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一种优化的青蒿素-喹啉杂合物对生命周期多个阶段的效力和功效研究。

Studies of Potency and Efficacy of an Optimized Artemisinin-Quinoline Hybrid against Multiple Stages of the Life Cycle.

作者信息

Quadros Helenita C, Çapcı Aysun, Herrmann Lars, D'Alessandro Sarah, Fontinha Diana, Azevedo Raquel, Villarreal Wilmer, Basilico Nicoletta, Prudêncio Miguel, Tsogoeva Svetlana B, Moreira Diogo R M

机构信息

Instituto Gonçalo Moniz, Fundação Oswaldo Cruz (Fiocruz), Salvador 40296-710, Brazil.

Organic Chemistry Chair I and Interdisciplinary Center for Molecular Materials (ICMM), Friedrich-Alexander University of Erlangen-Nürnberg, Nikolaus Fiebiger-Straße 10, 91058 Erlangen, Germany.

出版信息

Pharmaceuticals (Basel). 2021 Nov 6;14(11):1129. doi: 10.3390/ph14111129.

Abstract

A recently developed artemisinin-quinoline hybrid, named 163A, has been shown to display potent activity against the asexual blood stage of , the malaria parasite. In this study, we determined its in vitro cytotoxicity to mammalian cells, its potency to suppress hepatic infection and to decrease the viability of gametocytes, in addition to determining whether the drug exhibits efficacy of a infection in mice. This hybrid compound has a low level of cytotoxicity to mammalian cells and, conversely, a high level of selectivity. It is potent in the prevention of hepatic stage development as well as in killing gametocytes, denoting a potential blockage of malaria transmission. The hybrid presents a potent inhibitory activity for beta-hematin crystal formation, in which subsequent assays revealed that its endoperoxide component undergoes bioactivation by reductive reaction with ferrous heme towards the formation of heme-drug adducts; in parallel, the 7-chloroquinoline component has binding affinity for ferric hemin. Both structural components of the hybrid co-operate to enhance the inhibition of beta-hematin, and this bitopic ligand property is essential for arresting the growth of asexual blood parasites. We demonstrated the in vivo efficacy of the hybrid as an erythrocytic schizonticide agent in comparison to a chloroquine/artemisinin combination therapy. Collectively, the findings suggest that the bitopic property of the hybrid is highly operative on heme detoxification suppression, and this provides compelling evidence for explaining the action of the hybrid on the asexual blood stage. For sporozoite and gametocyte stages, the hybrid conserves the potency typically observed for endoperoxide drugs, and this is possibly achieved due to the redox chemistry of endoperoxide components with ferrous heme.

摘要

一种最近研发的青蒿素 - 喹啉杂合物,名为163A,已被证明对疟原虫的无性血液阶段具有强大的活性。在本研究中,我们测定了它对哺乳动物细胞的体外细胞毒性、抑制肝期感染以及降低配子体活力的效力,此外还确定了该药物在小鼠体内对疟原虫感染的疗效。这种杂合化合物对哺乳动物细胞的细胞毒性较低,相反,具有高度的选择性。它在预防肝期发育以及杀死配子体方面都很有效,这表明它可能会阻断疟疾传播。该杂合物对β - 血红素晶体形成具有强大的抑制活性,后续实验表明其过氧化物组分通过与亚铁血红素的还原反应进行生物活化,从而形成血红素 - 药物加合物;同时,7 - 氯喹啉组分对高铁血红素有结合亲和力。杂合物的这两种结构组分协同作用以增强对β - 血红素的抑制,这种双位点配体特性对于阻止无性血液寄生虫的生长至关重要。与氯喹啉/青蒿素联合疗法相比,我们证明了该杂合物作为红细胞内裂殖体杀灭剂在体内的疗效。总体而言,这些发现表明杂合物的双位点特性在抑制血红素解毒方面具有高度作用,这为解释杂合物对无性血液阶段的作用提供了有力证据。对于子孢子和配子体阶段,该杂合物保留了过氧化物药物通常具有的效力,这可能是由于过氧化物组分与亚铁血红素的氧化还原化学作用实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6c0/8620906/7ea51b239374/pharmaceuticals-14-01129-g001.jpg

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