Improved antimutagenic effect of Pyrostegia venusta (Ker Gawl.) Miers nanostructured extract in liposome and polymeric nanoparticle

Authors

  • Patrícia Zanco Postgraduate Program in Environmental Sciences (PPGCAM), Federal University of Mato Grosso, Sinop, Mato Grosso, Brazil https://orcid.org/0000-0002-7373-254X
  • Stela Regina Ferrarini Postgraduate Program in Health Sciences (PPGCS), Federal University of Mato Grosso, Sinop, Mato Grosso, Brazil
  • Letícia Cruz Laboratory of Pharmaceutical Technology, Postgraduate Program in Pharmaceutical Sciences, Health Sciences Center, Federal University of Santa Maria, Santa Maria, Rio Grande do Sul, Brazil https://orcid.org/0000-0001-6230-4577
  • Luana Mota Ferreira Laboratory of Pharmaceutical Technology, Postgraduate Program in Pharmaceutical Sciences, Health Sciences Center, Federal University of Santa Maria, Santa Maria, Rio Grande do Sul, Brazil
  • Rogério de Campos Bicudo Brazilian Agricultural Research Corporation – EMBRAPA, Sinop, Mato Grosso, Brazil
  • Larissa Cavalheiro Institute of Natural, Humanities and Social Sciences, Federal University of Mato Grosso, Sinop, Mato Grosso, Brazil https://orcid.org/0000-0002-0655-4085
  • Geraldo Magela Vieira Junior Chemistry Department, Federal University of Piauí, Teresina, Piauí, Brazi
  • Marina Mariko Sugui Postgraduate Program in Environmental Sciences (PPGCAM), Federal University of Mato Grosso, Sinop, Mato Grosso, Brazil

DOI:

https://doi.org/10.1590/s2175-97902022000X2e20234

Keywords:

Pyrostegia venusta, Flavonoids, Nanotechnology, Micronucleus test

Abstract

Pyrostegia venusta (Ker Gawl.) Miers, popularly known as “Cipó-de São-João”, has been used in traditional medicine for its therapeutic properties. Nanotechnology is able to enhance the pharmacological activity of plant extracts. In this context, liposomes and polymeric nanoparticles containing P. venusta ethanolic extract were developed and then physico-chemically characterized to evaluate the mutagenic/antimutagenic effects of P. venusta. In addition, transaminases and serum creatinine were biochemically analyzed for liver and renal damage, respectively. The micronucleus test was performed with male Swiss mice treated orally for 15 consecutive days with free extracts and nanostructured with P. venusta, and then intraperitoneally with N-ethyl-N-nitrosurea (50 mg/kg) on the 15th day of treatment. Micronucleated polychromatic erythrocytes (MNPCE) were evaluated in bone marrow. There was a significant reduction in the frequency of MNPCE (LPEPV = 183% and NPEPV = 114%, p < 0.001), indicating antimutagenic potential of the nanostructured extracts with P. venusta. The groups treated with only nanostructured extract did not show an increase in MNPCE frequency, and biochemical analyzes showed no significant difference between treatments. The liposomes and polymeric nanoparticles containing Pyrostegia venusta ethanolic extract showed biological potential in preventing the first step of carcinogenesis under the experimental conditions.

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References

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Published

2022-12-23

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Original Article

How to Cite

Improved antimutagenic effect of Pyrostegia venusta (Ker Gawl.) Miers nanostructured extract in liposome and polymeric nanoparticle. (2022). Brazilian Journal of Pharmaceutical Sciences, 58. https://doi.org/10.1590/s2175-97902022000X2e20234