Extended side chain analogues of 8-aminoquinolines: Synthesis and evaluation of antiprotozoal, antimicrobial, β-hematin inhibition, and cytotoxic activities

We report the synthesis of double, triple and quadruple extended side chain analogues of the antimalarial drug primaquine and some other 8-aminoquinolines. The synthesized analogues have exhibited potent antimalarial activities in vitro against both the drug-sensitive D6 strain (IC sub(50) = 0.19-0....

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Published inMedChemComm Vol. 2; no. 4; pp. 300 - 307
Main Authors Kaur, Kirandeep, Jain, Meenakshi, Khan, Shabana I., Jacob, Melissa R., Tekwani, Babu L., Singh, Savita, Singh, Prati Pal, Jain, Rahul
Format Journal Article
LanguageEnglish
Published 01.04.2011
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Summary:We report the synthesis of double, triple and quadruple extended side chain analogues of the antimalarial drug primaquine and some other 8-aminoquinolines. The synthesized analogues have exhibited potent antimalarial activities in vitro against both the drug-sensitive D6 strain (IC sub(50) = 0.19-0.92 mu g mL super(-1)) and the drug-resistant W2 strain (IC sub(50) = 0.12-0.82 mu g mL super(-1)) of P. falciparum and in vivo against drug-sensitive P. berghei infected mice (100% curative at 25 mg kg super(-1) day super(-1), and resulted in either 4/6 or 5/6 cures at 10 mg kg super(-1) day super(-1)) for the most promising structures. These analogues were also found to be free of cytotoxic effects at the highest test concentration of 23.8 mu g mL super(-1) in a panel consisting of six cell lines. The promising 8-aminoquinolines inhibited ( beta -hematin (IC sub(50) = 9.6-20.8 mu M) in vitro underlining the disruption of the heme catabolism pathway in the malaria parasite as their potential biochemical pathway for antimalarial action. The analogues also displayed potent antileishmanial activities in vitro against L. donovani promastigotes (IC sub(50) = 1.6-32 mu g mL super(-1); IC sub(90) = 4-40 mu g mL super(-1)) and moderate in vitro antimicrobial activities against a panel of bacteria and fungi.
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ISSN:2040-2503
2040-2511
DOI:10.1039/c0md00267d