Niu-Chang-Chih · 2023 · Research Support, Non U.S. Gov'T
High relevanceIsolation and identification of bioactive compounds from Antrodia camphorata against ESKAPE pathogens.
Antrodia camphorata
Key points
- Antimicrobial resistance is a major threat to human health globally
- Antrodia camphorata was grown in a malt/yeast extract broth liquid medium for 15 days
- Then, 4-L fermentation broth was harvested, yielding 7.13 g of the ethyl acetate extract
- By tracing the antimicrobial activity, 12.22 mg of the antimicrobial compound was isolated
- The minimum inhibitory concentration (MIC) range of MBBD for drug-resistant pathogenic bacteria was 64-256 μg/mL, with the lowest MIC observed for Acinetobacter baumannii (64 μg/mL), followed by Pseudomonas aeruginosa (MIC = 128 μg/mL)
- Klebsiella pneumoniae, Staphylococcus aureus, Enterococcus faecalis, and Escherichia coli were also sensitive, with an MIC of 256 μg/mL. The MIC range of MBBD against 10 foodborne pathogens was 12.5-100 μg/mL. Based on the results of this study, MBBD exhibits broad-spectrum antibacterial activity, particularly demonstrating excellent inhibitory effects against A. baumannii
Metadata-grounded summary
Citation abstract
Antimicrobial resistance is a major threat to human health globally. Antrodia camphorata was grown in a malt/yeast extract broth liquid medium for 15 days. Then, 4-L fermentation broth was harvested, yielding 7.13 g of the ethyl acetate extract. By tracing the antimicrobial activity, 12.22 mg of the antimicrobial compound was isolated. The structure of 5-methyl-benzo [1,3]-dioxole-4,7-diol (MBBD) was elucidated using NMR and MS data analyses. The antibacterial activity of MBBD was detected through the microbroth dilution method. MBBD exhibited broad-spectrum antibacterial activity. The minimum inhibitory concentration (MIC) range of MBBD for drug-resistant pathogenic bacteria was 64-256 μg/mL, with the lowest MIC observed for Acinetobacter baumannii (64 μg/mL), followed by Pseudomonas aeruginosa (MIC = 128 μg/mL). Klebsiella pneumoniae, Staphylococcus aureus, Enterococcus faecalis, and Escherichia coli were also sensitive, with an MIC of 256 μg/mL. The MIC range of MBBD against 10 foodborne pathogens was 12.5-100 μg/mL. Based on the results of this study, MBBD exhibits broad-spectrum antibacterial activity, particularly demonstrating excellent inhibitory effects against A. baumannii. MBBD will be good candidates for new antimicrobial drugs.
Citation
Zhang YD, Liu LY, Wang D, Yuan XL, Zheng Y, Wang Y (2023). Isolation and identification of bioactive compounds from Antrodia camphorata against ESKAPE pathogens. PloS one https://doi.org/10.1371/journal.pone.0293361 PMID: 37889913
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