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Self-Assembled Supramolecular Ribbon-Like Structures Complexed to Single Walled Carbon Nanotubes as Possible Anticancer Drug Delivery Systems

机译:作为可能的抗癌药物递送系统复合到单壁碳纳米管的自组装的超分子带状结构

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摘要

Designing an effective targeted anticancer drug delivery method is still a big challenge, since chemotherapeutics often cause a variety of undesirable side effects affecting normal tissues. This work presents the research on a novel system consisting of single walled carbon nanotubes (SWNT), dispersed with Congo Red (CR), a compound that forms self-assembled ribbon-like structures (SRLS) and anticancer drug doxorubicin (DOX). SWNT provide a large surface for binding of planar aromatic compounds, including drugs, while CR supramolecular ribbon-like assemblies can be intercalated by drugs, like anthracycline rings containing DOX. The mechanism of interactions in SWNT−CR−DOX triple system was proposed based on electrophoretic, spectral, Dynamic Light Scattering and scanning electron microscopy analyzes. The profile of drug release from the investigated system was evaluated using dialysis and Differential Scanning Calorimetry. The results indicate that ribbon-like supramolecular structures of CR bind to SWNT surface forming SWNT−CR complexes which finally bind DOX. The high amount of nanotube-bound CR greatly increases the capacity of the carrier for the drug. The high capacity for drug binding and possible control of its release (through pH changes) in the analyzed system may result in prolonged and localized drug action. The proposed SWNT−CR−DOX triple system meets the basic criteria that justifies its further research as a potential drug carrier.
机译:设计有效的靶向抗癌药物递送方法仍然是一个很大的挑战,因为化学治疗剂经常导致影响正常组织的各种不期望的副作用。这项工作介绍了由单壁碳纳米管(SWNT)组成的新型系统的研究,分散在刚果红色(Cr)中,该化合物形成自组装的带状结构(SRLS)和抗癌药物多柔比星(DOX)。 SWNT提供了一个大表面,用于平面芳族化合物,包括药物,而CR超分子带状的组件可以通过药物插入,如含有DOX的蒽环旋转环。基于电泳,光谱,动态光散射和扫描电子显微镜分析,提出了SWNT-CR-DOX三重系统的相互作用机理。使用透析和差示扫描量热法评估来自研究系统的药物释放的轮廓。结果表明CR的带状超分子结构与最终结合DOX的SWNT-CR复合物结合SWNT表面。大量的纳米管结合的Cr大大增加了药物的载体的容量。在分析的系统中,在分析的系统中对药物结合的高容量和可能的释放(通过pH变化)可能导致延长和局部的药物作用。提出的SWNT-CR-DOX三重系统符合基本标准,使其进一步研究成为潜在的药物载体。

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