Please use this identifier to cite or link to this item: http://digitalrepository.fccollege.edu.pk/handle/123456789/1280
Title: Levofloxacin and sulfa drugs linked via Schiff bases: Exploring their urease inhibition, enzyme kinetics and in silico studies
Authors: Tirmazi, Syed Azhar Ali Shah
Qadir, Muhammad Abdul
Ahmed, Mahmood
Imran, Muhammad
Hussain, Riaz
Sharif, Mehwish
Yousaf, Muhammad Zubair
Muddassar, Muhammad
Keywords: DFT
Levofloxacin
Sulfonamides
Urease
Docking studies
Issue Date: 2021
Publisher: ELSEVIER
Citation: Syed Azhar Ali Shah Tirmazi, Muhammad Abdul Qadir, Mahmood Ahmed, Muhammad Imran, Riaz Hussain, Mehwish Sharif, Muhammad Yousaf, Muhammad Muddassar, Levofloxacin and sulfa drugs linked via Schiff bases: Exploring their urease inhibition, enzyme kinetics and in silico studies, Journal of Molecular Structure, Volume 1235, 2021, 130226, ISSN 0022-2860, https://doi.org/10.1016/j.molstruc.2021.130226.
Series/Report no.: Journal of Molecular Structure, Volume 1235, 2021, 130226,;
Abstract: Involvement of urease in various pathological conditions specifically in gastric and peptic ulcers make it an important therapeutic target. In the present study urease inhibition was investigated by newly de signed Schiff bases of levofloxacin. Structure elucidation of these compounds were done by spectral stud ies such as IR, 1H NMR and 13C NMR and elemental analysis. In vitro urease enzyme inhibition assay revealed the compounds LS01, LS06 and LS07 were found to be the most potent and showed comparable IC50 values 0.58±0.11, 0.45±0.21 μM and 0.52±0.28 μM respectively. The compound LS06 was competi tive inhibitor with Ki value 1.13 μM while the compounds LS01 and LS07 were mixed type of inhibitors with Ki values 3.40 and 6.03 μM respectively. Plausible binding mode of competitive inhibitor was pre dicted using molecular docking studies. Ancillary to synthetic studies, density functional theory (DFT) at B3LYP/6–31G(d,p) basis sets in ground state is utilized in order to gain optimized geometries of LS01- LS09 molecules. Different geometric parameters like molecular electrostatic potential analysis, alignment of HOMO and LUMO levels, natural bonding orbital (NBO) analysis and global descriptor of reactivity were performed in support of experimental findings. All DFT based computed results showed best agreement with experimental finding and suggest that all synthesized compounds are chemically stable
Description: https://www.sciencedirect.com/science/article/abs/pii/S0022286021003574
URI: http://localhost:8080/xmlui/handle/123456789/1280
Appears in Collections:School of Life Sciences

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