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在高盐溶液中用生物相容的非离子聚合物制备不聚集的富勒烯水溶液。

Preparation of non-aggregating aqueous fullerenes in highly saline solutions with a biocompatible non-ionic polymer.

机构信息

Department of Civil and Environmental Engineering, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Nanotechnology. 2013 Oct 4;24(39):395602. doi: 10.1088/0957-4484/24/39/395602. Epub 2013 Sep 6.

Abstract

Size-tunable stable aqueous fullerenes were prepared with different concentrations of biocompatible block-copolymer pluronic (PA) F-127, ranging from 0.001% to 1% (w/v). Size uniformity increased with the increase in PA concentration, yielding optimum 58.8 ± 5.6 and 61.8 ± 5.6 nm nC₆₀s and nC₇₀s, respectively (0.10%w/v PA), as observed using a dynamic light scattering technique. Fullerene aqueous suspensions also manifested enhanced stability in saline solution, Dulbecco's modified Eagle medium (DMEM), and Roswell Park Memorial Institute (RPMI) culture medium. Transmission electron microscopy was performed to elaborate on the morphology and size specificity of fullerene clusters. Physicochemical characterizations of the suspended fullerenes were performed through UV-vis spectroscopy and electrophoretic mobility measurements. PA molecules showed size restriction by encasement, as observed via molecular dynamics simulations. Such solubilization with controllable size and non-aggregating behavior can facilitate application enhancement and mechanistic environmental and toxicological studies of size-specific fullerenes.

摘要

采用不同浓度的生物相容性嵌段共聚物泊洛沙姆(PA)F-127(质量分数为 0.001%~1%)制备了尺寸可调的稳定全氟碳水溶液。随着 PA 浓度的增加,尺寸均匀性增加,分别得到最佳的 58.8±5.6nm 和 61.8±5.6nm 的 nC₆₀s 和 nC₇₀s(0.10%w/v PA),这是通过动态光散射技术观察到的。富勒烯水悬浮液在盐溶液、杜氏改良伊格尔培养基(DMEM)和罗格斯大学纪念研究所(RPMI)培养基中也表现出增强的稳定性。透射电子显微镜用于详细阐述富勒烯簇的形态和尺寸特异性。通过紫外-可见光谱和电泳迁移率测量对悬浮富勒烯进行了物理化学特性表征。通过分子动力学模拟观察到 PA 分子通过包裹表现出尺寸限制。这种具有可控尺寸和非聚集行为的增溶作用可以促进特定尺寸富勒烯的应用增强和机制环境与毒理学研究。

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