TY - JOUR
T1 - Bioactives of Melipona rufiventris Propolis: Exploring its Antimicrobial, Anti‐Inflammatory, and Antioxidant Activities
AU - Santini, Amanda Tristão
AU - Pinto, Rayra Annara Otacílio
AU - Lazarini, Josy Goldoni
AU - de Morais, Daniel Vieira
AU - Fernandes, Anna Maria Alves de Piloto
AU - Franchin, Marcelo
AU - de Carvalho, Patrícia Lunardelli Negreiros
AU - Pressete, Carolina Girotto
AU - Rosalen, Pedro Luiz
AU - de Alencar, Severino Matias
AU - Carvalho, Patrícia de Oliveira
AU - Ionta, Marisa
AU - Ikegaki, Masaharu
N1 - Publisher Copyright:
© 2024 Wiley-VHCA AG, Zurich, Switzerland.
PY - 2024/6
Y1 - 2024/6
N2 - This study explores the potential of propolis, a resinous substance produced by bees, from Melipona rufiventris species. With its composition encompassing resin, wax, pollen, and soil, propolis holds historical significance in traditional medicine within tropical regions. This research is driven by the scarcity of information surrounding M. rufiventris propolis, prompting an investigation into its chemical constituents, in vivo toxicity, and antimicrobial, antioxidant, and anti-inflammatory properties. This exploration could potentially uncover novel applications for this natural product, bolstering both meliponiculture practices and the preservation of native bee populations. The propolis was sampled in Cabo Verde-MG and underwent ethanolic extraction to yield an extract (EEP) for analysis. Chemical assessments (Folin-Ciocalteau, and UHPLC-HRMS) revealed the presence of polyphenols, including flavonoids. The EEP demonstrated higher antimicrobial activity against Gram-positive bacteria and exhibited efficacy against multiresistant strains isolated from complex wounds. Synergistic interactions with commercial antibiotics were also observed. Furthermore, anti-inflammatory evaluations showcased the EEP′s potential in reducing NF-kB activation and TNF-α release at non-toxic concentrations. Despite these promising biological activities, the EEP exhibited no antiproliferative effects and demonstrated safety in both the MTS assay and the G. mellonella model. Collectively, these findings highlight the M. rufiventris propolis extract as a valuable reservoir of bioactive compounds with multifaceted potential.
AB - This study explores the potential of propolis, a resinous substance produced by bees, from Melipona rufiventris species. With its composition encompassing resin, wax, pollen, and soil, propolis holds historical significance in traditional medicine within tropical regions. This research is driven by the scarcity of information surrounding M. rufiventris propolis, prompting an investigation into its chemical constituents, in vivo toxicity, and antimicrobial, antioxidant, and anti-inflammatory properties. This exploration could potentially uncover novel applications for this natural product, bolstering both meliponiculture practices and the preservation of native bee populations. The propolis was sampled in Cabo Verde-MG and underwent ethanolic extraction to yield an extract (EEP) for analysis. Chemical assessments (Folin-Ciocalteau, and UHPLC-HRMS) revealed the presence of polyphenols, including flavonoids. The EEP demonstrated higher antimicrobial activity against Gram-positive bacteria and exhibited efficacy against multiresistant strains isolated from complex wounds. Synergistic interactions with commercial antibiotics were also observed. Furthermore, anti-inflammatory evaluations showcased the EEP′s potential in reducing NF-kB activation and TNF-α release at non-toxic concentrations. Despite these promising biological activities, the EEP exhibited no antiproliferative effects and demonstrated safety in both the MTS assay and the G. mellonella model. Collectively, these findings highlight the M. rufiventris propolis extract as a valuable reservoir of bioactive compounds with multifaceted potential.
UR - http://dx.doi.org/10.1002/cbdv.202302084
U2 - 10.1002/cbdv.202302084
DO - 10.1002/cbdv.202302084
M3 - Article
SN - 1612-1872
VL - 21
JO - Chemistry and Biodiversity
JF - Chemistry and Biodiversity
IS - 6
M1 - e202302084
ER -