Xanthoxyletin
Catalog No: CFN96284
Xanthoxyletin shows potent antibacterial, fungicidal, and algicidal properties, it also has anticancer, and anti-inflammatory activities. It shows an inhibitory effect on iNOS protein expression at 10 microM, it also can inhibit the synthesis of nitric oxide and the protein expression of tumor necrosis factor-alpha and cyclooxygenase-2. Xanthoxyletin induces S phase arrest and apoptosis in human gastric adenocarcinoma SGC-7901 cells, the effects are associated with the DNA damage, apoptosis through mitochondrial dysfunction, and cell cycle arrest at S phase in a dose-dependent manner, it also can increase the production of reactive oxygen species.
Licoisoflavone B
Catalog No: CFN96405
Licoisoflavone B is an inhibitor of germ tube growth in the arbuscular mycorrhizal (AM) fungus Gigaspora margarita, it can strongly inhibit germ tube growth at 0.63 ug/disc, and it can completely inhibit hyphal branching induced by a lupin strigolactone, orobanchyl acetate, in G. margarita at 0.16 ug/disc. Licoisoflavone B exhibits inhibitory activity against the growth of Helicobacter pylori in vitro, it also shows anti-H. pylori activity against a clarithromycin (CLAR) and amoxicillin (AMOX)-resistant strain.Licoisoflavone B exhibits antimutagenic activity against carcinogenic N-methyl-N-nitrosourea (MNU), it is important to prevent DNA damage by N-nitrosamines for cancer chemoprevention.
Mosloflavone
Catalog No: CFN90893
Mosloflavanone is an antifungal and radical scavenging 2-hydroxyflavanone, it possesses strong anti-EV71 activity and decreased the formation of visible cytopathic effects, it also inhibits virus replication during the initial stage of virus infection, and inhibits viral VP2 protein expression, thereby inhibiting viral capsid protein synthesis. Mosloflavone shows promising anti-inflammatory activity via inhibition of TNF-α and IL-1β with IC50 values of 16.4 uM and 6.4 uM, respectively; it shows dose-dependent inhibition of TNF-α, IL-1β and iNOS levels in the supernatant of mouse macrophage cell line J774A, it also can be used as a starting point to discover lead structures for treatment of inflammatory and immunomodulatory diseases.