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首页> 外文期刊>Bulletin of the American Physical Society >APS -Joint Fall 2017 Meeting of the Texas Section of the APS, Texas Section of the AAPT, and Zone 13 of the Society of Physics Students- Event - Multigene Delivery and Gene-selective Imaging with Single-walled Carbon Nanotubes
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APS -Joint Fall 2017 Meeting of the Texas Section of the APS, Texas Section of the AAPT, and Zone 13 of the Society of Physics Students- Event - Multigene Delivery and Gene-selective Imaging with Single-walled Carbon Nanotubes

机译:APS-APS得克萨斯分校,AAPT得克萨斯分校以及物理学生学会第13区联合2017年秋季会议-事件-单壁碳纳米管的多基因传递和基因选择性成像

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Single Wall Carbon Nanotubes (SWCNT) have a great potential in biological applications since they possess quasi-one-dimensional structure ading internalization and exhibit fluorescence in near-IR with reduced biological autofluorescence background. In this work, we use SWCNTs for extit{in-vitro} multi-drug delivery and imaging: each gene or drug is non-covalently bound to SWCNTs of a specific chirality and can be tracked and assessed separately. Single chirality SWCNTs are separated by a modified Aqueous Two-Phase Extraction (ATPE) method with a purity of up to 40{%} with only (1-5) {%} contributions from other chiralities. This allows observing microscopically the fluorescence mainly from the target chirality. Separation surfactants are removed by repeated centrifugal washing/ ablation procedure and replaced by siRNA. Finally, chirality-sorted SWCNTs are applied as multidrug delivery vehicles carrying non-covalently complexed siRNA gene therapeutics into liver cancer cells. Internalization of SWCNTs of each specific chirality is observed via near-IR hyperspectral fluorescence microscopy allowing to record wavelength-resolved images within emission bands of each individual chirality, and therefore assess each gene's delivery separately. The results of this work indicate that SWCNT can serve as efficient multidrug/gene delivery carriers for imaging and therapeutics mapping out internalization pathways and effects of each drug/gene separately.
机译:单壁碳纳米管(SWCNT)在生物应用中具有巨大潜力,因为它们具有准一维结构和内在化作用,并在近红外中显示出荧光,且生物自发荧光背景降低。在这项工作中,我们使用SWCNTs进行体外多药物递送和成像:每种基因或药物非共价结合至具有特定手性的SWCNTs,并且可以分别进行跟踪和评估。单手性SWCNT通过改进的水两相萃取(ATPE)方法分离,纯度高达40 {%},而其他手性仅贡献(1-5){%}。这允许从显微镜下观察主要来自目标手性的荧光。分离的表面活性剂通过重复的离心洗涤/消融程序除去,并替换为siRNA。最后,手性分类的SWCNTs被用作携带非共价复合siRNA基因治疗剂进入肝癌细胞的多药递送载体。通过近红外高光谱荧光显微镜观察到每个特定手性的SWCNT的内在化,从而可以记录每个手性的发射带内的波长分辨图像,从而分别评估每个基因的传递。这项工作的结果表明,SWCNT可以作为有效的多药/基因传递载体,用于成像和治疗,分别绘制出内在化途径和每种药物/基因的作用。

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