首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Facile preparation of pH/reduction dual-responsive prodrug nanohydrogels for tumor-specific intracellular triggered release with enhanced anticancer efficiency
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Facile preparation of pH/reduction dual-responsive prodrug nanohydrogels for tumor-specific intracellular triggered release with enhanced anticancer efficiency

机译:PH /抑制双响应前药纳米水凝纳米水凝纳米氢镍的体积造成抗癌效率提高

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摘要

A facile approach has been developed to prepare novel biocompatible and biodegradable pH/reduction dual-responsive oxidized alginate-doxorubicin (mPEG-OAL-DOX/Cy) prodrug nanohydrogels for tumorspecific intracellular triggered release of anticancer drug doxorubicin (DOX), by conjugating DOX via acidlabile Schiff base linkage into the alginate nanohydrogels crosslinked with bioreducible disulfide bonds. The uniform prodrug nanohydrogels, which were prepared with the oxidized alginate (OAL) with an oxidation degree of 20.0%, PEGylation degree of 7.5 mol%, and crosslinking degree of 94.0%, showed a favorable DOX content (22.7 +/- 0.4%) with an average hydrodynamic diameter of about 170 nm. They released DOX rapidly in lower pH media mimicking the tumor microenvironment with a cumulative DOX release rate of 58.4% within 58 h with a sustained release behavior in long term release resulting from their nanohydrogel-micelle transformation, while the premature leakage under the simulated physiological conditions was only 15.5%. The MTT assay demonstrated that the mPEG-OAL-DOX/Cy prodrug nanohydrogels exhibited enhanced inhibitory efficiency against SKOV3 cells, in comparison with free DOX.
机译:已经开发了一种容易性的方法来制备新型生物相容性和可生物可降解的pH /抑制双响应氧化藻酸盐 - 多柔比星(MPEG-OAL-DOX / CY)前药纳米水凝胶,用于通过缀合DOX通孔缀合DOX Caterlabile Schiff基碱基与藻酸盐的纳米水凝胶与生物中的二硫键交联。用氧化藻酸盐(OAL)制备的均匀前药纳米水凝胶,其氧化程度为20.0%,聚乙二醇化度为7.5摩尔%,交联度为94.0%,显示出有利的DOX含量(22.7 +/- 0.4%)平均水动力直径为约170nm。它们在较低的pH介质中释放DOX,在肿瘤微环境中,在58小时内以58.4%的累积DOX释放速率在58.4%的情况下,由于其纳米水凝胶 - 胶束转化产生的长期释放,而在模拟生理条件下过早泄漏。只有15.5%。 MTT测定表明,与游离DOX相比,MPEG-OAL-DOX / CY前药纳米水凝胶纳米水凝胶对SKOV3细胞表现出增强的抑制效率。

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