Eastling Supply 16-...

Eastling Supply 16-Dehydropregnenolone acetate Powder
Eastling Supply 16-Dehydropregnenolone acetate Powder
Eastling Supply 16-Dehydropregnenolone acetate Powder
Eastling Supply 16-Dehydropregnenolone acetate Powder
Eastling Supply 16-Dehydropregnenolone acetate Powder

Eastling Supply 16-Dehydropregnenolone acetate Powder

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1 Kilogram

FOB Price:USD 2.0000 -5.0000

  • Min.Order :1 Kilogram
  • Purity: 99%
  • Payment Terms : T/T,Other

Keywords

16-Dehydropregnenolone 16-Dehydropregnenolone Powder 16-DPA

Quick Details

  • Appearance:White Powder
  • Application:Food,Cosmetics,Dietary supplements,Medicines,Pharmaceuticals
  • PackAge:1kg/bag,5kg/bag,25kg/drum
  • ProductionCapacity:800-1500|Kilogram|Month
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Superiority:

Product Name:16-Dehydropregnenolone

Appearance:White Powder

Assay: 99%

Shipping method: Fedex, DHL, TNT, Sea, Air or as you wish

Type: natural

Package: Aluminum Foil Bag

Hot Market: Europe, America, Asia

Usage: Food,Cosmetics,Dietary Supplements,Medicines,Pharmaceuticals

Port: Shanghai, Beijing

CAS: 979-02-2

Specification: Powder Form  

Certificates: ISO 9001/Halal/Kosher

Details:

Product Description:

16-Dehydropregnenolone acetate (16-DPA) is a C21 steroid hormone that is naturally produced in the human body, and is an important intermediate in the biosynthesis of other steroid hormones. It is a key intermediate in the synthesis of progesterone, androgens, estrogens, and glucocorticoids. 16-DPA is also known as pregnenolone acetate, and is a synthetic form of pregnenolone, a precursor for the production of steroid hormones. 16-DPA has been studied extensively for its potential medical applications, and is currently being investigated for its potential use in the treatment of various diseases.

16-DPA - Names and Identifiers

Name 16-dehydropregnenolone acetate
Synonyms 16-DPA
16 DPA
16-dehydropregnenolone acetate
3b-Acetoxy-5,16-pregnadien-20-one
5,16-Pregnadien-3-ol-20-one acetate
5,16-Pregnadien-3b-ol-20-one acetate
4-Toluenesulfonic Acid Monohydrate
16-DEHYDROPREGNENOLONE ACETATE (16-DPA)
20-oxopregna-5,16-dien-3-beta-yl acetate
3b-Hydroxy-5,16-pregnadien-20-one acetate
(3beta)-20-oxopregna-5,16-dien-3-yl acetate
CAS 979-02-2
EINECS 213-558-7
InChI InChI=1/C23H32O3/c1-14(24)19-7-8-20-18-6-5-16-13-17(26-15(2)25)9-11-22(16,3)21(18)10-12-23(19,20)4/h5,7,17-18,20-21H,6,8-13H2,1-4H3/t17-,18-,20-,21-,22-,23+/m0/s1
InChIKey MZWRIOUCMXPLKV-RFOVXIPZSA-N

16-DPA - Physico-chemical Properties

Molecular Formula C23H32O3
Molar Mass 356.50
Density 1.11g/cm3
Melting Point 170-178℃
Boling Point 464.4°C at 760 mmHg
Flash Point 200.1°C
Vapor Presure 8.38E-09mmHg at 25°C
Storage Condition Room Temprature
Refractive Index 1.546
Physical and Chemical Properties Chemical properties White crystalline powder, no odor, no odor, stable in the air, soluble in ethanol, methanol, insoluble in water.
Use It can be used as a steroid hormone drug intermediate, and can be used to manufacture corticosteroids, protein curing hormones, male hormones, and luteinizing hormones.

Specifications: 

roduct Name

16-Dehydropregnenolone Acetate

Specification

According with Enterprise Standard

Items

Standard

Results

Appearance

White or almost white crystalline powder,odorless

Complies

Color

No deeper than standard liquid color

Complies

Loss on Drying

≤0.5%

0.20%

Melting Point

165℃~175℃

165℃-173℃

Assay

≥98.5%

99.03%

Conclusion

The items tested conform to the requirements of enterprise standard.

Biochem/physiol Actions: 

16-Dehydropregnenolone acetate (16-DPA) is synthesized from steroids sapogenin, diosgenin and solasodine. 16-Dehydropregnenolone acetate (16-DPA) is a crucial intermediate for the synthesis of steroid hormones-based drugs. It is an antagonist for farnesoid X receptor (FXR) and modulates cholesterol metabolism. It is considered as a potential antihyperlipidemic agent. Chemically synthesized steroid derivatives from DPA have cytotoxic features and could serve as potential anticancer agents.

Future Directions: 

Future research into 16-DPA could focus on its potential use in the treatment of various diseases, such as Alzheimer’s disease, cancer, and other neurological disorders. Additionally, further research could focus on its potential role in the regulation of energy metabolism, and its ability to improve insulin sensitivity. Additionally, further research could also focus on its potential use in the development of novel drugs and therapies.

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