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首页> 外文期刊>ACS applied materials & interfaces >Injectable Thermoresponsive Hydrogel Formed by Alginate-g-Poly(N-isopropylacrylamide) That Releases Doxorubicin-Encapsulated Micelles as a Smart Drug Delivery System
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Injectable Thermoresponsive Hydrogel Formed by Alginate-g-Poly(N-isopropylacrylamide) That Releases Doxorubicin-Encapsulated Micelles as a Smart Drug Delivery System

机译:通过藻酸盐-G-聚(N-异丙基丙烯酰胺)形成的可注射热响应水凝胶,其释放多柔比蛋白包封的胶束作为智能药物递送系统

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In this work, we have synthesized a thermoresponsive copolymer, alginate-g-poly(N-isopropylacrylamide) (alginate-g-PNIPAAm) by conjugating PNIPAAm to alginate, where PNIPAAm with different molecular weights and narrow molecular weight distribution was synthesized by atomic transfer radical polymerization. The copolymer dissolved in water or phosphate-buffered saline buffer solution at room temperature and formed self-assembled micelles with low critical micellization concentrations when the temperature increased to above their critical micellization temperatures. At higher concentration, that is, 7.4 wt % in water, the copolymer formed solutions at 25 degrees C and turned into thermosensitive hydrogels when temperature increased to the body temperature (37 degrees C). Herein, we hypothesized that the thermoresponsive hydrogels could produce self-assembled micelles with the dissolution of the alginate-g-PNIPAAm hydrogels in a biological fluid or drug release medium. If the drug was hydrophobic, the hydrogel eventually could release and produce drug-encapsulated micelles. In our experiments, we loaded the anticancer drug doxorubicin (DOX) into the alginate-g-PNIPAAm hydrogels and demonstrated that the hydrogels released DOX-encapsulated micelles in a sustained manner. The slowly released DOX-loaded micelles enhanced the cellular uptake of DOX in multidrug resistant AT3B-1 cells, showing the effect of overcoming the drug resistance and achieving better efficiency for killing the cancer cells. Therefore, the injectable thermoresponsive hydrogels formed by alginate-g-PNIPAAm and loaded with DOX turned into a smart drug delivery system, releasing DOX-encapsulated micelles in a sustained manner, showing great potential for overcoming the drug resistance in cancer therapy.
机译:在这项工作中,我们通过缀合泊匹普仑藻酸盐合成热响应共聚物,藻酸盐-G-聚(N-异丙基丙酰胺)(藻酸盐-G-PNIPAAM),其中通过原子转移合成了具有不同分子量和窄分子量分布的PNIPAAM自由基聚合。在室温下溶解在水或磷酸盐缓冲的盐水缓冲液中,当温度增加到其临界胶束化温度高于它们的临界胶束化温度高于临界胶束化浓度,形成自组装胶束。在较高的浓度下,即水中的7.4wt%,共聚物在25℃下形成溶液,当温度增加到体温(37℃)时转化为热敏水凝胶。在此,我们假设热响应水凝胶可以通过在生物流体或药物释放介质中溶解藻酸盐-G-PNIPAAM水凝胶的自组装胶束。如果药物是疏水的,则水凝胶最终可以释放并产生药物包封的胶束。在我们的实验中,我们将抗癌药物Doxorubicin(DOX)加入到藻酸盐-G-PNIPAAM水凝胶中,并证明了水凝胶以持续的方式释放了DOX封装的胶束。慢慢释放的DOX加载的胶束增强了多药物AT3B-1细胞中DOX的蜂窝摄取,显示出克服耐药性并实现抗癌细胞的更好效率的效果。因此,通过藻酸盐-G-PNIPAAM形成并装载DOX的可注射热反应水凝胶变成智能药物输送系统,以持续的方式释放DOX封装的胶束,显示出克服癌症治疗中耐药性的巨大潜力。

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