Chemical characterization and antimicrobial potential of the essential oil obtained from the leaves of Piper xylosteoides (Kunth) Steud.

被引:0
作者
Morais-Braga, Maria Flaviana Bezerra [1 ]
Leal, Antonio Linkoln Alves Borges [1 ]
de Oliveira, Alison Honorio [1 ]
Carneiro, Joara Nalyda Pereira [1 ]
dos Santos, Antonia Thassya Lucas [1 ]
Salesa, Debora Lima [1 ]
Fonseca, Victor Juno Alencar [1 ]
Rocha, Janaina Esmeraldo [1 ]
de Freitas, Thiago Sampaio [1 ]
Campinaa, Fabia Ferreira [1 ]
Costa, Maria do Socorro [1 ]
Pereira-Junior, Francisco Nascimento [2 ]
do Amaral, Wanderlei [3 ]
Rebelo, Ricardo Andrade [4 ]
da Silva, Luiz Everson [3 ]
Ribeiro-Filho, Jaime [5 ]
Coutinho, Henrique Douglas Melo [1 ]
机构
[1] Univ Reg Cariri, Pimenta, Cel Antonio Luis 1161, BR-63105000 Crato, CE, Brazil
[2] Univ Fed Cariri, Icaro Sousa Moreira 126, BR-63130025 Crato, CE, Brazil
[3] Univ Fed Parana, 15 Novembro 1299, BR-80060000 Curitiba, PR, Brazil
[4] Univ Reg Blumenau, Antonio de Veiga140, BR-89030903 Blumenau, SC, Brazil
[5] Fundacao Oswaldo Cruz FIOCRUZ, Inst Goncalo Moniz IGM, Waldemar Falcao 121, BR-40296710 Salvador, BA, Brazil
关键词
Piper xylosteoides; Piperaceae; Leaves; Essential oil; Antimicrobial; Antipleomorfism; ANTIBACTERIAL ACTIVITY;
D O I
10.1016/j.sajb.2022.03.017
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Antimicrobial resistance has emerged as a health public concern as the combat of resistant microorganisms has become increasingly challenging. Thus, considering the urgent need of developing new therapeutic alternatives, the present study aimed to investigate the chemical composition and evaluate the antimicrobial and drug enhanc-ing potential of the essential oil obtained from the leaves of Piper xylosteoides (Kunth) Steud. (EOLPx) against clini-cally relevant bacterial and fungal strains. Following collection, the leaves were dried at room temperature in a dark environment and the extraction was performed by hydrodistillation using a modified Clevenger-type appara-tus. The oil was dried with anhydrous magnesium sulfate, filtered, concentrated in rotary evaporator, and 5 mL ali-quots were stored in a refrigerator. The oil yield was expressed as a percentage of the dry weight of the plant material (w/w). The chemical characterization was performed by gas chromatography coupled to mass spectrome-try (GC-MS) and flame ionization detector (FID). The antimicrobial analysis was carried out using the broth micro -dilution and half-maximal inhibitory concentrations (IC50), minimum inhibitory concentrations (MIC), and minimum fungicidal concentrations (MFC) were deterimined by subculture. To evaluate the drug enhancing potential, subinhibitory concentrations (MFC/16 and MIC/8) of the essential oil were combined with the antifungal drug fluconazole and the antibiotics norfloxacin, gentamicin and erythromycin. The impact of the in vitro treat-ment on fungal virulence was determined by observing morphological transition in wet chambers. The chemical analysis identified the presence of monoterpenes (58.8%) and sesquiterpenes (35.3%), including the monoterpene hydrocarbon myrcene (27.5%) as the major component. The in vitro treatment with the essential oil caused little impact on C. albicans growth, showing a weak fungicidal effect against the URM 4387 strain (at 8192 mg/mL), while the INCQS 40006 strain was not affected. In addition, the association of the EOLPx with fluconazole did not enhance the antifungal effect of this drug against none of the C. albicans strains. However, both the natural product and fluconazole inhibited fungal pleomorphism by both strains. While the essential oil MIC against all bacterial strains was higher than 813 mg/mL, it was found to enhance the activity of gentamicin against the SA and EC iso-lates as well as to potentiate the activity of erythromycin against the EC isolate. On the other hand, antagonistic effects were observed from its association with norfloxacin for both strains. In conclusion, the EOLPx showed anti-biotic-enhancing effects in addition to inhibiting C. albicans morphological transition. Nevertheless, further research is required to better characterize the antimicrobial effects and mechanisms of action by the essential oil components.(c) 2022 SAAB. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:328 / 336
页数:9
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