Buy Bromantane for Laboratory Research
Bromantane, also known as Ladasten, is a synthetic compound derived from the adamantane chemical framework. It is widely investigated in laboratory settings for its interactions with dopaminergic signaling pathways, intracellular regulatory mechanisms, and cellular responses to metabolic stress. Due to its unique adamantane structure, Bromantane has become an important reference compound in neurochemical and biochemical research.
Researchers continue to examine Bromantane in controlled experimental models to better understand dopamine biosynthesis, intracellular signaling, and molecular pharmacology. These investigations remain limited to laboratory environments and should not be interpreted as evidence of therapeutic efficacy or approved medical use.
Research Use Only. This product is intended exclusively for laboratory and scientific research and is not intended for human or veterinary use.
What Is Bromantane?
Bromantane is a synthetic adamantane derivative first synthesized during pharmacological research programs investigating neurochemical signaling and cellular adaptation mechanisms. It belongs to a class of cage-like hydrocarbons known for their structural stability and physicochemical properties.
Within laboratory environments, Bromantane is commonly utilized to investigate dopamine biosynthesis pathways, intracellular signaling networks, enzyme regulation, and structure-activity relationships among adamantane derivatives.
Proposed Mechanism of Action
Dopamine Biosynthesis Pathway Research
Experimental studies suggest Bromantane may influence dopamine biosynthesis by regulating the expression of enzymes involved in catecholamine production, including:
- Tyrosine hydroxylase (TH)
- Aromatic L-amino acid decarboxylase (AAAD)
Researchers investigate these interactions to better understand enzyme regulation and neurotransmitter biosynthesis within controlled laboratory systems.
Intracellular Signaling Pathways
Laboratory investigations have examined Bromantane for potential interactions with intracellular signaling pathways involving:
- Cyclic adenosine monophosphate (cAMP)
- Calcium-dependent (Caยฒโบ) signaling
- Protein kinase signaling cascades
- Gene transcription associated with dopamine biosynthesis
Neurochemical Regulation Research
Unlike compounds that primarily influence neurotransmitter release, Bromantane has been investigated for its potential role in regulating enzyme expression and molecular signaling pathways associated with dopamine production.
All mechanistic descriptions above are derived from controlled laboratory investigations and do not imply therapeutic benefit or approved clinical application.
Chemical Properties of Bromantane
| Compound Name | Bromantane |
| Synonyms | Ladasten; N-(4-bromophenyl)-2-adamantanamine |
| IUPAC Name | N-(4-bromophenyl)adamantan-2-amine |
| CAS Number | 87913-26-6 |
| Molecular Formula | C16H20BrN |
| Molecular Weight | 306.25 g/mol |
| Chemical Classification | Adamantane Derivative |
| Structural Class | Substituted Amine |
| Purity | ≥98% (Batch dependent) |
| Classification | Research Use Only (RUO) |
| Storage | Store in a cool, dry laboratory environment protected from moisture and direct light. |
Possible Research Applications of Bromantane
1. Dopamine Biosynthesis Research
Researchers investigate Bromantane to study the regulation of enzymes involved in dopamine synthesis and catecholamine-related biochemical pathways.
2. Neurotransmitter Signaling Studies
Laboratory models examine Bromantane’s interactions with dopaminergic signaling systems, neurotransmitter regulation, and intracellular communication networks.
3. Intracellular Signaling Research
Experimental studies evaluate cAMP-dependent signaling, calcium-mediated pathways, protein kinase activation, and transcriptional regulation associated with cellular signaling.
4. Cellular Stress Response Research
Preclinical investigations examine Bromantane in models evaluating cellular responses to metabolic and environmental stressors, oxidative processes, and molecular adaptation mechanisms.
5. Structure-Activity Relationship (SAR) Studies
Scientists utilize Bromantane as a reference compound when comparing adamantane derivatives to better understand how structural modifications influence molecular interactions and enzyme regulation.
Why Buy Bromantane from PureRawz?
PureRawz supplies research-grade Bromantane manufactured exclusively for laboratory investigations. Every batch undergoes rigorous analytical 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 Bromantane?
Bromantane is a synthetic adamantane derivative investigated in laboratory research involving dopamine biosynthesis, intracellular signaling, and neurochemical pathway analysis.
What is Bromantane researched for?
Researchers investigate Bromantane for dopamine biosynthesis, intracellular signaling, enzyme regulation, neurochemical pathways, stress-response research, and structure-activity relationship studies.
How is Bromantane quality verified?
Quality is verified through analytical testing, including identity confirmation, purity analysis, and batch-specific Certificates of Analysis (COAs).
Is Bromantane intended for human consumption?
No. Bromantane is supplied exclusively for laboratory research and analytical investigations. 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 and paying for 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
- Grekhova TV, Gainetdinov RR, Sotnikova TD, et al. Effect of bromantane, a new immunostimulating agent with psychostimulating activity, on the release and metabolism of dopamine in the striatum of freely moving rats. Bulletin of Experimental Biology and Medicine. 1995. https://doi.org/10.1007/BF02445840
- Morozov IS, Klimova NV, Karpova TD, Shestopalov SS. The characteristics of the neuropsychotropic activity of bromantane in laboratory animals. Eksp Klin Farmakol. 1999. https://pubmed.ncbi.nlm.nih.gov/10340117/
- PubChem. Bromantane Compound Summary. National Center for Biotechnology Information. https://pubchem.ncbi.nlm.nih.gov/
Related Research Compounds
Researchers studying Bromantane may also explore related neuroscience research compounds, including
9-Me-BC,
Noopept, and
Methylene Blue, 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.








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