首页> 外文期刊>Journal of Medicinal Chemistry >Antimalarial Quinacrine and Chloroquine Lose Their Activity by Decreasing Cationic Amphiphilic Structure with a Slight Decrease in pH
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Antimalarial Quinacrine and Chloroquine Lose Their Activity by Decreasing Cationic Amphiphilic Structure with a Slight Decrease in pH

机译:通过降低pH值略微降低,通过减少阳离子两亲结构失去活性的抗疟喹吖啶和氯喹

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Quinacrine (QC) and chloroquine (CQ) have antimicrobial and antiviral activities as well as antimalarial activity, although the mechanisms remain unknown. QC increased the antimicrobial activity against yeast exponentially with a pH-dependent increase in the cationic amphiphilic drug (CAD) structure. CAD-QC localized in the yeast membranes and induced glucose starvation by noncompetitively inhibiting glucose uptake as antipsychotic chlorpromazine (CPZ) did. An exponential increase in antimicrobial activity with pH-dependent CAD formation was also observed for CQ, indicating that the CAD structure is crucial for its pharmacological activity. A decrease in CAD structure with a slight decrease in pH from 7.4 greatly reduced their effects; namely, these drugs would inefficiently act on falciparum malaria and COVID-19 pneumonia patients with acidosis, resulting in resistance. The decrease in CAD structure at physiological pH was not observed for quinine, primaquine, or mefloquine. Therefore, restoring the normal blood pH or using pH-insensitive quinoline drugs might be effective for these infectious diseases with acidosis.
机译:喹那克林(QC)和氯喹(CQ)具有抗菌、抗病毒和抗疟活性,但其机制尚不清楚。QC对酵母的抗菌活性呈指数增长,阳离子两亲性药物(CAD)结构的pH依赖性增加。CAD-QC定位于酵母膜,通过非竞争性抑制葡萄糖摄取诱导葡萄糖饥饿,就像抗精神病药氯丙嗪(CPZ)那样。在pH依赖性CAD形成的情况下,CQ的抗菌活性也呈指数增长,这表明CAD结构对其药理活性至关重要。CAD结构的减少,pH值从7.4略微降低,大大降低了它们的影响;即,2019冠状病毒疾病和COVID-19型肺炎患者,其药物中毒会导致抵抗。奎宁、伯氨喹或甲氟喹在生理pH下未观察到CAD结构的减少。因此,恢复正常的血液pH值或使用pH不敏感的喹啉类药物可能对这些伴有酸中毒的传染病有效。

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