Acmella oleracea (L.) R.K. Jansen essential oils: Chemical composition, antioxidant, and cytotoxic activities

Acmella oleracea is an important food and medicinal plant in the Amazon; it is used to treat toothaches, hepatitis, malaria, fever is also described as an anticancer plant. This work reports for the first time the comparison of chemical profiles, antioxidant, and cytotoxic capacities of inflorescenc...

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Veröffentlicht in:Biochemical systematics and ecology 2024-02, Vol.112, p.104775, Article 104775
Hauptverfasser: Jerônimo, Lucas Botelho, Lima Santos, Paulo Vinicius, Pinto, Laine Celestino, da Costa, Jamile Silva, Andrade, Eloisa Helena de Aguiar, Setzer, William N., da Silva, Joyce Kelly do Rosário, de Araújo, José Augusto Carvalho, Figueiredo, Pablo Luis B.
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Sprache:eng
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Zusammenfassung:Acmella oleracea is an important food and medicinal plant in the Amazon; it is used to treat toothaches, hepatitis, malaria, fever is also described as an anticancer plant. This work reports for the first time the comparison of chemical profiles, antioxidant, and cytotoxic capacities of inflorescence (INF) and leaf (LEA) A. oleracea essential oils (EOs) obtained by hydrodistillation (HD) and steam distillation (SD). The essential oils were obtained by hydrodistillation and steam distillation and analyzed by GC and GC-MS. The antioxidant potential was evaluated by the co-oxidation method of the β-carotene/linoleic acid, and the cytotoxic activity against healthy human embryonic kidney (HEK-293), gastric ascites (AGP-01), melanoma (SK-MEL-19), lung carcinoma (A549) malignant cell lines by the MTT method. The essential oils obtained from INF by HD and SD showed the highest yields (HD = 0.68; SD = 0.5%). The monoterpene hydrocarbons (0–49.97%) and sesquiterpene hydrocarbons (25.79–50.63%) were predominant in the analyzed oils. The main constituents (>10%) identified in the EO samples were caryophyllene oxide (0.3–28.11%), E-caryophyllene (6.71–27.31%), myrcene (0–25.03%), germacrene D (0.06–19.56%), guaiol (0–14.23%), 1-pentadecene (0–13.88%), and β-pinene (0–10.04%). The chemometric analysis displayed the formation of three distinct groups of chemical compositions as follows: group I, LEA EOs (HD and SD); group II, INF EO (HD); and group III, INF EO (SD). The INF (14.3%) and LEA (9.0%) EOs showed antioxidant action with no significant difference (p 
ISSN:0305-1978
DOI:10.1016/j.bse.2023.104775