Bruyère commune: Calluna vulgaris (L.) Hull. ou Calluna vulgáris Salisb. (Ericaceae)
Formation continue Matière médicale pratique
First Online:
- 191 Downloads
Preview
Unable to display preview. Download preview PDF.
Bibliographie
- 1.Allais DP, Chulia AJ, Kaouadji M, et al. (1995) C3-Desoxycallunin and 2”-Acetylcallunin: two minor 2,3-dihydroflavonoid glucosides from Calluna vulgaris. Phytochemistry 39(2): 427–430CrossRefGoogle Scholar
- 2.Allais DP, Simon A, Bennini B, et al. (1991) Flavone and flavonol glycosides from Calluna vulgaris. Phytochemistry 30(9): 3099–3101CrossRefGoogle Scholar
- 3.Barker J (2001) The medicinal flora of Britain & Northwestern Europe. Winter Press, KentGoogle Scholar
- 4.Bézanger-Beauquesne L, Pinkas M, Torck M, Trotin F (1996) Plantes médicinales des régions tempérées. Maloine Ed, Paris, p. 249Google Scholar
- 5.Blumenthal M, Goldberg A, Brinckmann J (eds) (2000) Herbal medicine. Expanded commission E monographs. American Botanical Council, Austin, TXGoogle Scholar
- 6.Bradley P (Ed) (1992) British herbal compendium, vol 1, BHMA Publishing, Exeter, pp. 211–213Google Scholar
- 7.Brinker F (Ed) (1998) Herb contraindications and drug interactions. Eclectic Medical Publications, Sandy, ORGoogle Scholar
- 8.Bruneton J (2009) Pharmacognosie, phytochimie, plantes medicinales. Tec & Doc/Lavoisier, ParisGoogle Scholar
- 9.EFSA (2009) Scientific Opinion on the substantiation of health claims related to Calluna vulgaris (L.) Hull. and mood balance and ability to fall asleep (ID2815) pursuant to article 13(1) of regulation (EC) no 1924/20061 EFSA Panel on dietetic products, nutrition and allergies (NDA). EFSA Journal 7(9): 1283Google Scholar
- 10.ESCOP (European Scientific Cooperation on Phytotherapy) (2003) ESCOP monographs. Thieme Verlag, StuttgartGoogle Scholar
- 11.Filip A, Clichici S, Daiviciu D, et al. (2011) Chemopreventive effects of Calluna vulgaris and Vitis vinifera extracts on UVB-induced skin damage in SKH-1 hairless mice. J Physiol Pharmacol 62(3): 385–392PubMedGoogle Scholar
- 12.Filip GA, Psotescu ID, Tatomir C, et al. (2012) Calluna vulgaris extract modulates NF-κB/ERK signaling pathway and matrix metalloproteinase expression in SKH-1 hairless mice skin exposed to ultraviolet B irradiation. J Physiol Pharmacol 63(4): 423–432PubMedGoogle Scholar
- 13.Girre L (2001) Les plantes et les médicaments. Delachaux et Niestlé, Lausanne, Paris, p. 166Google Scholar
- 14.Gordien AY, Gray AI, Ingleby K, et al. (2010) Activity of Scottish plant, lichen and fungal endophyte extracts against Mycobacterium aurum and Mycobacterium tuberculosis. Phytother Res 24(5): 692–698PubMedGoogle Scholar
- 15.Jalal MAF, Read D, Haslam E (1982) Phenolic composition and its seasonal variation in Calluna vulgaris. Phytochemistry 21(6): 1397–1401CrossRefGoogle Scholar
- 16.La santé par les plantes (ouvrage collectif) (2007) Selection du Readers Digest/Vidal, ParisGoogle Scholar
- 17.Madaus G (1938) Lehrbuch der biologischen Heilmittel. Thieme, LeipzigGoogle Scholar
- 18.Najid A, Simon A, Delage C, et al. (1992) A Calluna vulgaris extract 5-lipoxygenase inhibitor shows potent antiproliferative effects on human leukemia HL-60 cells. Eicosanids 5(1): 45–51Google Scholar
- 19.Orhan I, Kupeli E, Terzioðlu S, Yesilada E (2007) Bioassay-guided isolation of kaempferol-3-O-beta-D-galactoside with anti-inflammatory and antinociceptive activity from the aerial part of Calluna vulgaris (L.) J Ethnopharmacol 114(1): 32–37PubMedCrossRefGoogle Scholar
- 20.Pavlovic RD, Lakusic B, Doslov-Kokorus Z, Kovacevic N (2009) Arbutin content and antioxidant activity of some Ericaceae species. Pharmazie 64(10): 656–659PubMedGoogle Scholar
- 21.Perde-Schrepler M, Chereches G, Brie L, et al. (2011) Photoprotective effect of Calluna vulgaris extract against UVB-induced phototoxicity in human immortalized keratinocytes. J Environ Pathol Toxicol Oncol 30(4): 323–331PubMedCrossRefGoogle Scholar
- 22.Rieger G, Muller M, Guttenberger H, Bucar F (2008) Amount of antioxidative compounds in herbs of Calluna vulgaris (L.) Hull originating from three different altitudes. Planta Medica: natural products and medicinal plant research. J Agric Food Chem 56(19): 9080–9086PubMedCrossRefGoogle Scholar
- 23.Saaby L, Rasmussen HB, Jäger AK (2009) MAO-A inhibitory activity of quercetin from Calluna vulgaris (L.) Hull. J Ethnopharmacol 121(1): 178–181PubMedCrossRefGoogle Scholar
- 24.Simon A, Chulia AJ, Kaouadji M, et al. (1993) Further flavonoid glycosides from Calluna vulgaris. Phytochemistry 32(4): 1045–1049CrossRefGoogle Scholar
- 25.Simon A, Chulia AJ, Kaouadji M, et al. (1993) Two flavonol 3-[triacetylarabinosyl(1-6)glucosides] from Calluna vulgaris. Phytochemistry 33(5): 1237–1240CrossRefGoogle Scholar
- 26.Simon A, Chulia AJ, Kaouadji M, Delage C (1994) Quercetin 3-[triacetylarabinosyl (1→6)galactoside] and chromones from Calluna vulgaris. Phytochemistry 36(4): 1043–1045PubMedCrossRefGoogle Scholar
- 27.Sticher O, Soldati F, Lehmann D (1979) High-performance liquid chromatographic separation and quantitative determination of arbutin, methylarbutin, hydroquinone and hydroquinone monomethylether in Arctostaphylos, Bergenia, Calluna and Vaccinium species. Planta Medica 35: 253–261PubMedCrossRefGoogle Scholar
- 28.Szakiel A, Niżyński B, Pączkowski C (2012) Triterpenoid profile of flower and leaf cuticular waxes of heather Calluna vulgaris. Nat Prod Res 26(11): 1–4CrossRefGoogle Scholar
- 29.von Bruchhausen F (Ed) (1992) Hager’s Handbuch, Band 1–10. Springer Verlag, Berlin, HeidelbergGoogle Scholar
Références web
- 30.
- 31.
- 32.
- 33.
Copyright information
© Springer-Verlag France 2013