2022
DOI: 10.3390/molecules27030660
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Identification of Antibacterial Components in the Methanol-Phase Extract from Edible Herbaceous Plant Rumex madaio Makino and Their Antibacterial Action Modes

Abstract: Outbreaks and prevalence of infectious diseases worldwide are some of the major contributors to morbidity and morbidity in humans. Pharmacophageous plants are the best source for searching antibacterial compounds with low toxicity to humans. In this study, we identified, for the first time, antibacterial components and action modes of methanol-phase extract from such one edible herbaceous plant Rumex madaio Makino. The bacteriostatic rate of the extract was 75% against 23 species of common pathogenic bacteria.… Show more

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Cited by 6 publications
(38 citation statements)
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“…For the Gram-negative bacterium V. parahaemolyticus ATCC17802, 1 MIC treatment for only 1 h significantly increased the bacterial CIM permeability by 1.21-fold (p < 0.05) (Figure 3E). The effects of antibacterial components on bacterial cell surface hydrophobicity, membrane fluidity and permeability were also observed for the methanol-phase extract from the edible herbaceous plant Rumex madaio Makino in our recent research [14].…”
Section: Bacterial Cell Structure Change Mediated By Gmpe Treatmentmentioning
confidence: 59%
See 4 more Smart Citations
“…For the Gram-negative bacterium V. parahaemolyticus ATCC17802, 1 MIC treatment for only 1 h significantly increased the bacterial CIM permeability by 1.21-fold (p < 0.05) (Figure 3E). The effects of antibacterial components on bacterial cell surface hydrophobicity, membrane fluidity and permeability were also observed for the methanol-phase extract from the edible herbaceous plant Rumex madaio Makino in our recent research [14].…”
Section: Bacterial Cell Structure Change Mediated By Gmpe Treatmentmentioning
confidence: 59%
“…The influence of the GMPE on the cell morphological architecture of S. aureus ATCC8095, A. hydrophila, E. sakazakii CMCC45401, V. metschnikovii ATCC700040 and V. parahaemolyticus ATCC17802 was further investigated by scanning electron microscope (SEM) analysis (Figure 4A-E). The effects of antibacterial components on bacterial cell surface hydrophobicity, membrane fluidity and permeability were also observed for the methanol-phase extract from the edible herbaceous plant Rumex madaio Makino in our recent research [14].…”
Section: Bacterial Cell Morphological Architecture Change Mediated By...mentioning
confidence: 59%
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