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肼基苯酚,一种靶向食物泡并与铁原卟啉IX相互作用的化学类型可预防耐药疟疾。

Hydrazonophenol, a Food Vacuole-Targeted and Ferriprotoporphyrin IX-Interacting Chemotype Prevents Drug-Resistant Malaria.

作者信息

Saha Shubhra Jyoti, Siddiqui Asim Azhar, Pramanik Saikat, Saha Debanjan, De Rudranil, Mazumder Somnath, Debsharma Subhashis, Nag Shiladitya, Banerjee Chinmoy, Bandyopadhyay Uday

机构信息

Division of Infectious Diseases and Immunology , CSIR - Indian Institute of Chemical Biology , 4 Raja S. C. Mullick Road , Jadavpur, Kolkata 700032 , West Bengal , India.

出版信息

ACS Infect Dis. 2019 Jan 11;5(1):63-73. doi: 10.1021/acsinfecdis.8b00178. Epub 2018 Dec 7.

Abstract

The rapid emergence of resistance against frontline antimalarial drugs essentially warrants the identification of new-generation antimalarials. Here, we describe the synthesis of ( E)-2-isopropyl-5-methyl-4-((2-(pyridin-4-yl)hydrazono)methyl)phenol (18), which binds ferriprotoporphyrin-IX (Fe-PPIX) ( K = 33 nM) and offers antimalarial activity against chloroquine-resistant and sensitive strains of Plasmodium falciparum in vitro. Structure-function analysis reveals that compound 18 binds Fe-PPIX through the -C═N-NH- moiety and 2-pyridyl substitution at the hydrazine counterpart plays a critical role in antimalarial efficacy. Live cell confocal imaging using a fluorophore-tagged compound confirms its accumulation inside the acidic food vacuole (FV) of P. falciparum. Furthermore, this compound concentration-dependently elevates the pH in FV, implicating a plausible interference with Fe-PPIX crystallization (hemozoin formation) by a dual function: increasing the pH and binding free Fe-PPIX. Different off-target bioassays reduce the possibility of the promiscuous nature of compound 18. Compound 18 also exhibits potent in vivo antimalarial activity against chloroquine-resistant P. yoelii and P. berghei ANKA (causing cerebral malaria) in mice with negligible toxicity.

摘要

对一线抗疟药物耐药性的迅速出现,从根本上促使人们去寻找新一代抗疟药物。在此,我们描述了(E)-2-异丙基-5-甲基-4-((2-(吡啶-4-基)肼基)甲基)苯酚(18)的合成,该化合物能结合高铁原卟啉-IX(Fe-PPIX)(K = 33 nM),并在体外对恶性疟原虫的氯喹耐药株和敏感株具有抗疟活性。结构-功能分析表明,化合物18通过-C═N-NH-部分与Fe-PPIX结合,肼基对应位置的2-吡啶基取代对抗疟效果起着关键作用。使用荧光团标记化合物的活细胞共聚焦成像证实其在恶性疟原虫的酸性食物泡(FV)内积累。此外,该化合物能浓度依赖性地提高FV内的pH值,这意味着它可能通过双重作用干扰Fe-PPIX结晶(疟色素形成):提高pH值并结合游离的Fe-PPIX。不同的非靶向生物测定降低了化合物18具有混杂性质的可能性。化合物18在小鼠体内对氯喹耐药的约氏疟原虫和伯氏疟原虫ANKA(引起脑型疟疾)也表现出强大的抗疟活性,且毒性可忽略不计。

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