| Literature DB >> 31947642 |
Rafael Pereira da Cruz1, Thiago Sampaio de Freitas1, Maria do Socorro Costa1, Antonia Thassya Lucas Dos Santos1, Fábia Ferreira Campina1, Raimundo Luiz Silva Pereira1, José Weverton Almeida Bezerra1, Lucindo José Quintans-Júnior2, Adriano Antunes De Souza Araújo2, José Pinto De Siqueira Júnior3, Marcello Iriti4, Elena Maria Varoni5, Irwin Rose Alencar De Menezes6, Henrique Douglas Melo Coutinho6, Maria Flaviana Bezerra Morais-Braga1.
Abstract
Efflux pumps are proteins present in the plasma membrane of bacteria, which transport antibiotics and other compounds into the extracellular medium, conferring resistance. The discovery of natural efflux pump inhibitors is a promising alternative. α-Bisabolol is a sesquiterpene isolated from several plants such as Matricaria chamomilla L. and has important properties such as antibacterial and anti-inflammatory activity. Currently, the formation of inclusion complexes with β-Cyclodextrin has been used for improving the physicochemical characteristics of the host molecule. This study evaluated the effect of α-Bisabolol, in isolation and in complexation with β-Cyclodextrin, as TetK and NorA efflux pump inhibitors in Staphylococcus aureus strains. The minimum inhibitory concentration (MIC) was determined. Subsequently, inhibitory activity over the pumps was observed by an MIC reduction for the antibiotics, by using subinhibitory concentrations (MIC/8) in combination with tetracycline and norfloxacin. The MIC of the compounds was ≥1024 μg/mL. α-Bisabolol potentiated the action of tetracycline and reduced the MIC of norfloxacin to a clinically relevant concentration. The complexed substance showed synergism however, the effect of the isolated α-Bisabolol was superior to the complex. These results indicate α-Bisabolol is a potential substance to be used as an efflux pump inhibitor.Entities:
Keywords: antibiotics; bacteria; resistance; sesquiterpene
Year: 2020 PMID: 31947642 PMCID: PMC7168184 DOI: 10.3390/antibiotics9010028
Source DB: PubMed Journal: Antibiotics (Basel) ISSN: 2079-6382
Determination of the minimum inhibitory concentration (μg/mL) of α-Bisabolol, α-Bisabolol/β-CD, β-Cyclodextrin, and Chlorpromazine.
| Strain | SA IS-58 | SA 1199B |
|---|---|---|
| α-Bisabolol | ≥1024 | ≥1024 |
| α-Bisabolol/β-CD | ≥1024 | ≥1024 |
| β-Cyclodextrin | ≥1024 | ≥1024 |
| Chlorpromazine | 128 | 128 |
Legend: SA: Staphylococcus aureus, α-Bisabolol/β-CD: α-Bisabolol and β-Cyclodextrin inclusion complex.
Figure 1Effect of the compounds associated with tetracycline against Staphylococcus aureus IS-58. SA: Staphylococcus aureus, α-Bisa: Isolated α-Bisabolol, α-Bisa: β-CD: α-Bisabolol and β-Cyclodextrin inclusion complex, β-CD: β-Cyclodextrin. **** statistically significant value with p < 0.0001.
Figure 2Effect of the compounds associated with norfloxacin against Staphylococcus aureus 1199B. SA: Staphylococcus aureus, α-Bisa: isolated α-Bisabolol, α-Bisa: β-CD: α-Bisabolol and β-Cyclodextrin inclusion complex, β-CD: β-Cyclodextrin. **** statistically significant value with p < 0.0001.