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1.
Rev. bras. farmacogn ; 29(4): 477-482, July-Aug. 2019. tab, graf
Article in English | LILACS | ID: biblio-1042275

ABSTRACT

Abstract Previous pre-clinical studies demonstrated that a valepotriates enriched fraction from Valeriana glechomifolia F.G. Mey., Caprifoliaceae, was effective against lipopolysaccharide from Escherichia coli (LPS)-induced sickness behavior as well as significantly decreased the cortical expression of pro inflammatory cytokines interleukin-1β and tumor necrosis factor-α. Other studies revealed anti-inflammatory properties of V. wallichii and V. amurensis. These findings open up new perspectives for Valeriana genus pharmacology, once it has been commonly associated to sedative and anxiolytic properties. The aim of this study was to investigate the antichemotactic, antinociptive and anti-inflammatory activities of a valepotriate-enriched fraction obtained from aerial and subterranean parts of V. glechomifolia submitted to supercritical CO2 extraction. The biological activities were assessed by means of formalin test in CF1 mice and Wistar rat's leukocytes migration assay (modified Boyden chamber method). Valepotriate-enriched fraction (1, 10 and 30 mg/kg, p.o.) inhibited the nociceptive behavior in the late phase of the formalin test in a dose dependent manner. The effect of the valepotriate-enriched fraction highest dose was comparable with that of diclofenac 50 mg/kg (p.o.). Valepotriate-enriched fraction (0.1-1 µg/ml) inhibited the leukocyte migration induced by lipopolysaccharide from Escherichia coli in a concentration dependent manner. This antichemotatic effect was comparable with that of indomethacin (0.1-1 µg/ml) and better than diclofenac (1 µg/ml) effect. This study demonstrated for the first time that a valepotriate-enriched fraction obtained from V. glechomifolia display a peripheral anti-inflammatory like activity.

2.
Bol. latinoam. Caribe plantas med. aromát ; 15(3): 164-174, May. 2016. ilus, tab
Article in English | LILACS | ID: biblio-907532

ABSTRACT

Chemical composition of essential oils from four Stenachaenium species from South Brazil were established by gas chromatography coupled with mass spectrometry (GC/MS). The major compounds identified in the oil of S. megapotamicum were a coumarin derivative, 2H-1-benzopyran-2-one,7-(3-methylbutoxy) (24.0 percent), beta-bisabolene (12.8 percent) and thymol methyl ether (7.1 percent). The oil of S. adenanthum contained mainly pogostol (14.0 percent). S. riedelli oil showed significant presence of aliphatic compounds, with predominance of hexadecanoic acid in all samples (leaves, inflorescence and leaves collected during of inflorescence period). Hexadecanoic acid (23.8 percent) was also the main component in S. macrocephalum. Concerning antichemotactic activity, all the oil samples tested showed a significant leukocyte migration inhibition compared to chemotactic stimulant (lipopolysaccharide from Escherichia coli - LPS), at concentrations of 1 to 5 μg/mL, except for S. adenanthum. These results suggest that the essential oils of some Stenachaenium species could inhibit acute inflammatory process, because the migration of neutrophils occurs mainly in the early inflammatory process.


Se estableció la composición química de los aceites esenciales de cuatro especies de Stenachaenium del Sur de Brasil mediante cromatografía de gases acoplada a espectrometría de masas (CG/EM). Los compuestos mayoritarios identificados en el aceite de S. megapotamicum fueron: un derivado de cumarina, 2H-1-benzopiran-2-ona,7- (3-metilbutoxi) (24,0 por ciento), beta-bisaboleno (12,8 por ciento) y éter metil timol (7,1 por ciento). El aceite de S. adenanthum presentó principalmente pogostol (14,0 por ciento). El aceite de S. riedelli mostró una significativa presencia de compuestos alifáticos, con predominio de ácido hexadecanoico en todas las muestras (hojas, inflorescencias y hojas recolectadas durante del período de la inflorescencia). También el ácido hexadecanoico (23,8 por ciento) fue el principal componente en S. macrocephalum. En cuanto a la actividad antichemotaxica, todas las muestras de aceites ensayadas a concentraciones de 1 a 5 μg/ml, excepto para S. adenanthum, mostraron una inhibición significativa en la migración de leucocitos en comparación con agente quimiotáctico (lipopolisacárido de Escherichia coli – LPS). Estos resultados sugieren que los aceites esenciales provenientes de diferentes especies de Stenachaenium podrían inhibir procesos inflamatorios agudos, debido a que la migración de los neutrófilos se produce principalmente en el proceso inflamatorio temprano.


Subject(s)
Asteraceae/chemistry , Chemotaxis, Leukocyte , Oils, Volatile/chemistry , Oils, Volatile/pharmacology , Chromatography, Gas , Neutrophils , Terpenes/analysis
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