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9-Me-BC

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All products are strictly intended for laboratory and research purposes only and are not approved for veterinary or human use.

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Buy 9-Me-BC for Laboratory Research

9-Me-BC (9-Methyl-β-carboline) is a synthetic heterocyclic aromatic compound belonging to the β-carboline family of alkaloids. It is widely investigated in laboratory settings for its interactions with neurochemical signaling pathways, monoamine metabolism, mitochondrial function, and cellular redox processes. Due to its unique molecular scaffold, 9-Me-BC serves as a valuable reference compound in biochemical and neuroscience research.

Researchers continue to examine 9-Me-BC in controlled experimental models to better understand enzyme activity, intracellular signaling, oxidative stress regulation, and structure-activity relationships among β-carboline compounds. These investigations are strictly limited to laboratory research and do not establish any therapeutic or clinical application.

Research Use Only. This product is intended exclusively for laboratory and scientific research and is not intended for human or veterinary use.


What Is 9-Me-BC?

9-Me-BC, also known as 9-Methyl-β-carboline, is a tricyclic heterocyclic aromatic compound characterized by a methyl substitution at the 9-position of the β-carboline core. Members of the β-carboline family are frequently utilized in molecular biology and neurochemical research because of their interactions with enzymatic systems and intracellular signaling pathways.

In laboratory environments, 9-Me-BC is commonly employed as a research compound to investigate monoamine oxidase activity, mitochondrial biology, oxidative signaling, and cellular metabolic regulation.


Proposed Mechanism of Action

Interaction with Monoamine Oxidase (MAO) Systems

Experimental studies have investigated the interaction of 9-Me-BC with monoamine oxidase enzymes, which play important roles in the metabolism of monoamine neurotransmitters. Researchers evaluate these interactions using biochemical assays to better understand enzyme kinetics and oxidative metabolic pathways.

Cellular Signaling and Redox Regulation

Laboratory investigations suggest that 9-Me-BC may influence intracellular signaling pathways associated with:

  • Reactive oxygen species (ROS) regulation
  • Mitochondrial electron transport processes
  • Cellular redox homeostasis
  • Gene expression related to neuronal signaling

Mitochondrial and Metabolic Research

Because of its aromatic heterocyclic structure, 9-Me-BC is frequently examined for interactions with mitochondrial enzymes and cellular metabolic systems. These investigations help researchers characterize molecular signaling networks in controlled laboratory models.

All mechanistic descriptions above are derived from preclinical laboratory investigations and do not imply therapeutic benefit or approved medical use.


Chemical Properties of 9-Me-BC

Compound Name 9-Methyl-β-carboline (9-Me-BC)
Chemical Classification β-Carboline Alkaloid
Molecular Formula C12H10N2
Molecular Weight 182.22 g/mol
Structural Class Tricyclic Heterocyclic Aromatic Compound
Core Structure β-Carboline Scaffold
Functional Feature Methyl substitution at the 9-position
Purity ≥98% (Batch dependent)
Classification Research Use Only (RUO)
Storage Store in a cool, dry laboratory environment protected from light and moisture.

Possible Research Applications of 9-Me-BC

1. Neurochemical Signaling Research

Researchers use 9-Me-BC to investigate molecular pathways associated with monoamine metabolism, intracellular signaling, and neuronal communication.

2. Monoamine Oxidase Enzyme Studies

Laboratory assays evaluate interactions between 9-Me-BC and monoamine oxidase enzymes to better understand oxidative metabolism and enzyme function.

3. Mitochondrial and Oxidative Stress Research

Experimental models utilize 9-Me-BC to study mitochondrial dynamics, reactive oxygen species regulation, and cellular redox signaling.

4. Structure-Activity Relationship (SAR) Investigations

Scientists compare β-carboline derivatives, including 9-Me-BC, to examine how structural modifications influence enzyme binding and intracellular signaling.

5. Experimental Neuropharmacology Research

9-Me-BC serves as a reference compound for investigating molecular interactions involving neuronal signaling pathways and biochemical regulatory mechanisms in controlled research environments.


Why Buy 9-Me-BC from PureRawz?

PureRawz supplies research-grade 9-Me-BC manufactured exclusively for laboratory investigations. Every batch undergoes analytical quality testing to verify identity, purity, and consistency before release.

Available quality documentation includes:

  • Certificate of Analysis (COA)
  • Third-party purity verification
  • Identity confirmation
  • Batch consistency testing
  • Analytical quality control

Frequently Asked Questions

What is 9-Me-BC?

9-Me-BC (9-Methyl-β-carboline) is a synthetic β-carboline compound investigated in laboratory research involving monoamine metabolism, mitochondrial biology, and neurochemical signaling.

What is 9-Me-BC researched for?

Researchers study 9-Me-BC for monoamine oxidase activity, intracellular signaling, oxidative stress regulation, mitochondrial function, and structure-activity relationship research.

How is 9-Me-BC quality verified?

Each batch is typically evaluated through analytical testing, including purity analysis, identity confirmation, and batch-specific Certificates of Analysis (COAs).

Is 9-Me-BC intended for human consumption?

No. 9-Me-BC is supplied exclusively for laboratory and analytical research. It is not intended for human or veterinary use.


Research Use Disclaimer

This information is provided solely for educational and scientific purposes and does not constitute medical advice.

Products sold by PureRawz are intended exclusively for laboratory research use. They are not FDA-approved drugs, dietary supplements, foods, cosmetics, or medical devices and are not intended for human or veterinary consumption.

All clinical research must be conducted under the oversight of the appropriate Institutional Review Board (IRB). All preclinical animal research must be conducted under the oversight of the appropriate Institutional Animal Care and Use Committee (IACUC) in accordance with the Animal Welfare Act (AWA).

Our content is intended for informational purposes only. Verify all information independently before purchasing. By completing your order, you agree to our Terms and Conditions. If you are not completely satisfied with your purchase, please contact support@purerawz.co.

ATTENTION: ALL PRODUCTS ARE FOR LABORATORY AND RESEARCH PURPOSES ONLY. NOT FOR HUMAN OR VETERINARY USE.


References

  • Keller S, Polanski WH, Enzensperger C, Reichmann H, Hermann A, Gille G. 9-Methyl-β-carboline inhibits monoamine oxidase activity and stimulates the expression of neurotrophic factors by astrocytes. Journal of Neural Transmission. 2020;127(7):999-1012. https://doi.org/10.1007/s00702-020-02189-9
  • PubChem. 9-Methyl-β-carboline Compound Summary. National Center for Biotechnology Information. https://pubchem.ncbi.nlm.nih.gov/

Related Research Compounds

Researchers studying 9-Me-BC may also explore related neuroscience research compounds, including
Bromantane,
Methylene Blue, and
Noopept, which are investigated in laboratory studies involving neurochemical signaling and cellular pathways.

Additional research compounds include
FLModafinil,
Phenylpiracetam, and
Piracetam, studied in experimental neuroscience and biochemical research models.

Attributes

Liquid 30ml/17mg per ml/500mg $57.20, Liquid 15ml/17mg per ml/250mg $28.60

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