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Computational Study on theEffect of Exocyclic Substituentson the Ionization Potentialof Primaquine: Insights into the Design of Primaquine-Based AntimalarialDrugs with Less Methemoglobin Generation

机译:计算研究环外取代基的作用电离势喹喹啉酮的研究:对基于伯氨喹啉的抗疟药设计的见解血红蛋白生成减少的药物

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摘要

The effect of an exocyclic substituent on the ionization potential of primaquine, an important antimalarial drug, was investigated using density functional theory methods. It was found that an electron-donating group (EDG) makes the ionization potential decrease. In contrast, an electron-withdrawing group (EWG) makes the ionization potential increase. Among all the exocyclic positions, a substituent at the 5- or 7-position has the largest effect. This can be explained by the contribution of the atomic orbitals at those positions to the highest occupied molecular orbital (HOMO). In addition, a substituent at the N8-position has a considerably large effect on the ionization potential because this atom makes the second largest contribution to the HOMO. These findings have potential implications for the design of less hemotoxic antimalarial drugs. We suggest that it is worth considering placement of an EWG at the 5-, 7-, or N8-positions of primaquine in future drug discovery attempts.
机译:使用密度泛函理论方法研究了环外取代基对一种重要的抗疟药伯氨喹的电离电势的影响。发现给电子基团(EDG)使电离电势降低。相反,吸电子基团(EWG)使电离电势增加。在所有的环外位置中,在5或7位的取代基作用最大。这可以通过这些位置上的原子轨道对最高占据分子轨道(HOMO)的贡献来解释。另外,在N8位的取代基对电离电势有相当大的影响,因为该原子对HOMO的贡献最大。这些发现对设计血液毒性较小的抗疟药具有潜在的意义。我们建议在未来的药物开发尝试中考虑将EWG放置在伯氨喹的5、7或N8位。

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