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Enhanced dispersibility and cellular transmembrane capability of single-wall carbon nanotubes by polycyclic organic compounds as chaperon

机译:增强可分散性和细胞跨膜着单壁球长大的碳纳米管的能力多环有机化合物作监护人陪同

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The common aggregation of single-wall carbon nanotube (SWCNT) in solution is the critical obstacle to elucidate their unique physico-chemical characteristics and biological properties. Therefore, it is very important to overcome this barrier through manipulation of the weak interaction of small molecules with nanotube surface limited interface. A highly dispersed SWCNT system was achieved by binding with polycyclic organic compounds (POCs) including rhodamine 123, ethidium bromide, fluorescein isothiocyanate and 1-pyrene butyric acid as chaperons, in cooperation with sodium dodecyl sulfate. POCs were believed to penetrate through the interstices of aggregated SWCNTs and bind with individual SWCNTs to form highly dispersed and stable SWCNT-POC-surfactant conjugates in both water and phosphate buffer-serum solution, confirmed by gel electrophoresis, transmission electron microscopy and atomic force microscopy. The possible binding interaction includes π-π stacking with side-wall, electrostatic interactions with defect sites and coating surfactants. Compared to pristine SWCNTs, individual SWCNT-POC conjugates had improved transmembrane passage ability through both endocytosis and diffusion pathways, validated by laser scanning confocal microscopy and micro-Raman mapping techniques. For the applications of SWCNTs in drug delivery, in vitro imaging and other research fields, this novel strategy could provide highly dispersed SWCNTs with better efficiency of drug loading and stability.
机译:着单壁球长大的共同聚合碳纳米管(SWCNT)在溶液中是至关重要的阐明其独特的障碍物理化学特性和生物属性。通过操纵克服这个障碍弱相互作用的小分子与纳米管表面有限的接口。SWCNT系统是通过绑定多环有机化合物(poc)包括溴化乙锭罗丹明123年,荧光素异硫氰酸酯和1-pyrene丁酸与钠十二烷基的说法,在合作硫酸。聚合SWCNTs和绑定的间隙与单个SWCNTs形成高度分散和稳定SWCNT-POC-surfactant轭合物水和磷酸buffer-serum解决方案,经凝胶电泳,传播电子显微镜和原子力显微镜。可能绑定包括π-π相互作用叠加与边墙,静电与缺陷的交互网站和涂层表面活性剂。个人SWCNT-POC配合改善跨膜通道通过能力内吞作用和扩散途径,验证通过激光扫描共焦显微镜和台映射技术。SWCNTs的应用在药物输送、体外成像和其他研究领域,这本小说策略可以提供高度分散SWCNTs有更好的药物加载和效率稳定。

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