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首页> 外文期刊>Biomacromolecules >Comb-like Amphophilic Copolymers Bearing Acetal-Functionalized Backbones with the Ability of Acid-Triggered Hydrophobic-to-Hydrophilic Transition as Effective Nanocarriers for Intracellular Release of Curcumin
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Comb-like Amphophilic Copolymers Bearing Acetal-Functionalized Backbones with the Ability of Acid-Triggered Hydrophobic-to-Hydrophilic Transition as Effective Nanocarriers for Intracellular Release of Curcumin

机译:带有缩醛官能团的梳状两亲共聚物,具有酸引发的疏水性至亲水性转变,是姜黄素在细胞内释放的有效纳米载体。

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The pH-responsive micelles have enormous potential as nanosized drug carriers for cancer therapy due to their physicochemical changes in response to the tumor intracellular acidic microenvironment. Herein, a series of comb-like amphophilic copolymers bearing acetal-function-alized backbone were developed based on poly[(2,4,6-trimethoxybenzylidene-l,l,l-tris(hydroxymethyl) ethane meth-acrylate-co-poly(ethylene glycol) methyl ether methacrylate] [P(TTMA-co-mPEGMA)] as effective nanocarriers for intracellular curcumin (CUR) release. P(TTMA-co-mPEGMA) copolymers with different hydrophobic-hydrophilic ratios were prepared by one-step reversible addition fragmentation chain transfer (RAFT) copolymerization of TTMA and mPEGMA Their molecular structures and chemical compositions were confirmed by 'H NMR, Fourier transform infrared spectroscopy (FT-IR) and gel permeation chromatography (GPC). P(TTMA-co-mPEGMA) copolymers could self-assemble into nanosized micelles in aqueous solution and displayed low critical micelle concentration (CMC). All P(TTMA-co-mPEGMA) micelles displayed excellent drug loading capacity, due to the strong n-n conjugate action and hydrophobic interaction between the PTTMA and CUR. Moreover, the hydrophobic PTTMA chain could be selectively hydrolyzed into a hydrophilic backbone in the mildly acidic environment, leading to significant swelling and final disassembly of the micelles. These morphological changes of P(TTMA-co-mPEGMA) micelles with time at pH 5.0 were determined by DLS and TEM. The in vitro CUR release from the micelles exhibited a pH-dependent behavior. The release rate of CUR was significantly accelerated at mildly acidic pH of 4.0 and 5.0 compared to that at pH 7.4. Toxicity test revealed that the P(TTMA-co-mPEGMA) copolymers exhibited low cytotoxicity, whereas the CUR-loaded micelles maintained high cytotoxicity for HepG-2 and EC-109 cells. The results indicated that the novel P(TTMA-co-mPEGMA) micelles with low CMC, small and tunable sizes, high drug loading, pH-responsive drug release behavior, and good biocompatibility may have potential as hydrophobic drug delivery nanocarriers for cancer therapy with intelligent delivery.
机译:pH响应胶束由于响应肿瘤细胞内酸性微环境而发生的物理化学变化,因此具有作为纳米药物载体用于癌症治疗的巨大潜力。在此,基于聚[(2,4,6-三甲氧基亚苄基-1,1,1-三(羟甲基)乙烷甲基丙烯酸甲酯-共聚]共聚物,开发了一系列带有缩醛官能化骨架的梳状两亲共聚物。 (乙二醇)甲基丙烯酸甲酯甲基丙烯酸酯[P(TTMA-co-mPEGMA)]作为细胞内姜黄素(CUR)释放的有效纳米载体,一步法制备了不同疏水-亲水比例的P(TTMA-co-mPEGMA)共聚物TTMA和mPEGMA的可逆加成断裂链转移(RAFT)共聚通过1 H NMR,傅立叶变换红外光谱(FT-IR)和凝胶渗透色谱(GPC)确认了它们的分子结构和化学组成。 )共聚物可以在水溶液中自组装成纳米胶束并显示出较低的临界胶束浓度(CMC)。由于P的强nn共轭作用和它们之间的疏水相互作用,所有P(TTMA-co-mPEGMA)胶束均具有出色的载药量。 PTTMA和CUR。此外,在弱酸性环境中,疏水性PTTMA链可选择性水解为亲水性主链,导致胶束显着溶胀和最终分解。通过DLS和TEM测定P(TTMA-co-mPEGMA)胶束随时间在pH 5.0下的这些形态变化。从胶束的体外CUR释放表现出pH依赖性行为。与pH 7.4相比,在4.0和5.0的弱酸性pH下,CUR的释放速率明显加快。毒性测试表明,P(TTMA-co-mPEGMA)共聚物显示出低细胞毒性,而CUR负载的胶束对HepG-2和EC-109细胞保持了高细胞毒性。结果表明,新型P(TTMA-co-mPEGMA)胶束具有低CMC,小且可调的尺寸,高载药量,pH响应药物释放行为和良好的生物相容性,有望作为疏水性药物输送纳米载体用于癌症治疗。智能交付。

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