Synthesis and bioassay of a new class of disubstituted 1,3,4-oxadiazoles, 1,3,4-thiadiazoles and 1,2,4-triazoles

A new class of aroylethenesulfonylmethyl styryl oxadiazoles/thiadiazoles/triazoles and arylsulfonylethenesulfonylmethyl styryl oxadiazoles/thiadiazoles/triazoles were synthesized from the synthetic intermediates E -aroylethenesulfonylacetic acid methyl ester, E - arylsulfonylethenesulfonylacetic aci...

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Veröffentlicht in:Medicinal chemistry research 2019-07, Vol.28 (7), p.1049-1062
Hauptverfasser: Madhu Sekhar, Mangali, Yamini, Gudi, Divya, Kuppi Reddy Gari, Padmavathi, Venkatapuram, Padmaja, Adivireddy
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Sprache:eng
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Zusammenfassung:A new class of aroylethenesulfonylmethyl styryl oxadiazoles/thiadiazoles/triazoles and arylsulfonylethenesulfonylmethyl styryl oxadiazoles/thiadiazoles/triazoles were synthesized from the synthetic intermediates E -aroylethenesulfonylacetic acid methyl ester, E - arylsulfonylethenesulfonylacetic acid methyl ester and substituted cinnamic acids adopting conventional and ultrasonication methodologies. All the synthesized compounds were obtained in higher yields and in shorter reaction times in ultrasound irradiation method when compared with conventional method. The structures of all the compounds were characterized by IR, 1 H NMR, 13 C NMR and mass spectra. All the title compounds were tested for antimicrobial activity. The arylsulfonylethenesulfonylmethyl styryl azoles displayed higher antimicrobial activity than the aroylethenesulfonylmethyl styryl azoles. The compounds having triazole moiety showed greater activity than those with oxadiazole and thiadiazole. Amongst all the tested compounds unsubstituted and chloro substituted arylsulfonylethenesulfonyl methyl styryl triazoles are identified as potential antimicrobial agents particularly against B. subtilis and P.chrysogenum .
ISSN:1054-2523
1554-8120
DOI:10.1007/s00044-019-02360-2