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Screening Libraries
Antiandrogenic Compound Library
A unique collection of 8 Antiandrogenic Compound Library for high throughput screening (HTS), high content screening (HCS) and New drug research
Cat. Size Price Stock
L200991mg/well * 8 CompoundsInquiry In stock
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L20099100uL/well (10mM solution) * 8 CompoundsInquiry In stock
*You can select compounds, quantities, format (dry/solid or DMSO) and plate map to meet your specific requirement.
Contact Us
E-mail manager@chemfaces.com
Tel (0086)-27-8423-7683
Shelf Life (0086)-27-84254680
ManufacturerWuhan ChemFaces Biochemical Co., Ltd.
Package & Storage
Container 96 Well Format Sample
Storage Protected from air and light, refrigerate or freeze(2-8 °)
Shelf Life 24 months (2-8 °)
Intended UseFor research use only. Not for human use. Not sell to patients
Description & Advantages
1. The products in the ChemFaces screening libraries are all from plants.
2. The biological activities or pharmacological activities of all the ChemFaces products are derived from the databases of all over the world the latest literatures, you can according to the product manuals on our website to access the relevant literatures, hope that our informations can give some inspirations and help to your research.
3.The collections of unique natural products, which include antioxidants, anti-inflammatory, antibacterial, anticancer, and ect. Can be used for high throughput screening (HTS) and high content screening (HCS), is to help you carry out new drug screening, the emergence of new indications and other professional tools.
4.Structurally diverse, medicinally active, and cell permeable, NMR and HPLC validated to ensure high purity.
5. ChemFaces offers customized bioactive screening libraries , whereby you choose the specific compounds you want in the library, the quantities, plate map, concentration, and format (dry/solid or DMSO solution).
Natural Products
Catalog No. Information
CFN99064 Ganoderol B

Ganoderol B is a potent α-glucosidase and angiotensin-converting enzyme inhibitor, with an IC(50) of α-glucosidase is 119.8 uM. It may be useful in prostate cancer and benign prostatic hyperplasia (BPH) therapy through suppressing the function of androgen and its receptor.
CFN99277 Bis(2-ethylhexyl) phthalate

Bis(2-ethylhexyl) phthalate (DEHP) is a compound widely used in plastics technology to impart flexibility to rigid polymers, DEHP has oral toxicity during pregnancy and suckling in the Long-Evans rat.It can induce antiandrogenic effects in Spague-Dawley (SD) rats.
CFN99815 Ganoderic acid DM

Ganoderic acid DM is an antiandrogenic osteoclastogenesis inhibitor, it especially suppresses the expression of c-Fos and nuclear factor of activated T cells c1 (NFATc1), this suppression leads to the inhibition of dendritic cell-specific transmembrane protein (DC-STAMP) expression and reduces osteoclast fusion. Ganoderic acid DM has shown toxicity to both androgen-dependent and independent prostate cancer cells with reduced osteoclastogenesis in late stage metastatic disease, it may an alternative agent for the treatment of advanced prostate cancer.
CFN98413 Myricanone

Myricanone has antioxidant, and anticancer activities, it has apoptosis-promoting ability by triggering caspase activation, and suppression of cell proliferation by down-regulation of NF-κB and STAT3 signalling cascades. Myricanone shows in vitro testosterone 5alpha-reductase inhibitory activity and in vivo anti-androgenic activity using growth of flank organ in castrated Syrian hamsters and/or hair regrowth after shaving in testosterone-treated C57Black/6CrSlc mice.
CFN98478 Cryptotanshinone

Cryptotanshinone is a potent STAT3 inhibitor with IC50 of 4.6 μM, and inhibits STAT3 Tyr705 phosphorylation in DU145 prostate cancer cells. It is also an AR inhibitor to suppress androgen/AR-mediated cell growth and PSA expression by blocking AR dimerization and the AR-coregulator complex formation. Cryptotanshinone has anti-atherosclerosis, neuroprotective, anti-cancer,and anti-neointimal formation activities. Cryptotanshinone reverses DEX-induced androgen excess and ovarian IR in mice through activation of insulin signaling and the regulation of glucose transporters and hormone-synthesizing enzymes, it has an inhibitory effect on MMP-9 production and migration of human aortic smooth muscle cells treated with TNF-alpha in a dose-dependent manner.
CFN98703 Atraric acid

Atraric acid derivatives as a new chemical lead structure for novel therapeutic compounds as AR antagonists, that can be used for prophylaxis or treatment of prostatic diseases. It inhibits PTP1B activity in a dose-dependent manner with IC50 values of 51.5 uM, suggest that atraric acid has potential to treat diabetes.
CFN98598 Theaflavine-3,3'-digallate

Theaflavin-3,3'-digallate is a potent AMP-activated protein kinase (AMPK) activator with anti-adiposity activity in adipocytes, suggesting its potential application in functional foods and nutraceuticals for obesity management. Theaflavin-3,3'-digallate is also an inducer of oxidative stress and apoptosis, it has strong antioxidant and antiangiogenic activities, it inhibits the tube formation of endothelial cells via decreased both MMP-2 and MMP-9 activities in vitro. A combination microbicide containing theaflavin-3,3'-digallate and lactic acid can reduce herpes simplex virus (HSV) transmission. Theaflavin-3,3'-digallate may exert its anti-inflammatory and cancer chemopreventive actions by suppressing the activation of NFkappaB through inhibition of IkappaB kinase (IKK) activity. Theaflavin-3,3'-digallate can repress osteoclastogenesis and prevent wear debris-induced osteolysis via suppression of ERK pathway, it is a promising candidate for the treatment of osteoclast-related osteolytic diseases, such as wear debris-induced peri-implant osteolysis (PIO).
CFN96846 Diisobutyl phthalate

Diisobutyl phthalate has comparable anti-androgenic effects to di-n-butyl phthalate in fetal rat testis. Diisobutyl phthalate administered by gavage is embryotoxic and teratogenic, and affects the developing male reproductive tract, at maternal toxic doses. Diisobutyl phthalate could through blood-brain barrier after oral intake, and disordered the way of apoptosis of hippocampal cells, and morphologic change of mitochondria mybe is the main reason of changes of neuron apoptosis; it induced oxidative stress, which can decrease the activities of antioxidative enzymes and result in oxidative damage of tissues.