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Bioactive Products
Cat. No. Information
CFN90629 Tussilagone

Tussilagone has anti-cancer, anti-oxidant and anti-inflammatory activities. Tussilagone inhibits dendritic cell function through the induction of heme oxygenase-1; it has potential treatment of neuro-inflammatory diseases through the inhibition of overproduction of nitric oxide and prostaglandin E(2).
CFN90690 Dimethyl lithospermate B

Dimethyl lithospermate B is a highly potent natural antioxidant and antidiabetic polyphenol with unknown mode of action.Dimethyl lithospermate B slows inactivation of INa, leading to increased inward current during the early phases of the action potential (AP), might be an excellent candidate for a Na(+) channel agonist; it is effective in eliminating the arrhythmogenic substrate responsible for the Brugada syndrome and that it deserves further study as a pharmacological adjunct to implanted cardioverter/defibrillator usage.
CFN90936 Mogrol

Mogrol has exhibited anti-cancer activities, it suppressed leukemia cell growth via inhibition of the ERK1/2 and STAT3 pathways, in particular, through the suppression of p-ERK1/2 and p-STAT3. Mogrol significantly improved LPS-induced memory impairment in mice. It also suppressed adipogenesis by reducing CREB activation in the initial stage of cell differentiation and by activating AMPK signaling in both the early and late stages of this process.
CFN93207 Incensole acetate

Incensole acetate is a novel anti-inflammatory compound that inhibits NF-κB activation. Incensole acetate has protective effects on cerebral ischemic injury, it can reduce depressive-like behavior and modulate hippocampal BDNF and CRF expression of submissive animals.
CFN90805 Pratensein

Pratensein as a novel transcriptional up-regulator of scavenger receptor class B type I in HepG2 cells. Pratensein has anti-inflammatory activity, it has robust activation of acetylcholinesterase expression, the induction of acetylcholinesterase included the levels of mRNA, protein and enzymatic activity; it can significantly ameliorate Aβ1-42-induced spatial learning and memory impairment through reducing neuroinflammation via inhibition of glial activation and NF-κB activation, and restoring synapse and BDNF levels.