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Conformational and thermodynamic analysis of the COXIB scaffold using quantum chemical calculations

机译:使用量子化学计算对COXIB支架进行构象和热力学分析

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Selective cyclo-oxygenase-2 inhibitors (COXIBs) are prominent members of the nonsteroidal anti-inflammatory drugs. The neutral and protonated COXIB scaffold has been subjected to molecular computations in the gas phase and implicit solvent to measure the relative changes in the thermodynamic functions, enthalpy (H _(rel)), potential energy (U _(rel)), Gibbs free energy (G _(rel)) and entropy (S _(rel)) induced by selected substituents. Conformational analysis of the COXIB scaffold indentified four pairs of atropisomeric conformers (from I, I′ to IV, IV′) associated with a molecular structure containing a double rotor system. All conformers had similar stability. Para-substitution with substituents that cover a wide range of Hammett sigma values did not alter the geometries of the neutral COXIB conformers; however, the protonated COXIB scaffold was showed an increase in structural and thermodynamic perturbations due to inductive effects. Flexibility and structural resilience of the COXIB scaffold under the conditions studied herein could be an important feature of the COXIBs, especially considering the previously proposed flexibility of the cyclo-oxygenase binding site.
机译:选择性环加氧酶2抑制剂(COXIBs)是非甾体类抗炎药的重要成员。已对中性和质子化的COXIB支架进行了气相和隐含溶剂的分子计算,以测量热力学函数,焓(H _(rel)),势能(U _(rel)),Gibbs free的相对变化所选取代基诱导的能量(G_(rel))和熵(S_(rel))。 COXIB支架的构象分析确定了四对对位异构体构象异构体(从I,I'到IV,IV'),该构象与包含双转子系统的分子结构相关。所有构象异构体具有相似的稳定性。用取代基覆盖广泛的Hammettσ值的对位取代不会改变中性COXIB构象异构体的几何形状;然而,由于诱导效应,质子化的COXIB支架显示出结构和热力学扰动的增加。在本文研究的条件下,COXIB支架的柔韧性和结构弹性可能是COXIB的重要特征,特别是考虑到先前提出的环加氧酶结合位点的柔韧性。

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