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dalbergia congestiflora/消炎(药

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Dalbergia odorifera T. Chen (Leguminosae) grows in Central and South America, Africa, Madagascar, and Southern Asia. D. odorifera possesses many useful pharmacological properties, such as antioxidative and anti-inflammatory activities in various cell types. 4-Methoxydalbergione (MTD) and
Topical anti-inflammatory activity of Dalbergia lanceolaria Linn. bark ethanol extract was demonstrated in albino mice using TPA-, EPP- and AA-induced ear edema models. The systemic activity of extract was confirmed using acute and sub-acute anti-inflammatory models in albino rats. The ethanol
OBJECTIVE Isoliquiritigenin (ISL), one of the major constituents of Dalbergia odorifera T. Chen (Leguminosae), is reported to exert anti-inflammatory effects, but the relevant anti-inflammatory mechanisms are not completely understood. Heme oxygenase-1 (HO-1) has been proven to be involved in the
Dalbergia odorifera T. Chen (Leguminosae) has traditionally been used as an ingredient in East Asian medicines to treat various diseases. In the present study, 4,2',5'-trihydroxy-4'-methoxychalcone (TMC), a biologically active chalcone isolated from the heartwood of D. odorifera, inhibited
BACKGROUND The decoction of the leaves of Dalbegia saxatilis is used in Traditional Medicine for various ailments such as cough, small pox, skin lesions, bronchial ailments and toothache. The study is aimed at evaluating the analgesic, anti-inflammatory, and antipyretic effects of D. saxatilis to
BACKGROUND Aqueous root extract of Dalbergia saxatilis, Hook, f., (Leguminosae) (DS) is reported useful for toothache, pains, and fever, but not scientifically proven. OBJECTIVE This study determined its effectiveness in pain, inflammation, and fever, applying scientific models. METHODS Swiss mice

Anti-inflammatory activity of Dalbergia sissoo leaves.

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The possible anti-inflammatory activity of the 90% ethanolic extract of Dalbergia sissoo leaves (DSELE) was studied in different models of inflammation in rats after oral administration at doses of 100, 300 and 1000 mg/kg. DSELE significantly inhibited carrageenin, kaolin and nystatin-induced paw
Three new flavonoids, (3R)-4'-methoxy-2',3,7-trihydroxyisoflavanone (11), 7-methoxy-3,3',4',6-tetrahydroxyflavone (18), and 2',7-dihydroxy-4',5'-dimethoxyisoflavone (22), were isolated from the heartwood of Dalbergia odorifera T. Chen. (Leguminosae), together with twenty-two known compounds,
OBJECTIVE To investigate the antioxidant and anti-inflammatory activity of orally administered methanolic leaf extract of Dalbergia paniculata (D. paniculata) in Carrageenan induced inflammation in rats. METHODS In vitro antioxidant activity was evaluated for superoxide radical, Hydroxyl radical and
In a search for new inhibitors of leukotriene formation, a methylene chloride extract of the plant Dalbergia odorifera (Jiangxiang) was found to be a potent inhibitor of LTC4 formation in AB-CXBG Mct-1 mastocytoma cells. Following LH-20 and reverse phase HPLC chromatography, two compounds were
OBJECTIVE Dalbergia sissoo Roxb. stem bark possesses anti-inflammatory, antipyretic, and antioxidant properties. This plant is used traditionally in the Indian system of medicine to treat emesis, ulcers, leucoderma, dysentery, stomach complaints, and skin disorders. This study was conducted to
The crucial medicinal plant Dalbergia odorifera T. Chen species belongs to genus Dalbergia, with interesting secondary metabolites, consisting of main classes of flavonoid, phenol, and sesquiterpene derivatives, as well as several arylbenzofurans, quinones, and fatty acids. Biological studies were
Background. Dalbergia species has wide range of secondary metabolites and is traditionally used in treatment of painful micturition, swelling, and leprosy and as blood tonic. The study evaluates membrane stabilizing, anticoagulant, analgesic, cytotoxic, subacute anti-inflammatory, and depression
OBJECTIVE To screen, isolate and identify the compounds with anti-inflammatory activity from Dalbergia odorifera T. Chen. METHODS Lipopolysaccharide (LPS) was used to stimulate RAW264.7 macrophages, and this model was further used to screen and separate active compounds from Dalbergia odorifera T.
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