-SS-Hex/Fe3O4/PTX micelle displayed enhanced cytotoxicity against A549, B16F10 and HepG2 cell lines compared to non-targeted formulations of PTX. An anti-cell migration assay was also performed. The result showed that although there was no significant difference in the anti-cell migration activities between the HA/CSO-SS-Hex/Fe3O4/PTX micelle and free PTX, the activities of HA/CSO-SS-Hex/Fe3O4/PTX were stronger than non-targeted CSO-SS-Hex/Fe3O4/PTX micelles. Thus, the novel HA/CSO-SS-Hex/Fe3O4/PTX micelle is highly effective for targeted drug delivery and might have potential implications for the chemotherapy of primary tumors and their metastases.
机译:一种新型多功能透明质酸装饰的氧化还原响应磁性复合胶束(HA / CSO-SS-HEX / FE3O4 / PTX),其基于涂覆有透明质酸的可降级的十六烷醇改性的壳聚糖寡糖寡糖(CSO-SS-HEX)(HA )开发出紫杉醇(PTX)Fe 3 O 4纳米颗粒。 Ha通过静电吸收涂覆在胶束表面上,并作为许多肿瘤细胞中表达的CD44的靶向配体。 CSO-SS-HEX聚合物胶束用于PTX掺入和GSH-触发的细胞内释放。胶束的PTX用于提供化疗。 Fe3O4纳米颗粒用于磁性靶向。复合胶束显示出增强的抗肿瘤效率和抗细胞迁移活动。 HA / CSO-SS-HEX / FE3O4 / PTX胶束在生理条件下稳定,而在10mM谷胱甘肽(GSH)存在下释放负载药物是敏感的。复合胶束由于磁体靶向,CD44受体介导的内化和氧化还原响应药物释放在肿瘤细胞中的综合作用而显示出增强的细胞摄取和快速药物释放。细胞活力测试显示,与非靶向PTX的非靶向配方相比,HA / CSO-SS-Hex / Fe3O4 / PTX胶束针对A549,B16F10和HepG2细胞系显示出增强的细胞毒性。还进行了抗细胞迁移测定。结果表明,HA / CSO-SS-HEX / FE3O4 / PTX胶束和游离PTX之间的抗细胞迁移活动没有显着差异,但是HA / CSO-SS-HEX / FE3O4 / PTX的活性比非靶向CSO-SS-HEX / FE3O4 / PTX胶束更强。因此,新型HA / CSO-SS-HEX / FE3O4 / PTX胶束对于靶向药物递送非常有效,并且可能对原发性肿瘤和转移的化疗产生潜在的影响。

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