Hunig's base catalyzed synthesis of new 1-(2,3-dihydro-1H-inden-1-yl)-3-aryl urea/ thiourea derivatives as potent antioxidants and 2HCK enzyme growth inhibitors

Venkataramana Lachhi Reddy, and Vijay Kumar Reddy Avula, and Grigoriy V. Zyryanov, and Swetha Vallela, and Jaya Shree Anireddy, and Visweswara Rao Pasupuleti, and Naga Raju Chamarthi, (2020) Hunig's base catalyzed synthesis of new 1-(2,3-dihydro-1H-inden-1-yl)-3-aryl urea/ thiourea derivatives as potent antioxidants and 2HCK enzyme growth inhibitors. Bioorganic Chemistry, 95. pp. 1-13.

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Hunig's base catalyzed synthesis of new 1 (2,3-dihydro 1H inden 1 yl) 3 aryl urea thiourea derivatives as potent antioxidants and 2HCK enzyme growth inhibitors.pdf

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Abstract

A series of 1-(2,3-dihydro-1H-indan-1-yl)-3-aryl urea/thiourea derivatives (4a-j) have been synthesized from the reaction of 2,3-dihydro-1H-inden-1-amine (2) with various aryl isocyanates/isothiocyanates (3a-j) by using N,N-DIPEA base (Hunig's base) catalyst in THF at reflux conditions. All of them are structurally confirmed by spectral (IR, 1H & 13C NMR and MASS) and elemental analysis and screened for their in-vitro antioxidant activity against DPPH and NO free radicals and found that compounds 4b, 4i, 4h & 4g are potential antioxidants. The obtained in vitro results were compared with the molecular docking, ADMET, QSAR and bioactivity study results performed for them and identified that the recorded in silico binding affinities were observed in good correlation with the in vitro antioxidant results. The Molecular docking analysis had unveiled the strong hydrogen bonding interactions of synthesized ligands with ARG 160 residue of protein tyrosine kinase (2HCK) enzyme and plays an effective role in its inhibition. Toxicology studies have assessed the potential risks of 4a-j and inferred that all of them were in the limits of potential drugs. The conformational analysis of 4a-j inferred that the urea/thiourea spacer linking 2,3-dihydro-1H-inden-1-amino and substituted aryl units has facilitated all these molecules to effectively bind with ARG 160 amino acid residue present on the α-helix of the protein tyrosine kinase (2HCK) enzyme specifically on chain A of hemopoetic cell kinase. Collectively this study has established a relationship between the antioxidant potentiality and ligands binding with ARG 160 amino acid residue of chain A of 2HCK enzyme to inhibit its growth as well as proliferation of reactive oxygen species in vivo.

Item Type: Article
Uncontrolled Keywords: 2,3-Dihydro-1H-inden-1-amine, Urea/thio-urea derivative, Antioxidant activity, ADMET properties, Molecular docking studies, 2HCK enzyme growth inhibition
Subjects: R Medicine > R Medicine (General)
R Medicine > RC Internal medicine
Divisions: FACULTY > Faculty of Medicine and Health Sciences
Depositing User: MDM SITI AZIZAH IDRIS
Date Deposited: 10 Mar 2020 01:49
Last Modified: 10 Mar 2020 01:49
URI: http://eprints.ums.edu.my/id/eprint/25099

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