Abstract

Essential oils are a subject of study due to the heterogeneity of their components, which vary according to the genus and species of the plant material. The objective of this study was the physicochemical characterization and bioactive components of the essential oil (EO) extracted from wild punamuña (Satureja Boliviana) and runtuhuayra (Clinopodium Weberbaueri (Mansf.) Govaerts) herbs from high Andean areas of southern Peru. The extraction of the EO from both species was carried out using the steam distillation technique, the density characterization using gravimetric methods and the acidity, peroxide index and refraction by analytical methods recommended by the Norma Tecnica Peruana (NTP). The bioactive compounds were quantified using gas chromatography coupled to a mass spectrometry detector (GC-MS). A better EO performance was obtained from punañuna 0.38% (w/w) compared to runtuhuayra 0.28% (w/w); In both samples, the density and refractive index were similar values (0.93-0.94) g/mL and (1.528-1.520) (p>0.05) respectively; However, the acid and peroxide index showed a significant difference between the samples studied (p<0.05). 37 bioactive compounds synthesized as secondary metabolites in Satureja Boliviana EO were identified, with the majority being monoterpenes (62%) highlighted by menthone, L-menthone, pulegone and 3-cyclohexen-1-one. 2-isopropyl-5-methyl, linalool, α-cadinene and α-cadinol; Meanwhile, in the EO of Clinopodium Weberbaueri, 28 compounds were detected and quantified, in which monoterpenes predominate (61%) made up of pulegone (45.67%); isomenthol (13.85%), menthone (6.05%), carvacrol (5.39%), and also D-limonene; o-cymene; 3-octanol; β-pinene and α-terpineol successively. This characterization of the EO of the aforementioned samples reveals recent a new additive or ingredient alternative for the industry due to its biological value associated with antioxidant, antimicrobial, anti-inflammatory activities and psychotherapeutics.

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