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Molecules ; 26(13)2021 Jun 23.
Article de Anglais | MEDLINE | ID: mdl-34201561

RÉSUMÉ

Current therapeutic protocols for the treatment of HIV infection consist of the combination of diverse anti-retroviral drugs in order to reduce the selection of resistant mutants and to allow for the use of lower doses of each single agent to reduce toxicity. However, avoiding drugs interactions and patient compliance are issues not fully accomplished so far. Pursuing on our investigation on potential anti HIV multi-target agents we have designed and synthesized a small library of biphenylhydrazo 4-arylthiazoles derivatives and evaluated to investigate the ability of the new derivatives to simultaneously inhibit both associated functions of HIV reverse transcriptase. All compounds were active towards the two functions, although at different concentrations. The substitution pattern on the biphenyl moiety appears relevant to determine the activity. In particular, compound 2-{3-[(2-{4-[4-(hydroxynitroso)phenyl]-1,3-thiazol-2-yl} hydrazin-1-ylidene) methyl]-4-methoxyphenyl} benzamide bromide (EMAC2063) was the most potent towards RNaseH (IC50 = 4.5 mM)- and RDDP (IC50 = 8.0 mM) HIV RT-associated functions.


Sujet(s)
Agents antiVIH/composition chimique , Transcriptase inverse du VIH/antagonistes et inhibiteurs , VIH-1 (Virus de l'Immunodéficience Humaine de type 1)/métabolisme , Ribonuclease H/antagonistes et inhibiteurs , Thiazoles/composition chimique , Thiazoles/pharmacologie , Agents antiVIH/pharmacologie , Transcriptase inverse du VIH/composition chimique , VIH-1 (Virus de l'Immunodéficience Humaine de type 1)/enzymologie , Concentration inhibitrice 50 , Ligands , Simulation de docking moléculaire , Bibliothèques de petites molécules , Relation structure-activité , Thiazoles/synthèse chimique
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