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首页> 外文期刊>Quimica nova >DFT STUDY ON THE MECHANISTIC, ENERGETIC AND STRUCTURAL ASPECTS OF ADSORPTION OF TIRAPAZAMINE ONTO PRISTINE AND FUNCTIONALIZED CARBON NANOTUBES
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DFT STUDY ON THE MECHANISTIC, ENERGETIC AND STRUCTURAL ASPECTS OF ADSORPTION OF TIRAPAZAMINE ONTO PRISTINE AND FUNCTIONALIZED CARBON NANOTUBES

机译:替拉帕明吸附到原始蛋白和功能性碳纳米管上的力学,能级和结构方面的DFT研究

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Using density functional theory, noncovalent interactions and two mechanisms of covalent functionalization of drug tirapazamine with pristine, COOH and COCl functionalized carbon nanotube (NT, NTCOOH and NTCOCl) have been investigated. Quantum molecular descriptors of noncovalent configurations were studied. It was specified that binding of drug tirapazamine with NTCOOH has more binding energy than NTCOCl and NT, so NTCOOH can act as a favorable system for tirapazamine drug delivery within biological and chemical systems (noncovalent). NTCOOH and NTCOCl can bond to the amino group of tirapazamine through OH (COOH mechanism) and Cl (COCl mechanism) groups, respectively. The activation parameters of two pathways were calculated and compared with each other. The activation parameters related to COOH mechanism are higher than those related to COCl mechanism and therefore COCl mechanism is suitable for covalent functionalization. These results could be generalized to other similar drugs.
机译:使用密度泛函理论,研究了药物替拉帕明与原始的非共价相互作用和共价官能化的两种机理:COOH和COCl官能化的碳纳米管(NT,NTCOOH和NTCOCl)。研究了非共价构型的量子分子描述符。已规定,药物替拉帕明与NTCOOH的结合具有比NTCOCl和NT更多的结合能,因此NTCOOH可以作为替拉帕明在生物和化学系统(非共价)内递送的有利系统。 NTCOOH和NTCOCl可以分别通过OH(COOH机理)和Cl(COCl机理)基团与替拉帕明的氨基键合。计算并比较了两种途径的激活参数。与COOH机制有关的激活参数高于与COCl机制有关的激活参数,因此COCl机制适合于共价官能化。这些结果可以推广到其他类似药物。

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