Description
Overview of Epi-Andro
Epi-Andro, also known as Epiandrosterone, is a prohormone derived from DHEA. It is a metabolite of dihydrotestosterone (DHT). Experimental studies have explored its involvement in vascular signaling pathways under controlled laboratory conditions.
A few preclinical studies have evaluated Epi-Andro’s interaction with androgen receptor–associated signaling mechanisms during experimental investigations.
Chemical Properties
| EPI-Andro | |
| CAS Number | 481-29-8 |
| Molar Mass | 290.4 g/mol |
| Chemical Formula | C19H30O2 |
| IUPAC Name | (3S,5S,8R,9S,10S,13S,14S)-3-hydroxy-10,13-dimethyl-1,2,3,4,5,6,7,8,9,11,12,14,15,16-tetradecahydrocyclopenta[a]phenanthren-17-one |
How does Epi-Andro work?
Analytical research identifies epiandrosterone as a downstream metabolite within androgen biosynthesis pathways. Below are a few of the other proposed working mechanisms of Epi-Andro.
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Binds to GABA Receptors
GABA, short for gamma-aminobutyric acid, is a valuable anti-anxiety neurotransmitter. GABAergic signaling pathways have been examined in neurosteroid experimental models.
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Exploration of Vascular-Related Pathways in Experimental Settings
Analytical investigations have examined epiandrosterone in relation to cellular metabolic pathways. These pathways include components of the pentose phosphate pathway (PPP) under controlled laboratory conditions.
Additionally, in vitro research, Epi-Andro has evaluated Epi-Andro's association with nitric oxide–related signaling mechanisms within isolated cellular systems.
Epi–Andro and Seizure Model Research
Preclinical experimental studies have evaluated epiandrosterone in chemically induced seizure models to investigate its interaction with neurosteroid signaling pathways.
In vitro and in vivo research models have examined its influence within seizure-related signaling frameworks. These findings are limited to experimental research environments and do not establish clinical applicability.
Epi–Andro and GABAergic Signaling Research
Analytical studies have investigated epiandrosterone for its interaction with the gamma–aminobutyric acid (GABA) receptor complex. Laboratory data suggest activity as a negative non–competitive modulator within GABA–associated receptor systems under controlled conditions.
Epi-Andro and Insulin-like Growth Factor 1 (IGF-1)
Research shows that Epi-Andro may potentially increase serum levels of IGF-1. IGF-1 is a hormone that regulates the effects of growth hormone (GH) in the body. Together, GH and IGF-1 promote the normal growth of tissues and bones. Plus, it has been proven that exercise programs increase IGF-1.
Epi-Andro and Nitric Oxide
Research also indicates that Epi-Andro may have the potential ability to increase nitric oxide synthesis.
Where to Buy EpiAndro Online?
Pure Rawz is the best place to buy EpiAndro online. In order to be the best research chemicals supplier, we provide reference materials with every product we sell. Each of our products comes with an independent, third-party-issued Certificate of Analysis for identification, purity, and concentration.
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Note: Such observations are limited to experimental models and are intended solely for mechanistic and analytical research purposes.
Disclaimer
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Reference Links
- Epiandrosterone. (2021). Ebi.ac.uk. https://www.ebi.ac.uk/chebi/CHEBI:541975
- Cleveland Clinic. (2022, April 25). Gamma-Aminobutyric Acid (GABA). Cleveland Clinic. https://my.clevelandclinic.org/health/articles/22857-gamma-aminobutyric-acid-gaba
- Kaminski, R. M., Marini, H., Won Joo Kim, & Rogawski, M. A. (2005). Anticonvulsant Activity of Androsterone and Etiocholanolone. Epilepsia, 46(6), 819–827. https://doi.org/10.1111/j.1528-1167.2005.00705.x
Dr. Helma Wennemers
Dr. Helma Wennemers is a globally recognized chemist shaping modern peptide science and molecular design through highly original research in applied biosciences.
Her work explores how precise molecular architecture can be engineered to create new functional systems in chemistry and life sciences. Her contributions continue to redefine contemporary chemical research through creativity, depth, and structural innovation.
