Antibacterial activity of the essential oil of Piper tuberculatum jacq. fruits against multidrug-resistant strains: inhibition of efflux pumps and β-lactamase

Abstrakt

Antimicrobial resistance has become a growing public health concern in recent decades, demanding a search for new effective treatments. Therefore, this study aimed to elucidate the phytochemical composition and evaluate the antibacterial activity of the essential oil obtained from the fruits of Piper tuberculatum Jacq. (EOPT) against strains carrying different mechanisms of antibiotic resistance. Phytochemical analysis was performed using gas chromatography–mass spectrometry (GC/MS). The antibacterial activity of EOPT and its ability to inhibit antibiotic resistance was evaluated through the broth microdilution method. The GC-MS analysis identified 99.59% of the constituents, with β-pinene (31.51%), α-pinene (28.38%), and β-cis-ocimene (20.22%) being identified as major constituents. The minimum inhibitory concentration (MIC) of EOPT was determined to assess its antibacterial activity against multidrug-resistant strains of Staphylococcus aureus (IS-58, 1199B, K2068, and K4100). The compound showed a MIC of ≥ 1024 μg/mL, suggesting a lack of intrinsic antibacterial activity. However, when the EOPT was associated with antibiotics and EtBr, a significant decrease in antibiotic resistance was observed, indicating the modulation of efflux pump activity. This evidence was corroborated with the observation of increased fluorescent light emission by the bacterial strains, indicating the involvement of the NorA and MepA efflux pumps. Additionally, the significant potentiation of ampicillin activity against the S. aureus strain K4414 suggests the β-lactamase inhibitory activity of EOPT. These results suggest that the essential oil from P. tuberculatum fruits has antibiotic-enhancing properties, with a mechanism involving the inhibition of efflux pumps and β-lactamase in MDR S. aureus strains. These findings provide new perspectives on the potential use of EOPT against antibiotic resistance and highlight the importance of Piper species as sources of bioactive compounds with promising therapeutic activities against MDR bacteria. Nevertheless, further preclinical (in vivo) studies remain necessary to confirm these in vitro-observed results.

Autorzy

Lucas Yure Santos da Silva
Lucas Yure Santos da Silva
Cicera Laura Roque Paulo
Cicera Laura Roque Paulo
Talysson Felismino Moura
Talysson Felismino Moura
Daniel Sampaio Alves
Daniel Sampaio Alves
Renata Torres Pessoa
Renata Torres Pessoa
Isaac Moura Araújo
Isaac Moura Araújo
Cícera Datiane de Morais Oliveira-Tintino
Cícera Datiane de Morais Oliveira-Tintino
Saulo Relison Tintino
Saulo Relison Tintino
Carla de Fatima Alves Nonato
Carla de Fatima Alves Nonato
José Galberto Martins Da Costa
José Galberto Martins Da Costa
Jaime Ribeiro-Filho
Jaime Ribeiro-Filho
Henrique Douglas Melo Coutinho
Henrique Douglas Melo Coutinho
Przemysław Mitura
Przemysław Mitura
Marek Bar
Marek Bar
Irwin Rose Alencar De Menezes
Irwin Rose Alencar De Menezes
artykuł
Plants-Basel
Angielski
2023
12
12
2377
otwarte czasopismo
CC BY 4.0 Uznanie autorstwa 4.0
ostateczna wersja opublikowana
w momencie opublikowania
2023-05-28
70
4,5
0
0