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A series of 11 oxadiazole analogues were subjected to molecular properties prediction and drug likeness by Molinspiration and MolSoft software, lipophilicity and solubility parameters using ALOGPS 2.1 program. The compounds followed the Lipinski "Rule of five" were synthesized for antimicrobial screening as oral bioavailable drugs/leads. Further the structure of the synthesized compounds was confirmed by spectral analyses (IR, NMR and mass) and the compounds (4a-k) were evaluated for antibacterial and antifungal activities as per the standard protocol.…mehr

Produktbeschreibung
A series of 11 oxadiazole analogues were subjected to molecular properties prediction and drug likeness by Molinspiration and MolSoft software, lipophilicity and solubility parameters using ALOGPS 2.1 program. The compounds followed the Lipinski "Rule of five" were synthesized for antimicrobial screening as oral bioavailable drugs/leads. Further the structure of the synthesized compounds was confirmed by spectral analyses (IR, NMR and mass) and the compounds (4a-k) were evaluated for antibacterial and antifungal activities as per the standard protocol. N-(2-Methylphenyl)-5-(4-chlorophenyl)-1,3,4-oxadiazol-2-amine, 4c was found to have maximum antibacterial activity while N-(2-methylphenyl)-5-(4-hydroxyphenyl)-1,3,4-oxadiazol-2-amine, 4d showed maximum antifungal activity.
Autorenporträt
Rakesh Sharma (Ph.D. em Ciência do Solo) é atualmente docente na Faculdade de Horticultura e Silvicultura (Universidade de Horticultura e Silvicultura Dr. YSP, Solan) em Hamirpur (HP), na Índia. Os seus interesses de investigação incluem a gestão de nutrientes específica do local e a horticultura de precisão utilizando técnicas geo-espaciais. Publicou 20 artigos de investigação.