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Buy 5ME / 5-Methylethylone crystal /CAS 1364933-82-3 / online

Buy 5ME / 5-Methylethylone crystal /CAS 1364933-82-3 / online

5-Methylethylone (5ME) – CAS 1364933-82-3

Description:

  • Chemical Name: 5-Methylethylone (5-methyl-βk-MDEA)
  • CAS Number: 1364933-82-3
  • Chemical Formula: C13H17NO3
  • Molecular Weight: 235.28 g/mol
  • Appearance: Crystalline powder (typically deep yellow)

Properties:

  • Class: Empathogen, stimulant, psychedelic
  • Chemical Classes: Amphetamine, phenethylamine, cathinone

Effects:

  • Stimulant Effects: Euphoria, increased heart rate
  • Psychedelic Effects: Possible hallucinations, dizziness
  • Side Effects: Difficulty urinating, increased perspiration, potential for aggressive behavior

Uses:

  • Research Chemical: Primarily used in scientific research. Not intended for human or animal consumption.

Handling and Storage:

  • Storage: Keep in a cool, dry place away from light. Use airtight containers to prevent moisture absorption.
  • Safety: Handle with care, using appropriate protective gear (gloves, goggles). Follow all safety protocols in the laboratory.

Legality:

  • Status: 5-Methylethylone is not specifically scheduled in many countries, but it may be subject to analog or designer drug laws. Check local regulations before purchasing or using this compound.

Purchasing Information:

  • Where to Buy: Available from specialized research chemical suppliers and online vendors. Ensure that the supplier is reputable and that the product is tested for purity.
  • Purity: Typically, the purity of 5-methylethylone is reported to be above 99.7%.

Note:

  • Safety: As with all research chemicals, handle them with care and ensure that you are complying with local laws and regulations regarding their use. It is not approved for human consumption and should be used only for research purposes by trained professionals.

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Buy 5ME / 5-Methylethylone crystal /CAS 1364933-82-3 / online

Introduction

5-Methylethylone, also known as bk-Methylone derivative, is a synthetic cathinone in the substituted phenethylamine family. These compounds are studied extensively in forensic toxicology, pharmacology, and analytical chemistry due to their stimulant effects and potential for abuse.

The crystalline form of 5-Methylethylone is primarily used in research and laboratory studies, including:

  • Structure-activity relationship studies of synthetic cathinones
  • Analytical method development for forensic detection
  • Toxicological and metabolic profiling

While 5-Methylethylone has appeared in recreational products, it is strictly controlled in most jurisdictions, and legal access is limited to licensed laboratories for research purposes.


Informational: Chemical Identity and Properties

Property Details
Chemical Name 1-(1,3-Benzodioxol-5-yl)-2-(methylamino)butan-1-one
Common Names 5-Methylethylone, bk-Methylone derivative
Chemical Formula C₁₂H₁₅NO₃
Molecular Weight 221.25 g/mol
CAS Number Not officially assigned / research compound
Chemical Class Synthetic cathinone, beta-keto phenethylamine
Appearance White to off-white crystalline powder or crystals
Solubility Soluble in DMSO, methanol, and ethanol; low solubility in water
Melting Point 140–144 °C (crystalline form)
Storage Conditions Store in airtight, light-protected containers at 2–8 °C

Mechanism of Action

5-Methylethylone acts as a monoamine transporter substrate, affecting dopamine, norepinephrine, and serotonin signaling. In research settings, it is used to study:

  • Neurotransmitter modulation
  • Synthetic cathinone pharmacology
  • Metabolic pathways and toxicology

Unlike legal pharmaceuticals, this compound is only handled in controlled research environments.


Navigational: Forensic and Analytical Applications

Synthetic cathinones like 5-Methylethylone are frequently encountered in new psychoactive substance (NPS) monitoring.

Key Laboratory Uses

  1. Reference Standard – Used for calibration in HPLC, LC-MS/MS, and GC-MS studies.
  2. Metabolic Research – Identification of metabolites in biological matrices.
  3. Structure-Activity Studies – Understanding neurochemical and behavioral effects.
  4. Forensic Education – Case studies in toxicology training programs.

Analytical Techniques

Technique Purpose Key Features
LC-MS/MS Quantification in biological and seized samples High sensitivity, detects trace levels
GC-MS Structural confirmation Detects characteristic beta-keto phenethylamine fragments
¹H/¹³C NMR Structural elucidation Confirms chemical identity and purity
FT-IR Functional group analysis Detects ketone and amine functional groups

These methods ensure accurate identification and differentiation of 5-Methylethylone from other synthetic cathinones.


Commercial: Legal and Licensed Supply

5-Methylethylone is controlled under analogue and NPS laws, but licensed laboratories can legally obtain it for research and analytical purposes.

Supplier Type Regulatory Requirement Permitted Use
ISO-certified reference material suppliers Controlled substance license Analytical calibration and pharmacology studies
Academic research labs Institutional ethics approval Receptor studies, metabolism studies
Forensic laboratories DEA/National controlled substance permits Confirmatory testing and training
Pharmaceutical research institutions Controlled chemical permit Structure-activity relationship research

Important: All handling must comply with local, national, and international regulations, including chain-of-custody documentation.


Safety Profile and Handling

5-Methylethylone is potent and can pose neurological or cardiovascular risks if mishandled. Safe laboratory protocols are essential.

Hazard Classification (GHS) Symbol Precautionary Measures
Acute toxicity ⚠️ Avoid ingestion or inhalation; use PPE
CNS stimulant ⚠️ Handle in ventilated hoods
Eye/Skin irritation ⚠️ Gloves, goggles, lab coat required
Environmental hazard ☣️ Dispose via licensed chemical waste

Best Practices:

  • Handle in fume hoods or ventilated enclosures
  • Store in airtight, light-protected containers at 2–8 °C
  • Maintain documentation, labeling, and regulatory compliance

Transactional: Regulatory Status

5-Methylethylone is classified as a controlled synthetic cathinone in many countries.

Region / Country Legal Classification Regulatory Reference
United States Schedule I analogue / NPS DEA Controlled Substances Act
European Union Controlled NPS EMCDDA early warning system
United Kingdom Class B (Psychoactive Substances Act) Home Office, 2016
Canada Schedule III analogue Health Canada Controlled Drugs and Substances Act
Australia Schedule 9 Poison Therapeutic Goods Administration

✅ Only licensed laboratories may legally acquire 5-Methylethylone crystals for research, analytical, or educational purposes.


Comparative Table: 5-Methylethylone vs Related Synthetic Cathinones

Compound Chemical Class Potency Research Use Legal Status
5-Methylethylone Beta-keto phenethylamine Moderate Analytical, metabolic research Controlled
Methylone Beta-keto amphetamine High Pharmacology and metabolism Controlled
Ethylone Beta-keto amphetamine Moderate Pharmacological studies Controlled
MDVP Pyrrolidinophenone Very High Neurotoxicity & forensic Controlled

This table helps researchers and forensic analysts understand structural, potency, and regulatory differences among synthetic cathinones.


Research and Forensic Significance

5-Methylethylone is critical for:

  • Updating NPS databases for law enforcement and toxicology labs
  • Developing analytical standards for LC-MS/MS and GC-MS
  • Studying synthetic cathinone metabolism and toxicity
  • Training forensic professionals in modern NPS detection

Although recreational use is illegal, its research applications support public health, forensic science, and regulatory compliance.


Conclusion

                     5-Methylethylone crystals are a significant synthetic cathinone for research, analytical, and forensic purposes. Handling this compound requires licensed, compliant laboratories, proper safety measures, and strict adherence to legal regulations.

For analytical chemists, toxicologists, and pharmacologists, 5-Methylethylone provides a valuable research tool for understanding cathinone pharmacology, metabolism, and detection methods.


Keywords

5-Methylethylone crystalsynthetic cathinone researchBK-Methylone derivativeforensic toxicology NPSanalytical reference standardcontrolled substance research beta-keto phenethylamineNPS laboratory studies

 

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Reliable 2-Fluorodeschloroketamine (2-FDCK) Soppliers 2-Fluorodeschloroketamine (2-FDCK) - CAS 111982-50-4 Description:
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Buy NM-2201 powder/ CAS 837112-21-7/online

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NM-2201 Powder: Chemical Profile, Research Uses, Safety, and Global Legal Status Introduction                                      NM-2201, also known as 5F-NNE1 or CBL-2201, is a synthetic cannabinoid that has drawn scientific and regulatory attention due to its structural similarity to earlier cannabinoids like 5F-PB-22 and JWH-018. Originally developed for analytical reference and receptor binding research, NM-2201 is not approved for human use but remains a subject of interest in forensic toxicology and pharmacology. This guide provides a comprehensive overview of NM-2201 powder — its chemical properties, research relevance, associated risks, and international legal status — and outlines how legitimate laboratories can safely and lawfully source such compounds. Informational: Understanding NM-2201 Chemical Overview
  • Chemical name: N-(1-Amino-3-methyl-1-oxobutan-2-yl)-1-(5-fluoropentyl)-1H-indole-3-carboxamide
  • Molecular formula: C24H31FN2O3
  • Molar mass: 414.52 g/mol
  • CAS Number: 17272-89-0 (commonly cited reference)
  • Chemical class: Synthetic cannabinoid, indole-based compound
Physical Properties NM-2201 is typically found as a white to off-white crystalline powder. It is lipophilic, soluble in organic solvents such as ethanol or acetone, and unstable under high heat and humidity. These characteristics make it suitable for laboratory reference testing rather than consumer products. Informational: Scientific and Research Relevance NM-2201 acts as a potent agonist at the CB1 and CB2 cannabinoid receptors, meaning it binds to the same receptors as delta-9-tetrahydrocannabinol (THC), the psychoactive compound in cannabis. However, NM-2201’s synthetic structure often results in much higher receptor affinity and unpredictable pharmacokinetics. Research Applications
  1. Forensic Toxicology:
    • Used as a reference standard to detect synthetic cannabinoid exposure in biological samples.
    • Supports method validation in GC-MS and LC-MS/MS testing.
  2. Pharmacology and Receptor Studies:
    • Enables study of cannabinoid receptor activation and desensitization.
    • Helps evaluate binding affinities and structure-activity relationships (SARs) in cannabinoid analogues.
  3. Regulatory Science:
    • Provides data for classification, scheduling, and public health assessments.
Risks and Toxicological Profile NM-2201 is not approved for therapeutic use, and exposure has been associated with toxic and unpredictable effects when misused outside laboratory settings. Documented risks include:
  • Cardiovascular stress and tachycardia
  • Neurotoxicity and altered neurotransmitter activity
  • Respiratory complications
  • Behavioral changes and acute toxicity
These findings highlight why NM-2201 is restricted to authorized research institutions and forensic laboratories under controlled conditions. Navigational: Legal and Regulatory Overview NM-2201 is regulated under several national and international drug control frameworks: Region Legal Classification Authority / Act United States Schedule I Controlled Substance DEA Controlled Substances Act United Kingdom Class B Drug Misuse of Drugs Act 1971 European Union Controlled under synthetic cannabinoid bans EMCDDA Advisory Notices Canada Schedule II (Controlled) Controlled Drugs and Substances Act Australia Schedule 9 (Prohibited) Poisons Standard 2024 China Controlled under New Psychoactive Substances list National Narcotics Control Commission Researchers must ensure full compliance with import, storage, and handling regulations before acquiring or studying NM-2201 powder. Commercial: Sourcing Research-Grade NM-2201 Powder Legally Key Standards for Authorized Supply When sourced through licensed analytical suppliers, NM-2201 may be provided strictly for research and forensic use only. A legitimate supplier must provide:
  • Certificate of Analysis (COA) — verifying identity and purity (>98%)
  • Material Safety Data Sheet (MSDS) — outlining handling and storage precautions
  • Batch and lot tracking for traceability
  • GMP or ISO certification for laboratory-grade production
Approved Uses
  • Analytical reference material for cannabinoid detection methods
  • Receptor binding and toxicology research
  • Forensic chemical comparison studies
Commercial suppliers usually require documentation verifying the buyer’s institutional affiliation, research purpose, and regulatory authorization. Transactional: Legal Access and Compliance Process To obtain NM-2201 powder legally for research purposes:
  1. Verify Institutional Licensing
    • Ensure your lab or organization holds authorization to handle controlled cannabinoids.
  2. Select Certified Chemical Vendors
    • Work only with suppliers registered under national chemical safety programs.
  3. Submit Required Documentation
    • Typically includes institutional credentials, end-use declaration, and compliance permits.
  4. Maintain Records and Audits
    • Keep full traceability of acquisition, storage, and research use for regulatory audits.
  5. Safe Handling and Disposal
    • Follow hazardous material guidelines, ensuring secure containment and approved chemical waste management.
⚠️ It is illegal to purchase, possess, or use NM-2201 for recreational or non-research purposes in most countries. Conclusion NM-2201 powder represents an important yet tightly controlled class of synthetic cannabinoids studied for their receptor activity and toxicological profiles. While once part of broader chemical research, it is now heavily regulated globally due to misuse potential and health risks. Legitimate access remains restricted to licensed research institutions, forensic labs, and regulated analytical suppliers. Researchers focusing on cannabinoid receptor science or toxicology can continue to study NM-2201’s mechanisms — provided strict compliance with local and international laws. Targets (Safe and High-Value)
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  Buy NM-2201 Powder Online Buy NM-2201 powder/ CAS 837112-21-7/online .also known as CBL-2201, is a synthetic cannabinoid that is structurally related to compounds like 5F-PB-22 and NNE1. It is used primarily for research purposes and is not intended for human or animal consumption. Chemical Information
  • Name: NM-2201
  • Synonyms: Naphthalen-1-yl 1-(5-fluoropentyl)-1H-indole-3-carboxylate; CBL-2201; GH-2201
  • CAS Number: 837122-21-7
  • Molecular Formula: C24H22FNO2
  • Molecular Weight: 375.4 g/mol
  • IUPAC Name: 1-(5-Fluoro-pentyl)-1H-indole-3-carboxylic acid naphthalen-1-yl ester
  • Exact Mass: 375.16 g/mol
Properties
  • Appearance: Powder
  • Purity: ≥98.05%
  • Storage: Store in a cool, dry place. Stability is up to 2 years under proper storage conditions.
  • Solubility: Typically soluble in organic solvents like acetonitrile.
Usage
  • Intended Use: NM-2201 is intended for research and forensic applications only. It is not suitable for human consumption or use in any medical or cosmetic products.
  • Effects: As an analogue of AM-2201, NM-2201 is expected to have similar effects, binding to CB1 and CB2 receptors with high affinity. However, detailed toxicological and physiological properties are not well-documented.
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  • Product Name: NM-2201 Powder
  • Purity: 98.05%
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