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首页> 外文期刊>Macromolecules >Highly Efficient and Versatile Formation of Biocompatible Star Polymers in Pure Water and Their Stimuli-Responsive Self-Assembly
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Highly Efficient and Versatile Formation of Biocompatible Star Polymers in Pure Water and Their Stimuli-Responsive Self-Assembly

机译:在纯水中高效高效地形成生物相容性星形聚合物及其刺激反应性自组装

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This study demonstrates the rapid and efficient formation of functional core cross-linked star polymers via copper-mediated reversible-deactivation radical polymerization (RDRP) in pure water using fully soluble monomers and cross-linkers. This high throughput arm-first methodology allows the generation of complex nanoarchitectures with tailored core, shell, or periphery- functionalities and is potentially well-suited for biomedical applications given that the macromolecular synthesis is performed entirely in water. To exemplify this approach, different homo- and miktoarm star polymers composed of either poly(N-isopropylacrylamide) (PNIPAM), poly(2-hydroxyethyl acrylate) (PHEA), and poly(ethylene glycol) (PEG) as the polymeric arms are formed. The star products are generated in high yield (8896%) in one-pot and require short reaction times (13 h) and minimal purification steps (dialysis and lyophilization). In addition, the thermal responsivity of PNIPAM-based miktoarm star polymers leading to reversible supramolecular self-assembly is confirmed by DLS and 2D-NOESY NMR analysis. Furthermore, cytotoxicity studies using human embryonic kidney (HEK239T) cells as the model mammalian cells revealed that the star polymers are nontoxic even up to high polymer concentrations (2 mg mL(1)). The simplistic product formation and isolation, combined with the use of water as the polymerization medium, mean that this procedure is highly attractive as a low-cost pathway toward functional, biocompatible organic nanoparticles for commercial applications.
机译:这项研究表明,在纯水中使用完全可溶的单体和交联剂,可通过铜介导的可逆失活自由基聚合(RDRP)快速有效地形成功能性核交联的星形聚合物。这种高通量的“臂先”方法可以生成具有定制核,壳或外围功能的复杂纳米结构,并且由于大分子合成是完全在水中进行的,因此有可能非常适合生物医学应用。为了举例说明这种方法,由聚(N-异丙基丙烯酰胺)(PNIPAM),聚(丙烯酸2-羟乙基酯)(PHEA)和聚(乙二醇)(PEG)组成的不同均聚物和米克星形聚合物是聚合物臂形成。一锅即可高产率(8896%)生成星形产物,所需的反应时间短(13 h),纯化步骤最少(透析和冻干)。此外,DLS和2D-NOESY NMR分析证实了基于PNIPAM的miktoarm星型聚合物导致可逆的超分子自组装的热响应性。此外,使用人胚肾(HEK239T)细胞作为模型哺乳动物细胞的细胞毒性研究表明,即使在高聚合物浓度(2 mg mL(1))时,星形聚合物也无毒。简单的产物形成和分离,再加上水作为聚合介质的使用,意味着该方法作为面向工业应用的功能性,生物相容性有机纳米颗粒的低成本途径,具有很高的吸引力。

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