Antibacterial, Synergistic and β-lactamase Inhibitory Activity of Oroxylem indicum:

Journal Title: Journal of Pharmaceutical Research International - Year 2014, Vol 4, Issue 17

Abstract

Aims: The study was aimed to evaluate the antibacterial, synergistic and β-lactamase inhibitory potential of O. indicum against ampicillin resistant and Extended Spectrum β-lactamase (ESBL) producing bacterial strains. Methods: Bacterial strains were screened for ampicillin resistance and ESBL production by disk diffusion method and modified double disc synergy test respectively. Antibacterial and synergistic activities of O. indicum methanol extract and ethyl acetate sub fraction of methanol extract were explored by agar well diffusion method and Checkerboard method respectively. Extracts were subjected to Gas chromatography and Mass spectroscopy (GC-MS) analysis to identify the bioactive compounds. Molecular docking studies were carried out to verify the β-lactamase inhibitory potential of the bioactive compounds. Results: All bacterial strains were found to be resistant to ampicillin and only one strain was detected as ESBL positive. Ethyl acetate sub fraction exhibited strong antibacterial and synergistic activity than the methanol extract. Zone of inhibition and Minimum inhibitory concentration for ethyl acetate sub fraction was 16 mm and 15mg/ml respectively. In vitro interactions between plant extracts and ampicillin evaluated in terms of fractional inhibitory concentration (FIC) indices revealed synergistic effects of plant extracts. The molecular docking studies of major bioactive compounds depicted by GC-MS analysis revealed that Wogonin, a flavonoid (GLIDE Score-5.77) possessed the best inhibitory profile against β–lactamase. Conclusion: Synergistic activity of O. indicum may be attributed to the β–lactamase inhibitory potential of the bioactive compounds present in the extract. The findings provide substantial basis for the future use of O. indicum crude extracts as potential antibacterial and antibiotic modulating agent.

Authors and Affiliations

Anupma Malik, Sheema Bai, Leena Seasotiya, Pooja Bharti, Sunita Dalal

Keywords

Related Articles

Cytotoxicity of Endocytosis and Efflux Inhibitors in the BeWo Cell Line

Aims: The purpose of this study was to determine the cell viability and cytotoxicity of various endocytosis and efflux inhibitors which can be used to determine transport and uptake mechanisms in the BeWo (b30 clone) hum...

Chitosan Nanoparticles for Topical Co-administration of the Antioxidants Glutathione and Idebenone: Characterization and In vitro Release

Aims: The aim of this study was to explore the potential of novel nanoparticles (NPs) intended for topical administration of the hydrophilic antioxidant Glutathione and the lipophilic Idebenone. Glutathione was introduce...

Trimetazidine Prevents Renal Fibrosis Induced by Cyclosporine A in Wister Rats

Cyclosporine A (CyA), an immunosuppressant administered to transplant patients, causes adverse effects such as nephrotoxicity and hepatotoxicity. In kidney slices of rats treated with 25 mg/kg/day of CyA we observed inte...

Novel Tuberculostatic Agents Suitable for Treatment of Mycobacterium tuberculosis Infections of the Central Nervous System

Aims: To demonstrate the efficacy of five small molecule compounds for inhibiting the growth of Mycobacterium tuberculosis. To present evidence that these compounds will penetrate into the central nervous system. Study D...

Effects of Momordica charantia on Serum Lipid Profile, Serum Protein Levels and Selected Markers of Cardiovascular Damage in Diabetic Rats

Aims: To investigate the effects of M. charantia on serum lipid profile, serum protein concentration and selected markers of cardiovascular damage in streptozotocin-induced diabetic Wistar rats. Study design: Forty heal...

Download PDF file
  • EP ID EP344611
  • DOI 10.9734/BJPR/2014/12343
  • Views 90
  • Downloads 0

How To Cite

Anupma Malik, Sheema Bai, Leena Seasotiya, Pooja Bharti, Sunita Dalal (2014). Antibacterial, Synergistic and β-lactamase Inhibitory Activity of Oroxylem indicum:. Journal of Pharmaceutical Research International, 4(17), 2033-2045. https://europub.co.uk./articles/-A-344611