Research Use Only. This compound is not intended for human consumption or therapeutic use.
Where to Buy Proviron: Vendor Comparison & Research Info
Proviron (Mesterolone) is a synthetic DHT-derived androgen studied for its interaction with androgen receptors and its effects on endocrine, reproductive, and cellular signaling pathways. It is primarily investigated in research involving androgen receptor activity, steroid hormone biology, and tissue-specific androgen responses.
What is Proviron?
Proviron, also known as mesterolone, is a synthetic androgen derived from dihydrotestosterone (DHT). It is primarily studied for its interaction with androgen receptors and its role in research involving androgen signaling, endocrine regulation, and reproductive biology. Its DHT-derived structure makes it a useful compound for investigating androgen-dependent cellular pathways and tissue responses.
Overview
Mesterolone belongs to the class of synthetic androgenic compounds and has a molecular structure related to naturally occurring DHT. Unlike testosterone, it does not undergo aromatization to estrogen, making it particularly relevant to research examining androgen activity without direct conversion through the aromatase pathway.
Laboratory investigations of mesterolone focus on androgen receptor activation, gene transcription, protein metabolism, reproductive endocrinology, and the biological effects of androgen signaling in different tissues.
Molecular Characteristics and Chemical Profile
Chemical Name: Mesterolone
Common Name: Proviron
Molecular Formula: C20H32O2
Molecular Weight: 304.47 g/mol
CAS Number: 1424-00-6
Chemical Class: Synthetic androgen / DHT derivative
Form: Typically supplied as a solid or crystalline research material
Research Applications
Mesterolone may be investigated in several areas of laboratory research, including:
Androgen Receptor Signaling: Studying androgen receptor activation and downstream gene expression.
Endocrine Research: Investigating androgen-dependent hormonal pathways and feedback mechanisms.
Reproductive Biology: Examining androgen signaling in reproductive tissues and related cellular processes.
Muscle Biology: Studying androgen-mediated regulation of protein metabolism and muscle-cell signaling.
Neuroendocrine Research: Evaluating androgen receptor activity within central and peripheral tissues.
Steroid Biochemistry: Using mesterolone as a model compound for studying DHT-derived androgen structures.
Mechanism of Action
Proviron is structurally related to DHT and interacts with androgen receptors in androgen-responsive tissues. Following receptor binding, the androgen-receptor complex can influence transcription of specific genes involved in cellular differentiation, protein metabolism, and tissue function.
Because mesterolone is not converted into estrogen through aromatase, it provides researchers with a useful model for examining androgen-mediated activity separately from estrogenic signaling.
Key Research Mechanisms
Androgen Receptor Interaction:
Mesterolone binds to androgen receptors and can be used to investigate receptor-mediated transcriptional activity.
DHT-Derived Signaling:
Its structural relationship to DHT makes it valuable for studying biological responses associated with non-aromatizing androgenic compounds.
Endocrine Feedback:
Research can examine how androgen receptor stimulation influences hypothalamic-pituitary-gonadal signaling and hormonal feedback mechanisms.
Steroid Metabolism:
Mesterolone can also serve as a model compound for investigating the metabolism and biological activity of synthetic steroid derivatives.
Areas of Scientific Research
1. Androgen Receptor Research
Mesterolone is useful for investigating how synthetic androgens interact with androgen receptors and influence downstream molecular pathways. Researchers can examine receptor binding, transcriptional regulation, and tissue-specific responses.
2. Reproductive Endocrinology
Studies may evaluate the relationship between androgen receptor stimulation and reproductive hormone signaling, including interactions within the hypothalamic-pituitary-gonadal axis.
3. Muscle and Protein Metabolism
Mesterolone provides a research model for examining androgen-dependent effects on muscle cells, protein turnover, cellular differentiation, and anabolic signaling pathways.
4. Steroid Hormone Biology
As a DHT-derived compound, Proviron can help researchers compare the molecular behavior of different synthetic and naturally occurring androgens.
Analytical Testing and Quality Considerations
High-quality research materials should be evaluated using appropriate analytical techniques to confirm identity and chemical purity. Common laboratory methods include:
High-Performance Liquid Chromatography (HPLC)
Mass Spectrometry (MS)
Nuclear Magnetic Resonance (NMR)
Chromatographic identity testing
Analytical verification helps researchers establish compound identity, assess purity, and support consistency between experimental batches.
Research-Use Statement
Proviron (Mesterolone) is intended for laboratory and scientific research purposes only. It is not intended for human consumption, self-medication, therapeutic use, or veterinary applications.
Where to Buy Proviron Online
| Rank | Vendor | Trust Score | Vial Size | Price / mg | Status | Action |
|---|---|---|---|---|---|---|
1 | ![]() Apotheka Verified | 9.0/10 Editorial Rating | $12.50 25mg vial | $0.50/mg | In Stock | Visit Site |
Top-Ranked Vendor

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Chemical Properties & Handling
Standard storage protocols for lyophilized peptides generally apply unless otherwise specified.
- Lyophilized (Powder): Store at -20°C for up to 3 years. Keep away from direct light and moisture.
- Reconstituted (Liquid): Store at 2-8°C (refrigerated) and use within 20-30 days to maintain stability.
Research Reviews
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