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ruscogenin/nekrose

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This study aimed to explore the effect of DT-13 (25(R,S)-ruscogenin- 1-O- [β-d-glucopyranosyl- (1→2)][β-d-xylopyranosyl-(1→3)]-β -d- fucopyranoside) on tumor necrosis factor (TNF)-α-induced vascular inflammation and the potential molecular mechanisms. In vitro, DT-13 suppressed TNF-α-induced
Ruscogenin (RUS), first isolated from Ruscus aculeatus, also a major steroidal sapogenin of traditional Chinese herb Radix Ophiopogon japonicus, has been found to exert significant anti-inflammatory and anti-thrombotic activities. Our previous studies suggested that ruscogenin remarkably inhibited
To determine the potential protective and therapeutic effects and action mechanism of ruscogenin on cerulein-induced acute pancreatitis (AP) model in rats.Overall, 32 rats were attenuated to the sham (2-mL/kg/day isotonic solution for 4 weeks), control
Our previous results suggested that ruscogenin inhibited tumor necrosis factor alpha (TNF-alpha)-induced leukocyte adhesion, which correlated with its suppression of intercellular adhesion molecule-1 (ICAM-1) expression in endothelial cells. In the present studies, we further examined its effects on
Transient cerebral ischemia initiates a complex series of inflammatory events, which has been associated with an increase in behavioral deficits and secondary brain damage. Ruscogenin is a major steroid sapogenin in the traditional Chinese herb Ophiopogon japonicus that have multiple bioactivities.

Potent therapeutic effects of ruscogenin on gastric ulcer established by acetic acid.

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The present study investigated the potent therapeutic effects of Ruscogenin, main steroid sapogenin of traditional Chinese plant called 'Ophiopogon japonicas', on chronic ulcer model established with acetic acid in rats.24 rats were attenuated to the sham
Kouyanqing Granule (KYQG) is a traditional Chinese herbal formula composed of Flos lonicerae (FL), Radix scrophulariae (RS), Radix ophiopogonis (RO), Radix asparagi (RA), and Radix et rhizoma glycyrrhizae (RG). In contrast with the typical method of separating and then biologicalily testing the

DT-13 ameliorates TNF-α-induced nitric oxide production in the endothelium in vivo and in vitro.

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The steroidal saponin DT-13 (25(R,S)-ruscogenin-1-O-[β-d-glucopyranosyl-(1 → 2)][β-d-xylopyranosyl-(1 → 3)]-β-d-fucopyranoside), one of the major active compounds of the herb Liriope muscari (Decne.), exhibits significant anti-inflammatory, anti-tumor and cardioprotective effects. This study aimed
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