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首页> 外文期刊>Macromolecular Research >Block Copolymer-Templated Mineralization for pH-Responsive Robust Nanocarriers of 5-Fiuorouracil
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Block Copolymer-Templated Mineralization for pH-Responsive Robust Nanocarriers of 5-Fiuorouracil

机译:5-氟尿嘧啶对pH敏感的坚固纳米载体的嵌段共聚物模板矿化

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We describe a novel synthetic method to prepare calcium carbonate (CaCO3)-mineralized nanoparticles for the intracellular delivery of an anticancer drug, 5-fluorouracil (5-FU). The 5-FU-loaded mineralized nanoparticles (FU-CaCO3-MNPs) were prepared by block copolymer (poly(ethylene glycol)-b-poly(L-aspartic acid) (PEG-PAsp))-templated mineralization in the presence of calcium cations (Ca~(2+)), carbonate anions (CO3~(2-)), and negatively charged 5-FU. The mineralization produced hybrid nanoparticles consisting of 5-FU-loaded CaCO3 cores and PEG shells. The mineralized CaCO3 cores of the nanoparticles could stably hold loaded 5-FU by maintaining the structural robustness, and the outer corona of PEG provided colloidal stability to the nanoparticles in serum solutions. The 5-FU release from the FU-CaCO3-MNPs at physiological pH (pH 7.4) was efficiently inhibited, whereas at an endosomal pH (pH 5.0), the 5-FU release was facilitated. Fluorescence microscopic analysis showed that FU-CaCO3-MNPs were taken up by the MCF-7 breast cancer cells, and transferred into acidic endosomes to dissolve the CaCO3 core. Finally, the 5-FU release was facilitated to inhibit the proliferation of cancer cells. These mineralized hybrid nanoparticles may serve as a useful candidate for enhanced intracellular delivery of many ionic anticancer drugs.
机译:我们描述了一种新型的合成方法,以制备碳酸钙(CaCO3)矿化的纳米颗粒,用于细胞内递送抗癌药物5-氟尿嘧啶(5-FU)。在钙存在下,通过嵌段共聚物(聚(乙二醇)-b-聚(L-天冬氨酸)(PEG-PAsp))-模板化的矿化作用制备了负载5-FU的矿化纳米颗粒(FU-CaCO3-MNP)。阳离子(Ca〜(2+)),碳酸根阴离子(CO3〜(2-))和带负电荷的5-FU。矿化作用产生了杂化纳米颗粒,该杂化纳米颗粒由5-FU负载的CaCO3核和PEG壳组成。纳米颗粒的矿化CaCO3核可通过保持结构稳健性来稳定地保持负载的5-FU,PEG的外部电晕为血清溶液中的纳米颗粒提供了胶体稳定性。在生理pH(pH 7.4)下从FU-CaCO3-MNPs释放5-FU受到有效抑制,而在内体pH(pH 5.0)下5-FU的释放得到促进。荧光显微镜分析表明,FU-CaCO3-MNP被MCF-7乳腺癌细胞吸收,并转移到酸性内体中以溶解CaCO3核心。最后,促进5-FU的释放以抑制癌细胞的增殖。这些矿化的杂化纳米颗粒可以用作增强许多离子型抗癌药物的细胞内递送的有用候选物。

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