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Monte Carlo simulations of the chiral recognition of fenoprofen enantiomers by cyclomaltoheptaose(#beta#-cyclodextrin)

机译:环麦芽庚糖(#beta#-环糊精)手性识别非诺洛芬对映体的蒙特卡罗模拟

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摘要

Differential complexation of fenoprofen enantiomers by cyclomaltoheptaose(#beta#-cyclodextrin)was investigated by Monte Carlo docking simulations. The chiral discrimination of (R)-and (S)-fenoprofen by #beta#-cyclodextrin was discussed in terms of the difference in the interaction energies and the patterns of molecular interactions. The interaction energies between each enantiomer of fenoprofen and #beta#-cyclodextrin were consistent with the reported experimental results that showed that the S isomer interacted preferentially with #beta#-cyclodextrin and was retained longer in a separation process than the R isomer.The thermodynamic preference of inclusion complex formation of (S)-fenoprofen culd be explained by the orientation of the phenyl group attached to the chiral carbon,which provided closer contact and thus more favorable intermolecular interactions between the host and guest molecule. The results presented here would be very useful for the prediction of chiral recognition ability of #beta#-cyclodextrin.
机译:通过蒙特卡洛对接模拟研究了芬诺洛芬对映异构体与环麦芽庚糖(#beta#-环糊精)的差异络合。根据相互作用能的差异和分子相互作用的方式,讨论了β-环糊精对(R)-和(S)-芬诺洛芬的手性鉴别。芬诺洛芬的每个对映体与#β#-环糊精之间的相互作用能与已报道的实验结果一致,该实验结果表明S异构体优先与#beta#-环糊精相互作用,并且在分离过程中保留的时间比R异构体更长。 (S)-fenoprofen包合物形成的偏好性可以通过与手性碳相连的苯基的方向来解释,这提供了更紧密的接触,从而在宿主与客体分子之间提供了更有利的分子间相互作用。此处给出的结果对于预测#beta#-环糊精的手性识别能力非常有用。

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