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2000
Volume 9, Issue 1
  • ISSN: 1573-4064
  • E-ISSN: 1875-6638

Abstract

Siderophores are small molecules produced by bacteria under iron-scarcity conditions faced by bacteria inside host. Sideophores bind iron with high affinity (Kd < 10-25 M) and are required for iron transport into the bacterial cell. Small molecules interfering with siderophore functioning can be promising anti-mycobacterial agents. Several molecules with hydrazone as a structural feature are known to have metal chelating property. This prompted us to investigate the metal chelating ability of 2-hydrazino-pyrimidin-4(3H)-one derivatives. In this light, a library of 22 novel molecules with 2- hydrazino-pyrimidin-4(3H)-one moiety was synthesized and the compounds were evaluated against M. tuberculosis under iron-limiting and iron-rich conditions. Interestingly, several molecules showed promising (MIC:<10 μM) selective activity under iron scarcity conditions. Furthermore, compounds were found to be nontoxic at lower concentration in VERO cell lines using MTT assay. Taken together, we have discovered novel 2-hydrazino-pyrimidin-4(3H)-one molecules active against M. tuberculosis which can be developed as potent antimycobacterial agents.

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/content/journals/mc/10.2174/157340613804488332
2013-02-01
2025-05-25
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/content/journals/mc/10.2174/157340613804488332
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  • Article Type:
    Research Article
Keyword(s): Antitubercular; Iron scarcity; Siderophore
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