SR-9009 (Stenabolic) Capsules
€3,495.00
SR9009: Research Chemical Overview
SR9009 is a synthetic compound widely referenced in laboratory research due to its interaction with the REV-ERB family of nuclear receptors. These receptors are involved in regulating circadian rhythm, metabolic pathways, and cellular signaling in experimental models. Because of its well-defined molecular structure, SR9009 is commonly used in analytical chemistry, pharmacological research, and academic studies. At chemsmixlab.com, we focus on presenting responsible, research-only information to support legitimate scientific work.
In professional laboratory environments, SR9009 research chemical refers to a high-purity reference compound intended strictly for analytical, experimental, or educational purposes. It is not intended for human or animal use and must be handled only by trained professionals in controlled research settings.
Chemical Classification and Molecular Profile
SR9009 belongs to a class of synthetic compounds known as REV-ERB agonists. These molecules are designed to interact selectively with nuclear receptors in vitro, making them valuable tools for studying receptor behavior and biochemical pathways in laboratory research.
Key chemical characteristics include:
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Chemical name: SR9009
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Chemical class: REV-ERB nuclear receptor agonist
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Molecular formula: C₂₂H₁₇ClN₄O₄S
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Molecular weight: 437.91 g/mol
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Physical form: Fine crystalline powder
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Solubility: Soluble in common laboratory organic solvents
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Stability: Stable under recommended laboratory storage conditions
These consistent properties allow SR9009 to perform reliably as a reference compound in analytical workflows.
Role in Laboratory and Analytical Research
In scientific laboratories, SR9009 is primarily used as a reference standard for analytical testing and method development. Its known molecular structure allows researchers to verify instrument accuracy and refine analytical techniques.
Common laboratory applications include:
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High-performance liquid chromatography (HPLC)
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Liquid chromatography–mass spectrometry (LC-MS)
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Spectroscopic identification and confirmation
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Comparative studies with other REV-ERB agonists
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Academic research and laboratory training
Using an SR9009 research chemical in these applications helps ensure reproducible results and dependable analytical data.
Importance in Scientific and Educational Research
Well-characterized compounds like SR9009 play an important role in advancing scientific knowledge and laboratory best practices. Reference materials allow researchers to test hypotheses, validate analytical methods, and expand chemical databases used in education and research.
Scientific and educational benefits include:
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Improved accuracy in analytical detection and quantification
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Reliable method development and validation
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Expanded reference libraries for chemical identification
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Educational resources for chemistry and pharmacology courses
Such benefits help maintain high standards in laboratory research and support ongoing scientific discovery.
Handling and Laboratory Safety Practices
Proper handling is essential when working with SR9009 or any research chemical. Adhering to safety protocols protects laboratory personnel and preserves analytical integrity.
Recommended safety guidelines include:
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Wearing appropriate personal protective equipment (PPE), including gloves, lab coat, and eye protection
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Handling in a well-ventilated laboratory environment or fume hood
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Avoiding direct contact with skin, eyes, or inhalation
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Using calibrated tools for accurate weighing and transfer
All containers should be clearly labeled, and safety documentation should be available to all trained personnel.
Storage and Stability Guidelines
Correct storage conditions are critical to maintaining the stability and analytical reliability of SR9009.
Best storage practices include:
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Storing in airtight, chemically compatible containers
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Keeping in a cool, dry, and dark environment
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Protecting from moisture, heat, and direct light
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Maintaining organized inventory records
Following these guidelines ensures the compound remains suitable for long-term laboratory use.
Quality and Transparency at ChemsMixLab
At chemsmixlab.com, quality and transparency are core values. All research chemical information is provided strictly for scientific and educational purposes. Our reference compounds are described with clarity to support responsible laboratory research.
A high-purity SR9009 research chemical reference supports accurate analytical measurements, reproducible experiments, and dependable research outcomes. This level of quality is essential for universities, research institutions, and professional laboratories.
Legal and Regulatory Considerations
SR9009 may be regulated or restricted in certain regions. Researchers and institutions are responsible for understanding and complying with all applicable local, national, and institutional regulations before acquiring or working with this compound.
ChemsMixLab provides educational information only and does not encourage misuse, unauthorized distribution, or non-research applications.
Selecting Reference Materials for Research
Choosing reliable reference compounds is essential for achieving accurate and reproducible results. When selecting SR9009 for laboratory studies, researchers should consider:
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Purity and documentation from reputable suppliers
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Compatibility with analytical instruments
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Well-documented physicochemical properties
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Compliance with safety and regulatory standards
Careful selection enhances data reliability and supports scientific rigor.
Conclusion
SR9009 is a well-defined compound valued in laboratory research for studying REV-ERB receptor activity, analytical method development, and educational applications. When handled responsibly in controlled laboratory environments, it supports reproducible results and high-quality scientific research.
By following appropriate safety procedures, storage practices, and regulatory requirements, researchers can confidently work with an SR9009 research chemical reference. ChemsMixLab remains committed to supporting ethical, informed, and research-driven scientific exploration.

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