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首页> 外文期刊>Biomacromolecules >Triblock Copolymer Nanovesicles for pH-Responsive Targeted Delivery and Controlled Release of siRNA to Cancer Cells
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Triblock Copolymer Nanovesicles for pH-Responsive Targeted Delivery and Controlled Release of siRNA to Cancer Cells

机译:Triblock共聚物纳米囊泡,用于pH敏感的靶向递送和siRNA受控释放至癌细胞。

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New pH-responsive polymersomes for active anticancer oligonucleotide delivery were prepared from triblock copolymers. The delivery systems were formed by two terminal hydrophilic blocks, PEG and polyglycerolmethacrylate (poly-GMA), and a central weakly basic block, polyimidazole-hexyl methacrylate (poly-ImHeMA), which can complex with oligonucleotides and control vesicle formation/disassembly via pH variations. Targeted polymersomes were prepared by mixing folate-derivatized and underivatized copolymers. At pH 5, ds-DNA was found to complex with the pH-responsive copolymers at a NIP molar ratio above similar to 2:1 which assisted the encapsulation of ds-DNA in the polymersomes, while low association was observed at pH 7.4. Cytotoxicity studies performed on folate receptor overexpressing KB and B16-F10 cells and low folate receptor expressing MCF-7 cells showed high tolerance of the polymersomes at up to 3 mg/mL concentration. Studies performed with red blood cells showed that at pH 5.0 the polymersomes have endosomolytic properties. Cytofluorimetric studies showed a 5.5-fold higher uptake of ds-DNA loaded folate-functional polymersomes in KB cells compared to nontargeted polymersomes. In addition, ds-DNA was found to be localized both in the nucleus and in the cytosol. The incubation of luciferase transfected B16-F10 cells with targeted polymersomes loaded with luciferase and Hsp90 expression silencing siRNAs yielded 31 and 23% knockdown in target protein expression, respectively.
机译:由三嵌段共聚物制备了用于活性抗癌寡核苷酸递送的新的pH响应性聚合物囊泡。传递系统由两个末端亲水嵌段PEG和聚甲基丙烯酸甲基丙烯酸酯(poly-GMA)和一个中央弱碱性嵌段聚甲基咪唑-己基甲基丙烯酸酯(poly-ImHeMA)形成,可以与寡核苷酸复合并通过pH控制囊泡的形成/分解。变化。通过混合叶酸衍生化和未衍生化的共聚物来制备靶向的聚合物囊泡。在pH 5时,发现ds-DNA以高于约2:1的NIP摩尔比与pH响应共聚物络合,这有助于ds-DNA在聚合物囊泡中的包封,而在pH 7.4时观察到低缔合。对过表达叶酸受体的KB和B16-F10细胞和低叶酸受体表达的MCF-7细胞进行的细胞毒性研究显示,在高达3 mg / mL的浓度下,聚合物囊泡具有较高的耐受性。用红细胞进行的研究表明,在pH 5.0时,聚合物囊泡具有内溶酶特性。细胞荧光研究表明,与未靶向的聚合物囊泡相比,KB细胞中负载ds-DNA的叶酸官能聚合物囊泡的摄取高5.5倍。另外,发现ds-DNA位于细胞核和胞质溶胶中。将萤光素酶转染的B16-F10细胞与装有萤光素酶和Hsp90表达沉默siRNA的靶向多聚体一起孵育,可分别降低31%和23%的目标蛋白表达。

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