4.5 Article

Production of antimicrobial metabolites against pathogenic bacteria and yeasts by Fusarium oxysporum in submerged culture processes

期刊

BIOPROCESS AND BIOSYSTEMS ENGINEERING
卷 44, 期 6, 页码 1321-1332

出版社

SPRINGER
DOI: 10.1007/s00449-021-02538-2

关键词

Antibiotics; Biopharmaceuticals; Antimicrobial agents; Antimicrobial resistance; Screening test

资金

  1. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico [CNPq 472153/2013-7, 310255/2012-0]
  2. FundacAo de Amparo a Pesquisa do Estado do Rio Grande do Sul [FAPERGS 16/2551-0000246-0]
  3. CoordenacAo de Apoio de Pessoal de Nivel Superior [CAPES3255/2013]

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The antimicrobial activity of metabolites produced by Fusarium oxysporum PR-33 in submerged culture was evaluated, showing broad-spectrum antimicrobial action. The major compounds identified were fusarinolic acid and its isomer, dehydrofusaric acid, and fusaric acid, with fusaric acid responsible for the antimicrobial activity. The cytotoxicity of the extracts was also evaluated and showed potential as antimicrobial agents.
The antimicrobial activity of the metabolites produced by Fusarium oxysporum PR-33 in submerged culture was evaluated against Gram-positive and Gram-negative bacteria and yeasts. Metabolites were determined by HPLC-DAD-MS/MS. An extract was obtained following the removal of mycelium by centrifugation and lyophilisation of the supernatant. The compounds in this extract demonstrated broad-spectrum antimicrobial action, with rates of inhibition between 60 and 80%, depending on the species and extract tested. The major compounds of the extracts were identified as fusarinolic acid and its isomer [56.9% flask extract (FE)] and 59.2% bioreactor extract (BE), dehydrofusaric acid (35.7% FE and 31.6% BE), and fusaric acid (6.5% FE and 1.1% BE). Fusaric acid has been shown to be responsible for antimicrobial activity. The cytotoxicity of the extracts was evaluated in culture of HEK-293 and SH-SY5Y animal cells and toxicity of these extracts was verified even in the lowest tested concentrations. Therefore, our results indicate that the compounds identified exhibit potential as antimicrobial agents. [GRAPHICS] .

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