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首页> 外文期刊>International Journal of Nanomedicine >pH-sensitive micelles self-assembled from polymer brush (PAE-g-cholesterol)-b-PEG-b-(PAE-g-cholesterol) for anticancer drug delivery and controlled release
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pH-sensitive micelles self-assembled from polymer brush (PAE-g-cholesterol)-b-PEG-b-(PAE-g-cholesterol) for anticancer drug delivery and controlled release

机译:从聚合物刷(PAE- g -胆固醇)- b -PEG- b -(PAE- g -胆固醇)用于抗癌药物的递送和控释

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A novel amphiphilic pH-sensitive triblock polymer brush (poly(β-amino esters)- g -cholesterol)- b -poly(ethylene glycol)- b -(poly(β-amino esters)- g -cholesterol) ((PAE- g -Chol)- b -PEG- b -(PAE- g -Chol)) was designed and synthesized successfully through a three-step reaction, and their self-assembled polymeric micelles were used as hydrophobic anticancer drug delivery carriers to realize effectively controlled release. The critical micelle concentrations were 6.8 μg/mL, 12.6 μg/mL, 17.4 μg/mL, and 26.6 μg/mL at pH values of 7.4, 6.5, 6.0, and 5.0, respectively. The trend of critical micelle concentrations indicated that the polymer had high stability that could prolong the circulation time in the body. The hydrodynamic diameter and zeta potential of the polymeric micelles were influenced significantly by the pH values. As pH decreased from 7.4 to 5.0, the particle size and zeta potential increased from 205.4 nm to 285.7 nm and from +12.7 mV to +47.0 mV, respectively. The p K b of the polymer was confirmed to be approximately 6.5 by the acid–base titration method. The results showed that the polymer had sharp pH-sensitivity because of the protonation of the amino groups, resulting in transformation of the PAE segment from hydrophobic to hydrophilic. Doxorubicin-loaded polymeric micelles were prepared with a high loading content (20%) and entrapment efficiency (60%) using the dialysis method. The in vitro results demonstrated that drug release rate and cumulative release were obviously dependent on pH values. Furthermore, the drug release mechanism was also controlled by the pH values. The polymer had barely any cytotoxicity, whereas the doxorubicin-loaded system showed high toxicity for HepG2 cells as free drugs. All the results proved that the pH-sensitive triblock polymer brush and its self-assembled micelle might be a potential delivery carrier for anticancer drugs with sustained release.
机译:一种新型的两亲pH敏感三嵌段聚合物刷(聚(β-氨基酯)-g-胆固醇)-b-聚(乙二醇)-b-(聚(β-氨基酯)-g-胆固醇)((PAE- g-Chol)-b -PEG- b-(PAE- g -Chol))的设计通过三步反应成功合成,其自组装的高分子胶束作为疏水性抗癌药物传递载体,实现了有效的控制。释放。在pH值为7.4、6.5、6.0和5.0时,临界胶束浓度分别为6.8μg/ mL,12.6μg/ mL,17.4μg/ mL和26.6μg/ mL。临界胶束浓度的趋势表明该聚合物具有很高的稳定性,可以延长体内的循环时间。 pH值显着影响聚合物胶束的流体动力学直径和Zeta电位。当pH从7.4降低到5.0时,粒径和Zeta电位分别从205.4 nm增加到285.7 nm,从+12.7 mV增加到+47.0 mV。酸碱滴定法证实聚合物的p K b 约为6.5。结果表明,由于氨基的质子化,该聚合物具有敏锐的pH敏感性,从而导致PAE链段从疏水性转变为亲水性。使用透析方法制备了负载量高(20%),包封率高(60%)的负载阿霉素的聚合物胶束。体外结果表明,药物释放速率和累积释放明显取决于pH值。此外,药物释放机理也由pH值控制。该聚合物几乎没有任何细胞毒性,而负载阿霉素的系统对作为游离药物的HepG2细胞显示出高毒性。所有结果证明,pH敏感的三嵌段聚合物刷及其自组装胶束可能是缓释抗癌药物的潜在载体。

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