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Design of Core-Shell-Type Nanoparticles Carrying Stable Radicals in the Core

机译:核心中带有稳定自由基的核-壳型纳米粒子的设计

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Utilizing the self-assembled core-shell-type polymeric micelle technique,high-performance nanoparticles possessing stable radicals in the core and reactive groups on the periphery were prepared.The anionic ring-opening polymerization of ethylene oxide(EO)was carried out using potassium 3,3-diethoxypropanolate as an initiator,followed by mesylation with methanesulfonyl chloride to obtain acetal-poly(ethylene glycol)-methanesulfonate(acetal-PEG-Ms;1).Compound 1 was reacted with potassium O-ethyldithiocarbonate,followed by treatment with n-propylamine to obtain heterobifunctional PEG derivatives containing both sulfanyl and acetal terminal groups(acetal-PEG-SH)(2)in a highly selective and quantitative manner.Poly(ethylene glycol)-block-poly(chloromethylstyrene)(acetal-PEG-b-PCMS)(3)was synthesized by the free-radical telomerization of chloromethylstyrene(CMS)using 2 as a telogen.The chloromethyl groups in the PCMS segment of the block copolymer(3)were quantitatively converted to 2,2,6,6-tetramethylpiperidinyloxys(TEMPOs)via the amination of 3 with 4-amino-TEMPO to obtain acetal-PEG-b-PCMS containing TEMPO moieties(4).The obtained 4 formed core-shell-type nanoparticles in aqueous media when subjected to the dialysis method:the cumulant average diameter of the nanoparticles was about 40 nm,and the nanoparticles emitted intense electron paramagnetic resonance(EPR)signals.The TEMPO radicals in the core of the nanoparticles showed reduction resistance even in the presence of 3.5 mM ascorbic acid.This means that these nanoparticles are anticipated as high-performance bionanoparticles that can be used in vivo.
机译:利用自组装核-壳型高分子胶束技术,制备了具有稳定的自由基基团和周围的反应性基团的高性能纳米粒子。利用钾对环氧乙烷(EO)进行阴离子开环聚合3,3-二乙氧基丙醇酸酯为引发剂,然后与甲磺酰氯磺化,制得乙缩醛-聚(乙二醇)-甲磺酸酯(缩醛-PEG-Ms; 1)。化合物1与O-乙基二硫代碳酸钾反应,然后经用正丙胺以高选择性和定量的方式获得同时含有硫烷基和乙缩醛端基的杂双功能PEG衍生物(缩醛-PEG-SH)(2)。-聚(乙二醇)-嵌段-聚(氯甲基苯乙烯)(缩醛-PEG- b-PCMS)(3)是通过氯代甲基苯乙烯(CMS)的自由基端聚反应,以2为端基来合成的。嵌段共聚物(3)的PCMS链段中的氯甲基被定量转化为2,2,6, 6吨通过用4-氨基-TEMPO胺化3生成四甲基乙哌啶基氧基(TEMPOs),得到含TEMPO部分的缩醛-PEG-b-PCMS(4),通过渗析法在水性介质中获得4个形成核-壳型纳米颗粒。 :纳米粒子的累积平均直径约为40 nm,并且纳米粒子发出强烈的电子顺磁共振(EPR)信号。即使在存在3.5 mM抗坏血酸的情况下,纳米粒子核心中的TEMPO自由基也显示出抗还原性。这些纳米粒子有望作为可在体内使用的高性能生物纳米粒子。

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