New 1,3,4-Triaza-3H-indene Derivatives in Theoretical, Experimental and biological Studies

Author:

Ouzidan Younes1,Hjouji Mohammed-Yassin2,Hafez Baraa3,Chraibi Marwa4,Ousmane Dounia1,Benbrahim Kawtar Fikri4,Amanarne Rachida1,Abbadi Khalil EL1,Latif Mouad1,el Hicham1,elhenawy Ahmed5,Naglah Ahmed6,Almehizia Adulrahman A.6,Rodi Youssef Kandri2

Affiliation:

1. Université Hassan II

2. Sidi Mohammed Ben Abdallah, University

3. Ajman University

4. Sidi Mohamed Ben Abdellah University

5. Al-Baha University

6. King Saud University

Abstract

Abstract 6-Bromo-2-phenyl-1,3,4-triazaindan under solid-liquid catalysis-transfer-phase(CTP) environment, pyridine interacts with a number of halogenated derivatives to produce the anticipated regioisomer molecules 2a and 2b. Besides, the reaction of compound (1) with bis(2-chloroethyl) amine results in the corresponding isoxazolidin-2-one derivatives (3a) and (3b) at a satisfactory yield. The synthesized compounds are confirmed by X-ray diffraction, spectral techniques (1H NMR, 13C NMR). Then, 1,3,4-Triaza-3H-indene derivatives were analyzed in silico based on molecular structure by molecular docking analysis to determine which one could be used for in vitro antibacterial activity testing. The compounds with the highest binding efficiency in the docking experiment were chosen to be evaluated against both Gram-positive and Gram-negative bacteria. These compounds showed higher efficacy against Gram-positive bacteria than Gram-negative bacteria, which are much more resistant to them.

Publisher

Research Square Platform LLC

Reference47 articles.

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