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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >~(99)Tc NMR as a promising technique for structural investigation of biomolecules: theoretical studies on the solvent and thermal effects of phenylbenzothiazole complex
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~(99)Tc NMR as a promising technique for structural investigation of biomolecules: theoretical studies on the solvent and thermal effects of phenylbenzothiazole complex

机译:〜(99)Tc NMR作为一种用于生物分子结构研究的有前途的技术:苯基苯并噻唑配合物的溶剂和热效应的理论研究

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The phenylbenzothiazole compounds show antitumor properties and are highly selective. In this paper, the ~(99)Tc chemical shifts based on the (~(99m)Tc)(CO)_3(NNO) complex conjugated to the antitumor agent 2-(4′-aminophenyl)benzothiazole are reported. Thermal and solvent effects were studied computationally by quantum-chemical methods, using the density functional theory (DFT) (DFT level BPW91/aug-cc-pVTZ for the Tc and BPW91/IGLO-II for the other atoms) to compute the NMR parameters for the complex. We have calculated the ~(99)Tc NMR chemical shifts of the complex in gas phase and solution using different solvation models (polarizable continuum model and explicit solvation). To evaluate the thermal effect, molecular dynamics simulations were carried, using the atom-centered density matrix propagation method at the DFT level (BP86/ LanL2dz). The results highlight that the ~(99)Tc NMR spectroscopy can be a promising technique for structural investigation of biomolecules, at the molecular level, in different environments.
机译:苯基苯并噻唑化合物显示出抗肿瘤特性,并且具有很高的选择性。本文报道了基于(〜(99m)Tc)(CO)_3(NNO)络合物与抗肿瘤药2-(4'-氨基苯基)苯并噻唑共轭的〜(99)Tc化学位移。使用密度泛函理论(DFT)(对于Tc为DFT级BPW91 / aug-cc-pVTZ,对于其他原子为BPW91 / IGLO-II)通过量子化学方法计算研究了热和溶剂效应。对于复杂。我们已经使用不同的溶剂化模型(可极化的连续谱模型和显式溶剂化)计算了气相和溶液中配合物的〜(99)Tc NMR化学位移。为了评估热效应,使用原子中心密度矩阵在DFT级别(BP86 / LanL2dz)传播方法进行了分子动力学模拟。结果表明,〜(99)Tc NMR光谱技术可能是在不同环境中从分子水平对生物分子进行结构研究的有前途的技术。

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