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Chemical composition and antibacterial effects of Etlingera elatior (Jack) R.M. Smith against Staphylococcus aureus efflux pumps

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논문

Chemical composition and antibacterial effects of Etlingera elatior (Jack) R.M. Smith against Staphylococcus aureus efflux pumps

학술지

Chemico-biological interactions

저자명

de Sousa Ferreira, Felipe; de Araú jo Neto, José Bezerra; de Morais Oliveira-Tintino, Cí cera Datiane; de Araú jo, Ana Carolina Justino; Ribeiro-Filho, Jaime; Freitas, Priscilla Ramos; Araú jo, Isaac Moura; Lima, Micheline Azevedo; de Azevedo, Francisco Roberto; Tintino, Saulo Relison; Coutinho, Henrique Douglas Melo; Navarro, Daniela Maria do Amaral Ferraz

초록

Multidrug resistance is a significant health problem worldwide, with increasing mortality rates, especially in the last few years. In this context, a consistent effort has been made to discover new antibacterial agents, and evidence points to natural products as the most promising source of bioactive compounds. This research aimed to characterize the antibacterial effect of the essential oil of Etlingera elatior (EOEE) and its major constituents against efflux pump-carrying Staphylococcus aureus strains. The essential oil was extracted from fresh inflorescences by hydrodistillation. Chemical analysis was performed using gas chromatography coupled to mass spectrometry (GC-MS) and gas chromatography equipped with a flame ionization detector (GC-FID). The strains RN-4220, 1199B, IS-58, and 1199 of S. aureus were used to evaluate the antibacterial activity and the inhibition of efflux pumps. A total of 23 compounds were identified, including dodecanal and 1-dodecanol as major compounds. EOEE and dodecanal showed weak activity against the strains, while 1-dodecanol inhibited bacterial growth at low concentrations, indicating strong antibacterial activity. In addition, this compound potentiated the activity of norfloxacin against S. aureus 1199. In conclusion, 1-dodecanol was identified as the most effective compound of EOEE, showing significant potential to be used in antibacterial drug development.

발행연도

2023

발행기관

Elsevier

ISSN

0009-2797

ISSN

1872-7786

386

페이지

pp.110751

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1 2023-12-11

논문; 2023-12-01

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