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3D-QSAR study of bis-azaaromatic quaternary ammonium analogs at the blood-brain barrier choline transporter

机译:血脑屏障胆碱转运蛋白的双氮杂芳香族季铵盐类似物的3D-QSAR研究

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Previously, we have developed 3D-QSAR models of the blood-brain barrier (BBB) choline transporter, a transport system that may have utility as a vector for central nervous system drug delivery. In this study, we extended the model by evaluating five bis-azaaromatic quaternary ammonium compounds for their affinity for the choline binding site on the BBB-choline transporter. The compounds, and their affinities for the transporter, were then incorporated into our existing molecular model, in order to update our knowledge on the molecular recognition factors associated with interaction of ligands at the choline binding site. The current compounds are structurally related to previous substrates that we have evaluated, but offer additional three dimensional aspects compared to the series of compounds previously utilized to define the original models. The compounds showed good affinity for the BBB-choline transporter, exhibiting inhibition constants ranging from 10 to 68 μM, as determined by the in situ rat brain perfusion method. Comparative molecular field analysis (CoMFA) and comparative molecular similarity index analysis (CoMSIA) methods were used to build the new 3D QSAR models. When the new bis-azaaromatic quaternary ammonium compounds were included in the model, the best cross-validated CoMFA q~2 was found to be 0.536 and the non-cross-validated r~2 was 0.818. CoMSIA hydrophobic cross-validated q~2 was 0.506 and the non-cross-validated r~2 was 0.804. This new model was able to better predict BBB-choline transporter affinity of hemicholinium-3 (predicted 65 μM, actual 54 μM), when compared to an earlier model (predicted 316 μM).
机译:以前,我们已经开发了血脑屏障(BBB)胆碱转运蛋白的3D-QSAR模型,该转运系统可能可用作中枢神经系统药物输送的载体。在这项研究中,我们通过评估5种双氮杂芳香族季铵化合物对BBB-胆碱转运蛋白上胆碱结合位点的亲和力来扩展模型。然后将这些化合物及其对转运蛋白的亲和力整合到我们现有的分子模型中,以更新我们对与胆碱结合位点上的配体相互作用相关的分子识别因子的认识。当前的化合物在结构上与我们评估过的以前的底物有关,但是与先前用于定义原始模型的一系列化合物相比,它提供了更多的三维方面。这些化合物对BBB-胆碱转运蛋白表现出良好的亲和力,表现出的抑制常数范围为10到68μM(通过原位大鼠脑灌注方法测定)。比较分子场分析(CoMFA)和比较分子相似性指数分析(CoMSIA)方法被用来建立新的3D QSAR模型。当模型中包含新的双氮杂芳香族季铵化合物时,发现最佳交叉验证的CoMFA q〜2为0.536,未交叉验证的r〜2为0.818。 CoMSIA疏水交叉验证的q〜2为0.506,非交叉验证的r〜2为0.804。与早期模型(预测为316μM)相比,该新模型能够更好地预测hemicholinium-3的BBB-胆碱转运蛋白亲和力(预测为65μM,实际为54μM)。

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