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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Preparation of degradable magnetic temperature- and redox-responsive polymeric/Fe3O4 nanocomposite nanogels in inverse miniemulsions for loading and release of 5-fluorouracil
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Preparation of degradable magnetic temperature- and redox-responsive polymeric/Fe3O4 nanocomposite nanogels in inverse miniemulsions for loading and release of 5-fluorouracil

机译:逆型乳液中可降解磁温和氧化还原响应聚合物/ Fe3O4纳米复合纳米凝胶的制备,用于释放5氟尿嘧啶

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摘要

This work reports the synthesis of novel degradable magnetic temperature- and redox-responsive polymer/Fe3O4 nanocomposite nanogels (NCGs) through inverse miniemulsion polymerization and their potential application as nanocarriers for controlled drug delivery. Surface of Fe3O4 magnetic nanoparticles (MNPs) were vinyl-modified with 2-isocyanatoethyl methacrylate. Poly(N-vinylcaprolactam) (PNVCL)/Fe3O4 NCGs were prepared via inverse miniemulsion polymerization by using a disulfide-containing cross-linker. The Fe3O4 MNPs were chemically attached to the polymer matrix of NCGs, offering a good structural integrity of NCGs in aqueous systems. The PNVCL/Fe3O4 NCGs not only inherited the good superparamagnetism of Fe3O4 MNPs, but also displayed a reversible temperature-responsiveness as well as marked redox-responsiveness. The release behavior of a model anticancer drug 5-fluorouracil from the PNVCL/Fe3O4 NCGs could be conveniently tuned by the external temperature, redox condition of media, or their combination. The prepared PNVCL/Fe3O4 NCGs displayed a low cytotoxicity, holding a great potential in functioning as magnetic guiding nanocarriers for controlled drug delivery.
机译:该工作通过反相小乳液聚合及其作为用于受控药物递送的纳米载体的缺点,将新型可降解磁温和氧化还原聚合物/ Fe3O4纳米复合纳米凝胶(NCGS)的合成及其潜在应用。 Fe3O4磁性纳米颗粒(MNP)的表面是用2-异氰酸酯甲基丙烯酸酯的乙烯基改性。通过使用含二硫化硫的交联剂,通过反相乳液聚合制备聚(N-乙烯基己内酰胺)(PNVCL)/ Fe 3 O 4 NCG。将Fe 3 O 4 MNP化学附着在NC​​G的聚合物基质上,在水性体系中提供NCG的良好结构完整性。 PNVCL / FE3O4 NCG不仅遗传了FE3O4 MNP的良好超级参数,而且还展示了可逆的温度响应性以及标记的氧化还原响应性。模型抗癌药物5-氟尿嘧啶来自PNVCL / Fe3O4 NCG的释放行为可以通过外部温度,培养基的氧化还原条件或其组合方便地调整。制备的PNVCL / Fe 3 O 4 NCG显示出低细胞毒性,其具有作为受控药物递送的磁引导纳米载体的功能较大。

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