Products with Vasorelaxation bioactivity

Cat.No. Product Name
BCN4933 Vindoline
Vindoline is a chemical precursor to vinblastine and exhibits antimitotic activity by inhibiting microtubule assembly, it also has anti-ulcer activity. Vindoline can enhance the glucose-stimulated insulin secretion (GSIS) in MIN6 cells with the EC50 value of 50.2uM; it has relaxant effects in isolated rat renal arteries, it can dilate renal arteries in vitro through one or more pathways including inhibition of calcium entry,TEA+-sensitive potassium channel or protein kinase pathways in vascular smooth muscle cells.
BCN4987 Praeruptorin A
Praeruptorin A exerts neuroprotective, anti-osteoclastogenic, anti-inflammatory, distinct relaxant effects, it is beneficial to facilitate nestin expression in myocarditis,and suitable in treatment of early myocarditis. Praeruptorin A can significantly up-regulate UGT1A1 expression in HepG2 cells partially via the CAR-mediated pathway. Praeruptorin A inhibited p38/Akt-c-Fos-NFATc1 signaling and PLCγ-independent Ca2+ oscillation.
BCN4989 (+)-Praeruptorin A
(+)-Praeruptorin A exerts distinct relaxant effects on isolated rat aorta rings, which may be mainly attributed to nitric oxide synthesis catalyzed by endothelial nitric oxide synthase.
BCN5003 Isocorynoxeine
Isocorynoxeine, an isorhynchophylline-related alkaloid, exhibits a dose-dependent inhibition of 5-HT2A receptor-mediated current response with an IC50 of 72.4 μM. Isocorynoxeine shows the effects of lowering blood pressure, vasodilatation, and protection against ischemia-induced neuronal damage, it exhibits a significant neuroprotective effect against glutamate-induced HT22 cell death at the maximum concentration.
BCN5007 Cornuside
Cornuside has immunomodulatory, and anti-inflammatory activities, it has protective potential against cerebral ischemic injury, may be due to the suppression of intracellular Ca(2+) elevation and caspase-3 activity, and improvements in mitochondrial energy metabolism and antioxidant properties. Cornuside can treat myocardial I/R and protect the liver from CCl₄-induced acute hepatotoxicity, by reducing oxidative stress and suppressing inflammatory responses.

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