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Sophora

According to Georgadze the three sophora alkaloids sophocarpine (a), sophocarpidine (h) and sophoridine (c) only differ in degree and not in character of their pharmacological activity thus on intravenous injection each causes a rise and then a fall i i blood pressure and their activity in this direction is in decreasing order (a), (c), (b). In small doses they stimulate, and in larger doses depress, the isolated heart of either cold- or warm-blooded animals and then their decreasing order of activity is (c), (b), (a). [Pg.152]

Sophora, a leguminous genus of perhaps 45 species (Mabberley, 1997, p. 671), offers a number of very interesting distributional problems. Members of sect. Edwardsia... [Pg.272]

Sykes, W. R. and Godley, E. J. 1968. Transoceanic dispersal in Sophora and other genera. Nature 218 495-496. [Pg.331]

TSUCHIYA H, iiNUMA M (2000) Reduction of membrane fluidity by antibacterial sophoraflavanone G isolated from Sophora exigua. Phytomedicine. 7 161-5. [Pg.185]

The high-performance liquid chromatography (HPLC) determination of quinolizidine alkaloids in Radix Sophora flavescens was assisted by using tris(2,2 -bipyridyl)ruthenium(n) electrochemoluminescence <2004MI237>. Tandem HPLC-MS techniques have allowed the development of a sensitive and specific method for the determination of sophocarpine, matrine, and sophoridine in rabbit plasma <2005MI1595>. [Pg.10]

Silk dyed with Reseda luteola, Sophora japonica and Allium cepa Rutin, quercetin, kaempferol, kaempferol 3,7 diglucoside, quercetin 4 glucoside, luteolin HCI/Me0H/H20, HCOOH/MeOH, H2EDTA/ACN/MeOH A H20 B ACN C H20 with HCOOH 350, 450, 490 nm/ ESI( ) Column C4 6... [Pg.376]

Due to similarities in their names, the mescal bean is often confused with mescaline (Schultes and Hofman 1980, 1992). These derive from entirely different plants whereas mescaline derives from peyote cactus, the mescal bean grows on the shrub Sophora secundiflora. The mescal bean itself has psychoactive effects, and was used since prehistoric times by Indians in the Rio Grande basin. Samples have been found dating back... [Pg.358]

In addition to lupines, poison-hemlock and Nicotiana spp., other plant species of the genera Genista, Prosopis, Lobelia, Cytisus, Sophora, Pinus, Punica, Duboisia, Sedum, Withania, Carica, Hydrangea, Dichroa, Cassia, Ammondendron, Liparia, and Colidium contain potentially toxic and teratogenic piperidine alkaloids. Many plant species or varieties from these genera may be included in animal and human diets (Keeler and Crowe, 1984). [Pg.26]

Cha JD, Jeong MR, Jeong SI, Lee KY. (2007) Antibacterial activity of sophoraflavanone G isolated from the roots of Sophora flavescens. J Microbiol Biotechnol 17 858-864. [Pg.470]

A remarkable number of insecticidal plants seem to have been recognized first as fish poisons. This group has received special scientific attention for example, the already mentioned rotenone and other rotenoids of Perris and Lonchocarpus species (3-6), the lupine alkaloids of Sophora species (13), and a saponin (medicagenic acid) from Medlcago sativa leaves ( ). [Pg.491]

Cho, C. H., Chuang, C. Y. and Chen, C. F. 1986. Study of the antipyretic activity of matrine, a lupin alkaloid isolated from Sophora subprostata. Planta Medica, 343-345. [Pg.246]

Wink, M., Witte, L., Hartmann, T., Theuring, C. and Volz, V. 1983. Accumulation of quinolizidine alkaloids in plants and cell suspension cultures Genera Lupinus, Cytisus, Baptisia, Genista, Laburnum, and Sophora. Planta Medica, 48 253-257. [Pg.277]

Lamprolobine (48) Lamprolobium fruticosum Benth. 101), Lupinus holosericeus 102), Sophora chrysophyUa Seem. 107), Thermopsis villosa (= T. caroliniana) 244) C15H24N2O2 Oil... [Pg.120]

Epilamprolobine (54) Sophora tomentosa 21), S. chrysophyUa Seem. 107) C15H24N2O2 101.5... [Pg.120]

Mamanine A -oxide (55) Sophora chrysophylla Seem. (107) C15H22N2O3 Amorph. [Pg.121]


See other pages where Sophora is mentioned: [Pg.116]    [Pg.118]    [Pg.138]    [Pg.138]    [Pg.801]    [Pg.274]    [Pg.211]    [Pg.212]    [Pg.212]    [Pg.272]    [Pg.273]    [Pg.273]    [Pg.273]    [Pg.316]    [Pg.321]    [Pg.10]    [Pg.875]    [Pg.105]    [Pg.106]    [Pg.26]    [Pg.457]    [Pg.508]    [Pg.283]    [Pg.266]    [Pg.31]    [Pg.231]    [Pg.119]    [Pg.120]    [Pg.121]    [Pg.121]    [Pg.121]   
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5- from Sophora tomentosa

Flavonoids Sophora

From Sophora flavescens

Huai Hua [Sophorae flos)

Huai Jiao [Sophorae fructus)

Sophora (Fabaceae)

Sophora Jlavescens

Sophora alopecuroides

Sophora alopecurosides

Sophora angustifolia

Sophora chrysophyUa

Sophora chrysophylla

Sophora compound

Sophora compounds, synthesis

Sophora flavescens

Sophora flavescens [Matrine

Sophora griffithii

Sophora japonica

Sophora japonica lectin

Sophora microphylla

Sophora pachycarpa

Sophora secundiflora

Sophora species

Sophora subprostata

Sophora subprostrata

Sophora tetraptera

Sophora tomentosa

Sophora tonkinensis

Sophorae

Sophorae

Sophorae flavescentis, Radix

Sophorae radix

Sophorae, Flos

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