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Theoretical study of amino derivatives and anticancer platinum drug grafted on various carbon nanostructures

机译:多种碳纳米结构上接枝的氨基衍生物和抗癌铂药物的理论研究

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摘要

Density functional theory calculations with van der Waals approximation have been conducted to analyze the functionalization of various carbon-based nanostructures (fullerene, metallic, and semi-conducting nanotubes) with amino derivative groups. The results obtained with azomethine, show the formation of a five membered ring on fullerenes, and on nanotubes consistent with experimental observations. The attachment of an azomethine plus subsequent drug like a Pt(IV) complex does not perturb the cycloaddition process. Moreover, all theoretical results show that the length of different amino derivatives with subsequent Pt(IV) complex does not affect the complexed therapeutic agent when it is attached onto these carbon-based nanostructures.
机译:已经进行了范德华近似的密度泛函理论计算,以分析具有氨基衍生物基团的各种碳基纳米结构(富勒烯,金属和半导体纳米管)的功能化。用偶氮甲碱获得的结果表明,在富勒烯和纳米管上形成了五元环,与实验观察结果一致。偶氮甲碱加后续药物(如Pt(IV)配合物)的连接不会干扰环加成过程。此外,所有理论结果均表明,不同的氨基衍生物及其后的Pt(IV)配合物的长度,当其附着在这些碳基纳米结构上时,不会影响配合的治疗剂。

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