Hexadrone

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Hexadrone – Product Details

Hexadrone is a synthetic compound classified within the androgenic-anabolic steroid (AAS) family. In non-human research models, it is studied for its potential to act as a prohormone, meaning it may convert into more biologically active steroid hormones, such as dihydrotestosterone (DHT), through metabolic processes. The chemical name for Hexadrone is 6-chloro-androst-4-ene-3-one-17β-ol.

Although Hexadrone has been investigated for its potential influence on muscle hypertrophy, strength parameters, and glycogen retention in controlled laboratory environments, it is important to note that these effects are not verified in human trials, and any claims regarding performance or therapeutic benefits remain unsupported by conclusive scientific data.

  • CAS Number: 63321-10-8
  • Molar Mass: 324.44 g/mol
  • Chemical Formula: C19H27ClO2
  • IUPAC Name: (6aR,10aR)-3-(2-chloro-2-methylpropyl)-6a,10a-dimethyl-2,3,6,6a,7,8,10,10a-octahydrobenzo[c]chromen-1-ol
  • Synonym: 6a-chloro-andro-4-ene-17b-ol-3-one

What is Hexadrone?

Hexadrone is a non-aromatizing, synthetic AAS compound examined for its androgen receptor activity in vitro and in vivo animal models. As a prohormone, it may undergo enzymatic conversion into DHT, a potent androgen associated with cellular androgen receptor activation and muscle tissue response in research subjects.

This compound is not naturally occurring in biological systems and is synthesized for research purposes to evaluate its structural analogies to other androgens and its potential anabolic pathways.

How Does Hexadrone Work?

Hexadrone is hypothesized to undergo metabolic transformation into DHT through 5α-reductase-dependent enzymatic pathways. DHT is a well-characterized androgen with strong affinity for androgen receptors, which are involved in regulating muscle protein synthesis, nitrogen retention, and other anabolic effects in tissue.

In non-human research models, DHT’s interaction with androgen receptors has been linked to:

  • Increased protein synthesis potential

  • Reduced muscle degradation

  • Possible alterations in androgen-regulated physiological traits

Due to these properties, Hexadrone is frequently utilized in scientific research to investigate androgen signaling and anabolic processes.

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