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Dual-pH-sensitivity and tumour targeting core–shell particles for intracellular drug delivery

机译:双重pH敏感性和靶向肿瘤的核-壳颗粒用于细胞内药物递送

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The principal problem in the area of drug delivery is achieving better selectivity and controllability. A new core–shell nanoparticle composite (denoted MSN@Tf@Polymer) with dual-pH-sensitivity has been prepared as a drug carrier for intracellular drug delivery and release. MSN@Tf@Polymer consists of mesoporous silica nanoparticles (MSN), green-transferrin (Tf) and diblock copolymer (poly-2-diisopropylamino ethylmethacrylate-b-methoxy-poly ethyleneglycol: mPEG45-PDPAn). The core–shell structure is self-assembled layer by layer. Results show that nearly 80% doxorubicin hydrochloride (DOX) loaded in MSN@Tf@Polymer could be released in 5 h at pH 5.0, which is an improvement from the results obtained at pH 6.5 and pH 7.4. MTT assay and fluorescence inversion microscope experiments indicate that MSN@Tf is successfully taken up by liver cancer cells (Huh7) without apparent cytotoxicity, and Tf has strong intensity of fluorescence for subcellular localization. Confocal laser scanning microscopy (CLSM) experiments indicate that MSN@Tf@Polymer is able to enter the lysosome of the tumor cells. Furthermore, cell apoptosis experiments prove that DOX loaded in MSN@Tf@Polymer has the best anti-tumor effect compared with free DOX and DOX in bare MSN. MSN@Tf@Polymer has high biocompatibility, enhanced drug loading, site-specific delivery and in situ stimulus release and will also hopefully be applied as an intracellular drug delivery system.
机译:药物输送领域的主要问题是实现更好的选择性和可控性。一种具有双重pH敏感性的新型核壳纳米粒子复合材料(表示为MSN @ Tf @ Polymer)已被制备为用于细胞内药物传递和释放的药物载体。 MSN @ Tf @ Polymer由介孔二氧化硅纳米粒子(MSN),绿色运铁蛋白(Tf)和二嵌段共聚物(聚-2-二异丙基氨基甲基丙烯酸甲酯- b -甲氧基-聚乙二醇:mPEG < sub> 45 -PDPA n )。核-壳结构是层层自组装的。结果表明,负载在MSN @ Tf @ Polymer中的盐酸阿霉素(DOX)接近80%可以在5小时内在pH 5.0下释放,这是在pH 6.5和pH 7.4下获得的结果的改进。 MTT法和荧光倒置显微镜实验表明,MSN @ Tf被肝癌细胞(Huh7)成功吸收,没有明显的细胞毒性,并且Tf具有较强的荧光强度用于亚细胞定位。共聚焦激光扫描显微镜(CLSM)实验表明,MSN @ Tf @ Polymer能够进入肿瘤细胞的溶酶体。此外,细胞凋亡实验证明,与裸MSN中的游离DOX和DOX相比,载于MSN @ Tf @ Polymer中的DOX具有最佳的抗肿瘤作用。 MSN @ Tf @ Polymer具有高度的生物相容性,增强的药物载量,特定部位的递送和原位刺激释放,也有望用作细胞内药物递送系统。

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