Scientific Reports (Mar 2024)

Production and characterization of rhamnolipids by Pseudomonas aeruginosa isolated in the Amazon region, and potential antiviral, antitumor, and antimicrobial activity

  • Sidnei Cerqueira dos Santos,
  • Chayenna Araújo Torquato,
  • Darlisson de Alexandria Santos,
  • Alexandre Orsato,
  • Karoline Leite,
  • Juliana Mara Serpeloni,
  • Roberta Losi-Guembarovski,
  • Erica Romão Pereira,
  • André Luiz Dyna,
  • Mario Gabriel Lopes Barboza,
  • Matheus Hideki Fernandes Arakawa,
  • José Augusto Pires Bitencourt,
  • Sebastião da Cruz Silva,
  • Giulian César da Silva Sá,
  • Pamela Dias Rodrigues,
  • Cristina Maria Quintella,
  • Lígia Carla Faccin-Galhardi

DOI
https://doi.org/10.1038/s41598-024-54828-w
Journal volume & issue
Vol. 14, no. 1
pp. 1 – 13

Abstract

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Abstract Biosurfactants encompass structurally and chemically diverse molecules with surface active properties, and a broad industrial deployment, including pharmaceuticals. The interest is growing mainly for the low toxicity, biodegradability, and production from renewable sources. In this work, the optimized biosurfactant production by Pseudomonas aeruginosa BM02, isolated from the soil of a mining area in the Brazilian Amazon region was assessed, in addition to its antiviral, antitumor, and antimicrobial activities. The optimal conditions for biosurfactant production were determined using a factorial design, which showed the best yield (2.28 mg/mL) at 25 °C, pH 5, and 1% glycerol. The biosurfactant obtained was characterized as a mixture of rhamnolipids with virucidal properties against Herpes Simplex Virus, Coronavirus, and Respiratory Syncytial Virus, in addition to antimicrobial properties against Gram-positive bacteria (Staphylococcus aureus and Enterococcus faecium), at 50 µg/mL. The antitumor activity of BS (12.5 µg/mL) was also demonstrated, with potential selectivity in reducing the proliferation of breast tumor cells, after 1 min of exposure. These results demonstrate the importance of studying the interconnection between cultivation conditions and properties of industrially important compounds, such as rhamnolipid-type biosurfactant from P. aeruginosa BM02, a promising and sustainable alternative in the development of new antiviral, antitumor, and antimicrobial prototypes.

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