Buy MDPT online (tBuONE)
MDPT(tBuONE), also known as D-Tertylone, is a synthetic cathinone compound with the chemical formula C14H19NO3•HCl. This research chemical belongs to the β-keto amphetamine class and is structurally related to other popular cathinones like methylone and MDPV. At Davechemicals.com, we provide high-purity MDPT(tBuONE for research purposes only, with purity levels exceeding 98%. Our product is strictly intended for scientific investigation and forensic analysis, not for human or veterinary consumption.
Understanding MDPT(tBuONE in the Research Chemical Landscape
This synthetic cathinone, formally known as 3,4-Methylenedioxy-N-tert-butylcathinone hydrochloride, represents a fascinating addition to the growing family of novel psychoactive substances being studied for their pharmacological properties.
At Davechemicals.com, we understand the critical importance of providing researchers with access to high-quality, well-characterized compounds for legitimate scientific investigation. Our MDPT(tBuONE product is manufactured to the highest standards, ensuring researchers have the reliable materials they need for their studies.
Chemical Structure and Properties of MDPT(tBuONE)
MDPT(tBuONE) features a distinctive chemical structure that places it within the cathinone class of compounds. The molecular formula C14H19NO3•HCl indicates its composition, with a molecular weight of 285.77 g/mol. This compound is characterized by its 3,4-methylenedioxy ring structure attached to a tert-butyl amino group, creating a unique pharmacological profile that distinguishes it from other cathinones.
Key Chemical Characteristics
- IUPAC Name: 1-(1,3-benzodioxol-5-yl)-2-[(1,1-dimethyl ethyl)amino]-1-propanone, monohydrochloride
- CAS Number: 2469270-98-0
- Molecular Formula: C14H19NO3•HCl
- Molecular Weight: 285.77 g/mol
- Appearance: White crystalline powder
- Solubility: Sparingly soluble in DMSO (1-10 mg/ml); soluble in PBS pH 7.2 (≥10 mg/ml)

Pharmacological Profile and Mechanism of Action
Synthetic cathinones like MDPT(tBuONE) exert their effects primarily through interaction with monoamine neurotransmitter systems in the brain. Research indicates that these compounds act as psychomotor stimulants by impairing the normal function of plasma membrane transporters for dopamine (DAT), norepinephrine (NET), and serotonin (SERT).
Neurotransmitter Interaction
MDPT(tBuONE functions as a reuptake inhibitor and releaser of monoamine neurotransmitters, similar to other cathinone derivatives. This dual mechanism of action contributes to its stimulant properties and distinguishes it from compounds that primarily act as reuptake inhibitors or releasers alone.
Research Applications and Scientific Interest
MDPT(tBuONE has garnered attention in the scientific community for its potential research applications in various fields. Researchers are particularly interested in studying its pharmacological effects, structure-activity relationships, and potential therapeutic applications.
Forensic and Analytical Research
One of the primary applications of MDPT(tBuONE is in forensic science and analytical chemistry. The compound serves as an analytical reference standard for detecting and identifying synthetic cathinones in biological samples and seized materials. Its well-characterized properties make it invaluable for developing and validating analytical methods.
Pharmacological Studies
Scientists are investigating MDPT(tBuONE to better understand the structure-activity relationships within the cathinone class. These studies help researchers predict the effects of related compounds and develop safer therapeutic agents.
Legal Status and Regulatory Considerations
The legal status of MDPT(tBuONE varies by jurisdiction, making it essential for researchers to understand the regulations in their specific location.
International Legal Landscape
- United Kingdom: MDPT(tBuONE is not currently controlled under the Misuse of Drugs Act, though it may be subject to temporary bans under psychoactive substances legislation
- United States: The compound may be regulated under the Federal Analogue Act depending on its intended use and structural similarity to controlled substances
- European Union: Legal status varies by member state, with some countries having specific regulations for research chemicals
- Australia: Likely regulated under state and federal drug laws
Researchers must verify the legal status in their jurisdiction before purchasing or using MDPT(tBuONE for any purpose.
Safety and Handling Considerations
When working with MDPT(tBuONE or any research chemical, proper safety protocols are essential to ensure researcher wellbeing and data integrity.
Laboratory Safety Measures
- Personal Protective Equipment (PPE): Always wear appropriate PPE including gloves, lab coat, and safety glasses
- Ventilation: Work in a well-ventilated area or fume hood when handling powders
- Storage: Store at -20°C in airtight containers away from light and moisture
- Disposal: Follow institutional guidelines for chemical waste disposal
Comparing MDPT(tBuONE with Other Cathinones
To understand the unique properties of MDPT(tBuONE, it’s helpful to compare it with other well-known cathinones. The following table provides a comparative overview of several popular research compounds:
| Compound | Chemical Class | Primary Effects | Duration |
|---|---|---|---|
| MDPT(tBuONE) | Cathinone | Stimulant, euphoria | 2-4 hours |
| Methylone | Cathinone | Stimulant, empathogenic | 3-6 hours |
| MDPV | Cathinone | Potent stimulant | 4-6 hours |
| Mephedrone | Cathinone | Stimulant, euphoria | 2-4 hours |
Where to Buy MDPT(tBuONE Online: A Guide for Researchers
For researchers seeking to purchase MDPT(tBuONE, selecting a reliable supplier is crucial. At Davechemicals.com, we pride ourselves on providing high-quality research chemicals with transparent sourcing and rigorous quality control.
What to Look for in a Supplier
When choosing where to buy MDPT(tBuONE, consider the following factors:
- Purity Certification: Look for suppliers who provide certificates of analysis
- Research-Only Policy: Ensure the supplier explicitly states products are for research purposes only
- Shipping Reliability: Check shipping policies and delivery guarantees
- Customer Support: Reliable customer service is essential for research-related inquiries
Frequently Asked Questions About MDPT(tBuONE)
What is MDPT(tBuONE used for in research?
MDPT(tBuONE is primarily used in forensic analysis and pharmacological research. Scientists utilize this compound to develop and validate analytical methods for detecting synthetic cathinones in various matrices. Additionally, researchers study its pharmacological properties to better understand structure-activity relationships within the cathinone class.
Is MDPT(tBuONE legal for research purposes?
The legality of MDPT(tBuONE for research purposes depends on your jurisdiction. In many countries, researchers can legally purchase and use this compound for legitimate scientific investigation, provided they comply with local regulations and obtain necessary permits.
How should MDPT(tBuONE be stored?
MDPT(tBuONE should be stored at -20°C in airtight containers, protected from light and moisture. Proper storage ensures the compound maintains its stability and purity throughout the research period.
What is the purity of MDPT(tBuONE from Davechemicals.com?
Our MDPT(tBuONE products have a purity of ≥98%, as confirmed by analytical testing. We provide certificates of analysis for each batch to verify purity and quality.
Are there any safety precautions when handling MDPT(tBuONE?
Yes, researchers should always wear appropriate personal protective equipment when handling MDPT(tBuONE. This includes gloves, lab coat, and safety glasses. Work should be conducted in a well-ventilated area or fume hood to minimize exposure.
Conclusion: The Future of MDPT(tBuONE Research
As our understanding of synthetic cathinones continues to evolve, compounds like MDPT(tBuONE will play an increasingly important role in scientific research. The unique pharmacological profile of this compound offers researchers valuable insights into monoamine neurotransmitter systems and potential therapeutic applications.
At Davechemicals.com, we remain committed to supporting the research community by providing high-quality, well-characterized compounds for legitimate scientific investigation. Our MDPT(tBuONE product represents our dedication to advancing research in the field of psychoactive substances.
References
- Cayman Chemical. (2023). 3,4-Methylenedioxy-N-tert-butylcathinone (hydrochloride). Retrieved from https://www.caymanchem.com/product/44003/3-4-methylenedioxy-n-tert-butylcathinone-hydrochloride
- Baumann, M. H., et al. (2018). Neuropharmacology of Synthetic Cathinones. Handbook of Experimental Pharmacology, 252, 113-142.
- Schifano, F., et al. (2020). The clinical challenges of synthetic cathinones. British Journal of Clinical Pharmacology.
- UK Government. (2023). Synthetic cathinones: an updated harms assessment. Retrieved from https://www.gov.uk/government/publications/synthetic-cathinones-an-updated-harms-assessment
- MedChemExpress. (2023). MDPT(tBuONE | Drug Derivative. Retrieved from https://www.medchemexpress.com/3-4-methylenedioxy-n-tert-butylcathinone-hydrochloride.html
- PubChem. (2023). N-Tert-butyl-methylone. Retrieved from https://pubchem.ncbi.nlm.nih.gov/compound/85710946
- The Research Chem. (2023). MDPT(tBuONE) – The Research Chem. Retrieved from https://theresearchchemclubs.com/product/mdpttbuone
Ready to Purchase MDPT(tBuONE for Your Research?
At Davechemicals.com, we provide researchers with access to high-quality MDPT(tBuONE for legitimate scientific investigation. Our products are strictly for research purposes and come with comprehensive documentation and quality assurance.
Buy MDPT(tBuONE) Online | Best MDPT(tBuONE for Sale
For inquiries about our products or to discuss your research needs, contact our customer service team at Davechemicals.com Contact.
Disclaimer: MDPT(tBuONE is sold strictly for research purposes and is not intended for human or veterinary use. Researchers must comply with all applicable laws and regulations in their jurisdiction.




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