Product Description
Targeted Chemical Supply for Steroid Research
As a leading fine chemicals supplier and laboratory chemicals supplier, we provide 3-epihydroxyetioallocholan-17-one (CAS 53-41-8), formulated for chemical and pharmaceutical research entities requiring high-purity steroidal compounds. This compound serves researchers and manufacturers focusing on steroid derivatives such as (5α)-3α-hydroxy-androstan-17-one and androkinin analogues. Its controlled production and consistent specifications make it suitable for laboratories engaged in steroid synthesis, formulation, and analytical standardization activities that rely on precise chemical profiles.
Definitive Physicochemical Specifications Enhance Analytical Accuracy
3-Epihydroxyetioallocholan-17-one exhibits a melting point consistently ranging between 181-184 °C, with a boiling point near 413 °C at 760 mmHg, and a refractive index of 1.536. This white to off white crystalline powder dissolves effectively in alcohol-based solvents like ethanol, methanol, and acetonitrile at moderate concentrations but remains insoluble in aqueous media. Its logP of 3.95910 denotes balanced hydrophobicity critical in compound stability and chromatographic separation. Quality control indices, including flash point and low steam pressure, affirm its safety profile and suitability for rigorous laboratory chemicals supplier inventories.
Applicable in Steroid Derivative Analysis and Pharmaceutical Development
Within pharmaceutical R&D and chemical analysis industries, 3-epihydroxyetioallocholan-17-one is utilized for purity evaluation, stability testing, and as a benchmark in chromatographic methods. Its role extends to facilitating solubility studies and standardizing synthetic pathways for steroid analogs like androkinin and (5α)-3α-hydroxy-androstan-17-one. This compound’s stable profile and compliance with storage recommendations—typically at -20 °C—ensure reliable integration into workflows focused on steroidal compound innovation, quality assurance, and regulatory requirements.
Product Advantages
Structural Design Emphasizing Controlled Stability and Integration
The molecular architecture of 3-epihydroxyetioallocholan-17-one supports enhanced thermal stability evident from its well-defined melting and boiling points, critical for precise application in steroidal synthesis. Our role as a fine chemicals supplier guarantees batch-to-batch consistency adhering to strict protocols that maintain purity and crystalline integrity. The solubility profile optimized for organic solvents ensures compatibility with various chromatographic and spectrometric platforms, enhancing laboratory workflow efficiency and system compatibility essential for pharmaceutical chemical suppliers.
Operational Reliability Elevates Laboratory and Research Efficiency
The compound’s physicochemical robustness simplifies handling and storage logistics—maintainable at -20 °C—minimizing degradation risk. Its insolubility in water coupled with solubility in common alcohol solvents provides versatility in method development and formulation. Researchers and procurement managers benefit from our stringent quality control processes ensuring 3-epihydroxyetioallocholan-17-one’s reproducibility and analytical validity, which directly translates to dependable experimental outcomes and regulatory compliance in steroidal compound applications.
Use Scenarios
Steroid Purity Verification in Pharmaceutical Quality Control
In pharmaceutical quality assurance environments, 3-epihydroxyetioallocholan-17-one acts as a standard reference for assessing steroidal compound purity. Its consistent melting point and solubility traits offer precise benchmarks during chromatographic purity assessments and spectrometric profiling. This integration allows quality control laboratories within pharmaceutical manufacturers to align with regulatory standards and optimize testing workflows demanding specialty chemicals from trusted laboratory chemicals suppliers. The compound’s well-characterized stability parameters facilitate reliable documentation and batch validation processes.
Research and Development in Steroid Derivative Formulation
Within chemical research laboratories developing steroid derivatives such as androkinin and (5α)-3α-hydroxy-androstan-17-one, 3-epihydroxyetioallocholan-17-one is employed to elucidate solubility, stability, and structural behavior in organic matrixes. Its compatibility with organic solvents like methanol and ethanol enables methodical exploration of compound formulation pathways. This utility supports integration into analytical platforms for new chemical entity characterization and compound optimization, streamlining pharmaceutical innovation cycles via reliable supply from specialized fine chemicals supplier channels.
What solvents is 3-Epihydroxyetioallocholan-17-one soluble in?
We confirm that 3-epihydroxyetioallocholan-17-one is soluble in ethanol, methanol, and acetonitrile at approximately 1 mg/mL concentration, while it remains insoluble in water. This solubility profile is important for its use in various research and laboratory applications.
How should I store 3-Epihydroxyetioallocholan-17-one to ensure product stability?
To maintain the integrity of 3-epihydroxyetioallocholan-17-one, we recommend storing it sealed at around -20 °C. Proper storage ensures long-term stability, purity retention, and consistent performance in your laboratory or industrial processes.
Can you provide technical support for using 3-Epihydroxyetioallocholan-17-one in chemical research?
As a dedicated laboratory chemicals supplier, we offer expert guidance on the applications and handling of 3-epihydroxyetioallocholan-17-one. Our technical team can assist with solubility, purity assessment, and stability testing to support your research needs.
Do you offer customized packaging or quantities for 3-Epihydroxyetioallocholan-17-one?
We understand industrial requirements and can accommodate tailored requests regarding packaging and order sizes for fine chemicals supplier clients. Please contact us directly to discuss your specific needs and receive a custom production plan.