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Considering Autotaxin Inhibitors in Terms of 2D-QSAR and 3D-Mapping-Review and Evaluation

机译:考虑到2D-QSAR和3D绘图 - 审查和评估方面的自身抑制剂

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摘要

The potential role of Autotaxin (ATX) in physiological and pathological processes turned it in an attractive drug target for pharmacological therapeutic development. However, potent and selective non-lipid as well lipid inhibitors of ATX are currently not available as drugs. In this paper we tried to review all the known progress on ATX inhibition using two dimensional (2D)-Quantitative Structure Activity Relationship (QSAR) and three dimensional (3D) mapping techniques. Furthermore, we tried to compare and extract conclusions analyzing with 3D mapping techniques vastly diverse structures of non-lipid ATX inhibitors which have been reported in patents. McGowan's Volume (MgVol) molar volume and Molar Refractivity (MR) of substituents seems to govern the ATX inhibition. 3D-mapping results point to the role of steric properties (Volume and Polar Surface Area-PSA). Steric factors are obviously important. The role of hydrophilicity was also highlighted. Electronic parameters are not found to be present.
机译:自坦素(ATX)在生理和病理过程中的潜在作用将其转化为药理治疗发育的有吸引力的药物靶标。然而,由于ATX的脂质抑制剂以及药物的脂质抑制剂,有效和选择性的非脂质。在本文中,我们尝试使用二维(2D) - QSAliative结构活动关系(QSAR)和三维(3D)映射技术来审查ATX抑制的所有已知进展。此外,我们试图比较和提取与3D映射技术分析的结论,这些技术在专利中报道的非脂质ATX抑制剂的巨大结构。麦克湾的体积(MgVol)摩尔体积和摩尔折射率(MR)的取代基似乎控制ATX抑制。 3D映射结果指向空间属性(体积和极面积区域-PSA)的作用。空间因素显然很重要。还强调了亲水性的作用。找不到电子参数。

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