Research Use Only. This compound is not intended for human consumption or therapeutic use.
Where to Buy Anapolon: Vendor Comparison & Research Info
Anapolon (Oxymetholone) is a synthetic anabolic-androgenic steroid studied for its effects on androgen receptor signaling, protein metabolism, erythropoietic pathways, and steroid biochemistry. It is primarily used as a research compound for investigating androgen-responsive cellular and hematological processes in controlled laboratory models.
What is Anapolon?
Anapolon, commonly known as oxymetholone, is a synthetic anabolic-androgenic steroid (AAS) investigated for its interaction with androgen receptors and its effects on protein metabolism, erythropoietic signaling, and cellular growth pathways. Its distinctive chemical structure makes it a useful compound for laboratory research involving androgen biology, hematological processes, and steroid metabolism.
Overview
Oxymetholone is a synthetic derivative of dihydrotestosterone with structural modifications that significantly alter its biological activity. It has been studied for its ability to influence androgen-responsive tissues and cellular processes associated with protein synthesis and red-blood-cell production.
Research involving oxymetholone can provide insight into androgen receptor signaling, anabolic activity, steroid metabolism, and the molecular mechanisms underlying androgen-dependent tissue responses.
Molecular Characteristics and Chemical Profile
Chemical Name: Oxymetholone
Common Name: Anapolon
Molecular Formula: C21H32O3
Molecular Weight: 332.48 g/mol
CAS Number: 434-07-1
Chemical Class: Synthetic anabolic-androgenic steroid
Structural Family: DHT-derived steroid
Form: Typically supplied as a solid research material
Research Applications
Oxymetholone may be investigated across several scientific areas, including:
Androgen Receptor Biology: Studying androgen receptor activation and downstream gene transcription.
Protein Metabolism: Investigating androgen-mediated changes in protein synthesis and cellular growth.
Erythropoietic Research: Examining pathways associated with red-blood-cell production and hematological signaling.
Muscle Cell Biology: Studying androgen-dependent effects on skeletal muscle tissue models.
Steroid Metabolism: Evaluating the metabolism and biotransformation of synthetic androgenic compounds.
Endocrine Research: Investigating interactions between exogenous androgen signaling and hormonal feedback mechanisms.
Mechanism of Action
Oxymetholone interacts with androgen-responsive biological pathways through its activity at the androgen receptor. The resulting receptor-mediated signaling can influence gene transcription involved in protein metabolism, cellular differentiation, and tissue function.
Its structure also makes it useful for investigating how chemical modifications of steroid molecules alter receptor activity, metabolism, and tissue-specific biological responses.
Key Research Mechanisms
Androgen Receptor Signaling:
Researchers can use oxymetholone to examine androgen receptor activation and subsequent transcriptional responses.
Protein Synthesis:
Experimental models may investigate how androgen signaling influences protein turnover and cellular anabolic pathways.
Erythropoietic Signaling:
Oxymetholone has been studied in relation to pathways regulating erythropoiesis, making it relevant to hematological research.
Steroid Biotransformation:
Its molecular structure provides a model for studying hepatic metabolism and enzymatic modification of synthetic steroids.
Areas of Scientific Research
1. Androgen Receptor Research
Oxymetholone can serve as a model compound for investigating androgen receptor activity, receptor-mediated transcription, and androgen-responsive cellular pathways.
2. Hematological Research
Researchers may investigate its relationship with erythropoietic signaling, red-blood-cell formation, and associated molecular pathways in controlled experimental models.
3. Muscle and Protein Metabolism
Research models can examine androgen-dependent changes in muscle-cell signaling, protein synthesis, nitrogen metabolism, and tissue development.
4. Steroid Metabolism
Because oxymetholone is a modified synthetic steroid, it can be studied to better understand steroid biotransformation, metabolic pathways, and structure-activity relationships.
Analytical Testing and Quality Considerations
Reliable research materials should undergo appropriate analytical verification to confirm chemical identity and purity. Common analytical approaches include:
High-Performance Liquid Chromatography (HPLC)
Mass Spectrometry (MS)
Nuclear Magnetic Resonance (NMR)
Chromatographic identity testing
These techniques help researchers verify compound characteristics and maintain consistency across laboratory investigations.
Research-Use Statement
Anapolon (Oxymetholone) is intended exclusively for laboratory and scientific research purposes. It is not intended for human consumption, self-medication, therapeutic use, or veterinary applications.
Where to Buy Anapolon Online
| Rank | Vendor | Trust Score | Vial Size | Price / mg | Status | Action |
|---|---|---|---|---|---|---|
1 | ![]() Apotheka Verified | 9.0/10 Editorial Rating | $37.50 50mg vial | $0.75/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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