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  • Product Name: 4F-MPH (4-Fluoromethylphenidate)
  • Alternative Names: 4F-MPH, 4-Fluoromethylphenidate, 4-FMPH
  • Chemical Class: Substituted Piperidine Stimulant
  • Research Category: Dopamine Transporter Research Chemical
SKU: N/A Category:

4F-MPH (4-Fluoromethylphenidate), also known as 4-Fluoro-Methylphenidate or 4-FMPH, is a synthetic stimulant belonging to the piperidine class of compounds. Structurally related to methylphenidate, 4F-MPH was originally developed and investigated in medicinal chemistry programs exploring dopamine transporter ligands and potential treatments for stimulant dependence.

Today, 4F-MPH is primarily utilized as an analytical reference standard in forensic toxicology, medicinal chemistry, neuropharmacology, and analytical laboratory research. Its well-characterized interaction with monoamine transporters makes it valuable for studies involving dopamine transporter function and structure–activity relationships (SAR).

What is 4F-MPH?

4F-MPH is a fluorinated analogue of methylphenidate developed for research into monoamine transporter pharmacology. The addition of a fluorine atom to the aromatic ring alters transporter binding characteristics, making the compound useful for investigating dopamine transporter affinity and medicinal chemistry optimization.

Researchers employ 4F-MPH as an analytical reference standard to study transporter interactions, metabolic pathways, forensic identification, and analytical method development.

Chemical Structure and Properties

4F-MPH possesses several defining structural characteristics:

  • Piperidine molecular scaffold
  • Para-fluorinated aromatic ring
  • Ester functional group
  • High chemical stability
  • Suitable analytical reference material

These structural features support comparative investigations involving methylphenidate analogues and transporter-selective compounds.

Pharmacological Research

Laboratory investigations indicate that 4F-MPH primarily functions as a dopamine transporter (DAT) and norepinephrine transporter (NET) inhibitor, reducing monoamine reuptake in experimental systems.

Scientific research has explored 4F-MPH for:

  • Dopamine transporter binding studies
  • Norepinephrine transporter research
  • Monoamine transporter pharmacology
  • Structure–activity relationship (SAR) analysis
  • Medicinal chemistry optimization
  • Comparative stimulant research

Studies have shown that fluorinated methylphenidate analogues may exhibit increased transporter affinity compared with the parent compound, making 4F-MPH a valuable tool for transporter-focused investigations.

Scientific Research Applications

4F-MPH is widely used in laboratory environments for:

  • Neuropharmacology
  • Medicinal Chemistry
  • Pharmaceutical Discovery
  • Forensic Toxicology
  • Analytical Chemistry
  • Dopamine Transporter Research
  • Drug Metabolism Studies
  • Reference Standard Development
  • Academic Neuroscience Research

Analytical Applications

Professional laboratories utilize 4F-MPH reference standards for:

  • LC-MS/MS Analysis
  • GC-MS Identification
  • High-Performance Liquid Chromatography (HPLC)
  • High-Resolution Mass Spectrometry (HRMS)
  • Toxicology Screening
  • Method Validation
  • Quality Control
  • Reference Material Calibration

These analytical methods provide reliable identification and differentiation of 4F-MPH from structurally related stimulant compounds.

Why Researchers Study 4F-MPH

4F-MPH contributes to scientific investigations involving:

  • Dopamine transporter pharmacology
  • Monoamine transporter interactions
  • Medicinal
    • chemistry optimization
    • Structure–activity relationship (SAR) studies
    • Forensic analytical development
    • Pharmaceutical lead discovery
    • Emerging stimulant identification
    • Laboratory quality assurance

    Its fluorinated structure provides useful insights into transporter binding and molecular design strategies.

    Related Research Compounds

    Researchers frequently compare 4F-MPH with:

    • Methylphenidate
    • Dexmethylphenidate
    • Ethylphenidate
    • 4F-EPH (4-Fluoroethylphenidate)
    • Isopropylphenidate (IPPH)
    • HDMP-28
    • HDEP-28
    • 4-Methylmethylphenidate
    • Other methylphenidate analogues

    Comparative investigations improve understanding of transporter affinity, molecular structure, and analytical differentiation.

    Storage and Handling

    For maximum laboratory stability:

    • Store in airtight laboratory containers.
    • Protect from humidity and moisture.
    • Avoid prolonged exposure to heat and direct sunlight.
    • Follow institutional laboratory safety protocols.
    • Handle using appropriate personal protective equipment (PPE).
    • Intended exclusively for qualified laboratory personnel.

    Frequently Asked Questions

    What is 4F-MPH?

    4F-MPH (4-Fluoromethylphenidate) is a fluorinated methylphenidate analogue used as an analytical reference standard in neuropharmacology, medicinal chemistry, forensic toxicology, and analytical laboratory research.

    Which research fields use 4F-MPH?

    4F-MPH is commonly used in neuroscience, neuropharmacology, pharmaceutical research, medicinal chemistry, analytical chemistry, and forensic toxicology laboratories.

    Which analytical techniques are used with 4F-MPH?

    Researchers commonly analyze 4F-MPH using LC-MS/MS, GC-MS, HPLC, and HRMS for compound identification, calibration, quality assurance, and method validation.

    Why is 4F-MPH valuable for research?

    Its well-characterized interaction with monoamine transporters, fluorinated molecular structure, and relevance to methylphenidate analogue research make it valuable for transporter pharmacology, medicinal chemistry, and analytical investigations.

    Is 4F-MPH intended only for laboratory research?

    Yes. 4F-MPH is supplied exclusively for laboratory, analytical, scientific, forensic, and educational research purposes.

    Disclaimer

    4F-MPH (4-Fluoromethylphenidate) is intended exclusively for laboratory, analytical, scientific, and educational research. This product is not intended for human consumption, medical treatment, veterinary use, therapeutic applications, or diagnostic purposes. Users are responsible for complying with all applicable laws, regulations, and institutional laboratory safety requirements.

quantity

10g, 50g, 100g

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