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ruscogenin/kræft

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ArtiklerKliniske forsøgPatenter
13 resultater

Ruscogenin induces ferroptosis in pancreatic cancer cells.

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Pancreatic cancer is characterized by aggressive and highly metastatic phenotypes. This disease exhibits a poor patient prognosis and is considered a challenge due to the limited treatment options encountered in clinical practice. Previous studies have shown that ruscogenin, a saponin found in the
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

Biotechnological production of ruscogenins in plant cell and organ cultures of Ruscus aculeatus.

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Ruscus aculeatus is a threatened medicinal plant whose main bioactive components, the ruscogenins, have long been used in the treatment of hemorrhoids and varicose veins, but recently demonstrated activity against some types of cancer. Plant cell biofactories could constitute an alternative to the
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
Phytochemical examination of the fresh tubers of Brodiaea californica resulted in the isolation of four new steroidal saponins. Their structures were determined, by extensive spectral analysis including two-dimensional (2D) NMR spectroscopy and acid-catalyzed hydrolysis, to be (25S)-spirost-5-ene-1

Novel steroidal saponins from Liriope graminifolia (Linn.) Baker with anti-tumor activities.

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Phytochemical investigation of the underground parts of Liriope graminifolia (Linn.) Baker resulted in the isolation of two new steroidal saponins lirigramosides A (1) and B (2) along with four known compounds. The structures were determined by extensive spectral analysis, including two-dimensional

Homo-aro-cholestane, furostane and spirostane saponins from the tubers of Ophiopogon japonicus.

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Phytochemical investigation of the tubers of Ophiopogon japonicus led to the isolation of five previously undescribed steroidal saponins, ophiojaponins A-E, together with twelve known ones. The structures of these isolated compounds were elucidated by detailed spectroscopic analyses and chemical
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

Novel cytotoxic steroidal glycosides from the roots of Liriope muscari.

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The present study was designed to investigate the chemical constituents and bioactivities of the roots of Liriope muscari (Decne.) L.H. Bailey. The compounds were isolated through various chromatography techniques, including silica gel, Sephadex LH-20, and semi-preparative HPLC. The structures were

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

Safety evaluation of steroidal saponin DT-13 isolated from the tuber of Liriope muscari (Decne.) Baily.

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Steroidal saponin DT-13 (25 (R, S)-ruscogenin-1-O-[β-D-glucopyranosyl - (1→2)] [β-D-xylopyranosyl-(1→3)]-β-D-fucopyranoside) is the main active component of the tube of Liriope muscari (Decne.) Baily and has been studied as a candidate drug for cancer metastasis. The objective of this study was to
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