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The Potential of Quinoline Derivatives for the Treatment of Toxoplasma gondii Infection.

机译:喹啉衍生物治疗弓形虫感染的潜力。

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摘要

Here we reported our investigation, as part of our drug repositioning effort, on anti-Toxoplasma properties of newly synthesized quinoline compounds. A collection of 4-aminoquinoline and 4-piperazinylquinoline analogs have recently been synthesized for use in cancer chemotherapy. Some analogs were able to outperform chloroquine, a quinoline derivative drug which is commonly used in the treatment of malaria and other parasitic infections. Herein 58 compounds containing one or two quinoline rings were examined for their effectiveness as potential anti-Toxoplasma compounds. Of these 58 compounds, 32 were efficient at inhibiting Toxoplasma growth (IC50μM). Five compounds with single and simple quinoline rings exhibited similar cLogP values of ∼2 and IC50 values between 5 and 6 μM, with one exception of 8-hydroxyquinoline whose IC50 value was 213 nM. The addition of one hydroxyl group at position 8 caused a 40-fold increase in the inhibitory effect of quinoline. A significant improvement in anti-Toxoplasma effect among quinoline derivatives was detected in B11, B12, B23, and B24, whose structures carry two quinoline rings, and their resultant cLogP values are ⩾7. Among these compounds, B23 was the most effective compound with IC50 value of 425±35 nM, and TI value of 4.9. It was also noted that compounds with at least one quinoline ring, displaying anti-Toxoplasma effects were capable of causing the disappearance of the apicoplast, a plastid-like organelle. When treated with quinoline, 8-hydroxyquinoline or B23, 40-45% of the parasites lost their apicoplasts. Our findings recapitulate the properties of quinoline derivatives in diminishing apicoplast. This could aid further investigations of anti-parasitic treatments specific to Apicomplexan. More importantly, B12 and B23 which harbor superior anti-cancer properties than chloroquine, have effective anti-Toxoplasma activity. These compounds therefore have significant potential for future development of chemotherapeutic agents for patients suffering from breast cancers and parasitic infection.
机译:在此,我们报告了作为新药重新定位工作的一部分,有关新合成喹啉化合物的抗弓形虫特性的研究。最近已经合成了4-氨基喹啉和4-哌嗪基喹啉类似物的集合,用于癌症化学疗法。一些类似物的性能优于氯喹,后者是喹啉衍生物药物,通常用于治疗疟疾和其他寄生虫感染。在此检查了58个含有一个或两个喹啉环的化合物作为潜在抗弓形虫化合物的有效性。在这58种化合物中,有32种有效抑制弓形虫生长(IC50μM)。五种具有单个和简单喹啉环的化合物的cLogP值相似,约为〜2,IC50值在5至6μM之间,除了8-羟基喹啉,其IC50值为213 nM。在位置8处添加一个羟基会导致喹啉的抑制作用增加40倍。在B11,B12,B23和B24的结构中带有两个喹啉环的喹啉衍生物中,抗弓形虫的作用得到了显着改善,其cLogP值为⩾7。在这些化合物中,B23是最有效的化合物,IC50值为425±35 nM,TI值为4.9。还应注意的是,具有至少一个喹啉环的化合物显示出抗弓形体的作用,能够引起质体样细胞器无顶体的消失。当用喹啉,8-羟基喹啉或B23处理时,有40-45%的寄生虫失去了其原生质体。我们的发现概括了喹啉衍生物在减少apicoplast中的特性。这可能有助于进一步研究蚜虫复合体特有的抗寄生虫治疗。更重要的是,与氯喹相比,具有更好的抗癌特性的B12和B23具有有效的抗弓形虫活性。因此,这些化合物对于患有乳腺癌和寄生虫感染的患者的化学治疗剂的未来开发具有巨大的潜力。

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    Ananvoranich Sirinart;

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