Anticancer

Corylin
Catalog No: CFN98902

Corylin has a variety of pharmacological effects such as antioxidant, anti-proliferation, and anti-inflammatory properties, it may stimulate bone formation or have potential activity against osteoporosis. Corylin shows an inhibitory effect on IL-6-induced STAT3 promoter activity in Hep3B cells.
Aristolactam BIII
Catalog No: CFN98904

Aristolactam BIII possesses anti-platelet aggregation activity in vitro, it also shows significant cytotoxic activity (IC50 values < 4 microg/mL) against P-388, HT-29 and A549 cell lines in vitro.
Nocamycin I
Catalog No: CFN00125

Nocamycin I shows potent antimicrobial activity and it holds great potential for antibacterial agent design.
Lupeol
Catalog No: CFN98913

1. Lupeol has a potential to act as an anti-inflammatory, anti-microbial, anti-protozoal, anti-proliferative, anti-invasive, anti-angiogenic, antimalarial and cholesterol lowering agent.
2. Lupeol prevents acetaminophen-induced in vivo hepatotoxicity by altering the Bax/Bcl-2 and oxidative stress-mediated mitochondrial signaling cascade.
3. Lupeol and its ester derivative have beneficial effects on hypercholesterolemia-induced oxidative and inflammatory stresses.
4. Lupeol significantly enhances the radiosensitivity of SMMC-7721 cells in vitro and in vivo.
5. Lupeol shows antidiabetic and antioxidant potential in experimental hyperglycaemia.
6. Lupeol has potential anticancer effect against hepatocellular and pancreatic cancer, by inhibiting cell proliferation, inducing apoptosis and blocking Akt/PI3K and Wnt signaling pathway.
7. Lupeol has antiangiogenic effects, it (at 50 and 30 microg/mL) shows a marked inhibitory activity on human umbilical venous endothelial cells (HUVEC) tube formation while it does not affect the growth of tumor cell lines such as SK-MEL-2, A549, and B16-F10 melanoma.
Tenuazonic acid
Catalog No: CFN00139

Tenuazonic acid, an active component in the A. alternata toxin.Tenuazonic acid exhibits a strong inhibition in photosystem II (PSII) activity, it causes cell necrosis of host-plants by oxidative damage from chloroplast-mediated ROS eruption, and enhances the plant's resistances against rose aphids.