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Mimicking the Intramolecular Hydrogen Bond: Synthesis, Biological Evaluation, and Molecular Modeling of Benzoxazines and Quinazolines as Potential Antimalarial Agents

  作者 GEMMA SANDRA; CAMODECA CATERINA; BRINDISI MARGHERITA; BROGI SIMONE; KUKREJA GAGAN; KUNJIR SANIL; GABELLIERI EMANUELE; LUCANTONI LEONARDO; HABLUETZEL ANNETTE; TARAMELLI DONATELLA; BASILICO NICOLETTA; GUALDANI ROBERTA; TADINIBUONINSEGNI FRANCESCO; BARTOLOMMEI GIANLUCA; MONCELLI MARIA ROSA; MARTIN ROWENA E; SUMMERS ROBERT L; LAMPONI STEFANIA; SAVINI LUISA; FIORINI ISABELLA; VALOTI MASSIMO; NOVELLINO ETTORE; CAMPIANI GIUSEPPE; BUTINI STEFANIA  
  选自 期刊  Journal of Medicinal Chemistry;  卷期  2012年55-23;  页码  10387-10404  
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[摘要]The intramolecular hydrogen bond formed between a protonated amine and a neighboring H-bond acceptor group in the side chain of amodiaquine and isoquine is thought to play an important role in their antimalarial activities. Here we describe isoquine-based compounds in which the intramolecular H-bond is mimicked by a methylene linker. The antimalarial activities of the resulting benzoxazines, their isosteric tetrahydroquinazoline derivatives, and febrifugine-based 1,3-quinazolin-4-ones were examined in vitro (against Plasmodium falciparum) and in vivo (against Plasmodium berghei). Compounds 6b,c caused modest inhibition of chloroquine transport via the parasite's "chloroquine resistance transporter" (PfCRT) in a Xenopus laevis oocyte expression system. In silico predictions and experimental evaluation of selected drug-like properties were also performed on compounds 6b,c. Compound 6c emerged from this work as the most promising analogue of the series; it possessed low toxicity and good antimalarial activity when administered orally to P. berghei-infected mice.

 
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