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Not all protein-mediated single-wall carbon nanotube dispersions are equally bioactive

机译:并不是所有的碳protein-mediated着单壁球长大纳米乳液等生物活性

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摘要

Single-wall carbon nanotubes (SWCNTs) have been dispersed with proteins to increase biocompatibility and specificity, but examinations of dispersion parameters on functional cellular uptake are required for utilization of SWCNTs in biological applications. Here we correlate conditions of SWCNT dispersion with various proteins to uptake these SWCNTs in NIH-3T3 fibroblasts and J774A. 1 macrophage-like cells. We varied protein types (bovine serum albumin - BSA, lysozyme - LSZ, and γ-globulins - γG), protein : SWCNT ratio and sonication time. Each protein created stable, high yield (~25%) dispersions in water while preserving intrinsic SWCNT fluorescence, but SWCNT-LSZ flocculated in media and SWCNT-γG formed clusters in both water and media, drastically altering cellular internalization. Dispersion quality and yield improved with increased protein : SWCNT -without substantial effects from depletion attraction, even at 100 : 1 protein : SWCNT - and slightly increased internalized SWCNTs for both NIH-3T3 and J774A.1 cells. Longer sonication time (12 versus 2 h) improved the dispersion yield and quality but caused minor damage to SWCNTs and altered protein structure. Cell association of SWCNT-BSA was homogenous and unaltered by sonication time. Bulk assay showed that cell association of SWCNT-LSZ and SWCNT-γG was altered with 12 versus 2 h sonication, but imaging of individual cells showed that these differences are likely from precipitation of clusters of SWCNT LSZ and SWCNT-γG in media onto cells. Hence, the quality of SWCNT-protein dispersions in water does not necessarily correlate with bulk cellular uptake, and quantification at the level of individual cells is required to determine delivery efficacy.
机译:着单壁球长大的碳纳米管(SWCNTs)分散与蛋白增加生物相容性和特异性,但是考试的色散参数功能的细胞吸收所需利用SWCNTs在生物应用。在这里我们SWCNT色散条件相关联各种蛋白质吸收这些SWCNTsNIH-3T3成纤维细胞和J774A。细胞。γG)、蛋白质:SWCNT率和声波降解法。创建的每个蛋白稳定,高收益(~ 25%)分散在水中,同时保留内在SWCNT荧光,但SWCNT-LSZ凝聚媒体和SWCNT -γG水形成集群和媒体,彻底改变细胞内化。改善与提高蛋白质:SWCNT出行实质性影响损耗的吸引力,即使在100:1的蛋白质:SWCNT -和略增加内化NIH-3T3 SWCNTs和J774A。和2 h)色散产量和改善但造成轻微损失SWCNTs和质量改变蛋白质结构。SWCNT-BSA是同质的,一成不变的声波降解法。SWCNT-LSZ SWCNT协会-γG是改变12比2 h声波降解法,但成像单个细胞表明这些差异从集群的降水可能吗SWCNT LSZ和SWCNT -γG在媒体上细胞。因此,SWCNT-protein分散体系的质量在水里并不一定与批量有关细胞吸收,和量化水平单个细胞的要求确定交付功效。

著录项

  • 来源
    《Nanoscale》 |2012年第23期|7425-7434|共10页
  • 作者单位

    Department of Biomedical Engineering, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA 15213, USA.;

    Department of Materials Science & Engineering, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA 15213, USA.;

    Department of Chemical Engineering, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA 15213, USA;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Proteins; Single-Walled Nanotube; Sonication;

    机译:蛋白质;单壁纳米管;声波降解法;

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