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Wound healing properties of Copaifera paupera in diabetic mice.

Jorge Luis AmorimJanaína de Barros FigueiredoAna Claudia Fernandes AmaralEliane Gouvêa de Oliveira BarrosCélia PalmeroMaria Athana MPalantinosAline de Souza RamosJosé Luiz Pinto FerreiraJefferson Rocha de Andrade SilvaClaudia Farias BenjamimSilvia Luciane BassoLuiz Eurico NasciuttiPatricia Dias Fernandes
Published in: PloS one (2017)
Copaifera oleoresin is one of the most used natural products in popular medicine all over the world. Among other effects (i.e., anti-inflammatory, antinociceptive, microbicidal) one of the most well-known is its wound healing capacity. However, the mechanism by which the oleoresin presents its effect is still not clear. In this study, our aim was to evaluate the wound healing capacity of oleoresin obtained from Copaifera paupera, its mechanism of action and identify its major components. For these purposes, diabetic Swiss Webster mice were topically treated with oleoresin (100, 150 or 200 mg/kg) for 14 consecutive days after an excision was performed in the back of the mice. Cytokines, wound retraction and histological evaluation were conducted at 3, 7 and 10 days (for cytokines); 0, 3, 7, 10 and 14 days (for wound retraction); and 7 and 14 days (for histological evaluation). Our data indicate that oleoresin significantly reduced production of MCP-1 and TNF-α at days 7 and 10 post-excision and increased IL-10 production at both days. All treatments demonstrated an effect similar or higher to that in collagenase-treated mice. Histological evaluations demonstrated that higher dose treatment resulted in better resolution and closure of the wound and higher levels of collagen deposition and indexes of re-epithelialization even when compared with the collagenase-treated group. The treatment with oleoresin from Copaifera paupera demonstrated that it is even better than an ointment routinely used for improvement of wound healing, suggesting this oleoresin as an option for use in diabetic patients.
Keyphrases
  • wound healing
  • anti inflammatory
  • high fat diet induced
  • rheumatoid arthritis
  • type diabetes
  • machine learning
  • adipose tissue
  • insulin resistance
  • newly diagnosed