Author:
Xavier Maria Regivânia,da Fonseca Aluísio Marques,Cruz Beatriz Gonçalves,dos Santos Mendes Antonia Mayara,Oliveira Larissa Santos,Bandeira Paulo Nogueira,Colares Regilany Paulo,Braz-Filho Raimundo,Marinho Emmanuel Silva,Freitas Thiago Sampaio,Melo Coutinho Henrique Douglas,Rodrigues Teixeira Alexandre Magno,dos Santos Hélcio Silva
Abstract
The antibiotic potentiating activity against standard and multidrug-resistant Escherichia coli and Staphylococcus aureus bacterial strains of the natural compound 5”-O-α-L-raminopyranosyl-1’-β-D-glycopyranosyl-4’,6-dimethoxyflavone (pectolinarin) isolated from L. camara leaves was evaluated. Tests for antibacterial activity of the pure natural substance and analysis of the potentiation of antibacterial activity of pectolinarin associated with antibiotics were carried out against standard and multiresistant bacterial strains of Escherichia coli and Staphylococcus aureus by microdilution. Pectolinarin, when combined with the antibiotic gentamicin, showed synergism, potentiating growth inhibition against Gram-positive S. aureus strains. The pectolinarin flavonoid when combined with the gentamicin antibiotic potentiated its action Gram-positive S. aureus bacteria. Moreover, an antagonistic effect was observed when the pectolinarin was combined with the penicillin antibiotic against the multiresistant S. aureus 358 strain. This research suggests that pectolinarin is a compound with potential application as an antibacterial drug.
Reference34 articles.
1. Machado H, Nagen TJ, Peters VM, et al. Flavonoids and potential therapeutic. Boletim do Centro de Biologia da Reproduçã. 2008;27:33-
2. Flavonoids: Old and new aspects of a class of natural therapeutic drugs;Di Carlo;Life Sci,1999
3. Cancer preventive effects of flavonoids-a review;Le Marchand;Biomed Pharmacother,2002
4. Flavonoids-Chemistry, metabolism, cardioprotective effects, and dietary sources;NC;J Nutr Biochem,1996
5. Thakar, Minakshi A. X ray diffraction (XRD) analysis and evaluation of antioxidant activity of copper oxide nanoparticles synthesized from leaf extract of Cissus vitiginea." Materials Today: Proceedings. 2021.
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