A comprehensive study on Geranium robertianum L. antibacterial potential

Author:

Stanković Marina M1ORCID,Ristivojević Petar M2,Ivković Đurđa D3ORCID,Milutinović Milena G1,Terzić Jelena N1,Stefanović Olgica D1

Affiliation:

1. University of Kragujevac, Faculty of Science, Department of Biology and Ecology , Radoja Domanovića 12, 34000 Kragujevac , Serbia

2. University of Belgrade, Faculty of Chemistry, Chair of Analytical Chemistry , Studentski trg 12–16, 11158 Belgrade , Serbia

3. Innovation Centre of Faculty of Chemistry Ltd. , Studentski trg 12–16, 11158 Belgrade , Serbia

Abstract

Abstract Aims The research aimed to optimize the ultrasound-assisted extraction of secondary metabolites and the antibacterial activity of the plant species Geranium robertianum. The phytochemical profiles of the optimized extracts, as well as their antibacterial and synergistic activity with an antibiotic and their potential mechanisms of action and cytotoxicity, were examined. Methods and results Response Surface Methodology was used to optimize extraction conditions. Optimized ethanol and acetone extracts were tested via microdilution, checkerboard, time-kill kinetics, and cell membrane permeability methods. The extracts displayed broad antibacterial activity with minimum inhibitory concentrations ranging from 1.25 to 20 mg ml−1. In addition, the extract synergistically reacted with gentamicin against gentamicin-resistant strains of Escherichia coli and Staphylococcus aureus, enhancing the efficacy of the antibiotic up to 32-fold. The extracts demonstrated strain-dependent bactericidal activity in a 24-h time interval. They increase the permeability of the cell membrane, thus disrupting its normal functioning. The cytotoxic concentration (CC50) on human keratinocytes was 1771.24 ± 5.78 µg ml−1 for ethanol extract, and 958.01 ± 6.14 µg ml−1 for acetone extract. Kaempferol, ellagic acid, quercetin, and rutin were recognized as the main components in both extracts. Conclusions The findings of this study indicate that the extracts of G. robertianum can be considered as potential natural antibacterial agents in the control of microorganisms.

Funder

Ministry of Science, Technical Development, and Innovation of the Republic of Serbia

Publisher

Oxford University Press (OUP)

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