Research Chemical

1P-ETH-LAD

Molecular Structure

1P-ETH-LAD molecular structure
Purity
>=98%
Duration
8-12 hours

Overview

1P-ETH-LAD is a lysergamide prodrug analog studied for structure-activity relationships. This compound is widely used in analytical chemistry research as a reference standard and for pharmacological studies investigating receptor mechanisms and structure-activity relationships.

The history of 1P-ETH-LAD traces back to the research into lysergic acid derivatives that began in the mid-20th century. Following Albert Hofmann's groundbreaking discovery of LSD in 1943, researchers have continuously explored structural modifications to understand structure-activity relationships in ergoline compounds. 1P-ETH-LAD emerged as part of this ongoing research into prodrugs and analogs of classical psychedelics. Research into 1P-ETH-LAD gained momentum in the early 21st century as part of broader investigations into legal alternatives to controlled substances. Scientists studying serotonin 5-HT2A receptor pharmacology recognized the compound's value as a research tool for understanding how subtle structural modifications affect receptor binding affinity and functional activity. The compound has since become an important reference standard in analytical chemistry laboratories worldwide. Academic institutions and pharmaceutical research facilities have utilized 1P-ETH-LAD to advance our understanding of psychedelic pharmacology, particularly regarding receptor selectivity, metabolic pathways, and structure-function relationships. This research has contributed valuable data to the fields of neuropharmacology and medicinal chemistry, helping researchers develop more selective therapeutic compounds.

As a lysergamide derivative, 1P-ETH-LAD acts primarily on serotonin 5-HT2A receptors in the brain, producing characteristic psychedelic effects. Research suggests this compound binds to these receptors with high affinity, triggering downstream signaling cascades that modulate perception, cognition, and mood.

1P-ETH-LAD holds significant value in scientific research due to its well-characterized properties and legal accessibility in several jurisdictions. This enables comprehensive pharmacological studies and analytical method development.

High-purity 1P-ETH-LAD (≥98% by HPLC) serves as a crucial reference standard in research laboratories, quality control testing, and academic research settings. Its consistent quality makes it ideal for method development and validation.

Technical Specifications

Molecular FormulaC26H33N3O
AppearanceWhite to off-white crystalline powder
Purity>=98%
Storage ConditionsStore at -20°C in a dark, dry place.
Shelf Life2 years when stored properly

Why Researchers Choose 1P-ETH-LAD

🔬Analytical Reference Standard

1P-ETH-LAD serves as a certified reference material (CRM) in forensic toxicology laboratories. Its high purity (≥98% HPLC) makes it essential for calibrating analytical instruments, validating detection methods, and developing screening protocols for lysergamides.

🧬Pharmacological Research

Researchers utilize 1P-ETH-LAD to investigate serotonin 5-HT2A receptor mechanisms and structure-activity relationships in lysergamide compounds. Its availability enables comparative pharmacology studies without regulatory constraints.

📊Quality Control Testing

Laboratories employ 1P-ETH-LAD standards for method development, equipment qualification, and proficiency testing. Its stability and chromatographic properties make it ideal for establishing robust QC protocols.

Research Applications

1P-ETH-LAD is commonly used in various scientific research contexts:

1
Analytical reference standard
2
Pharmacological research
3
Quality control
4
Forensic toxicology

Important: All research applications are for in vitro and analytical purposes only. Not for human or veterinary use.

Chemical Properties

Solubility Data

DMSO
10 mg/ml
Ethanol
5-10 mg/ml
Water
Poorly soluble

Analytical Methods

HPLC-UV
GC-MS
LC-MS/MS

External Chemical Databases

Safety & Hazard Information

Signal Word:Warning
⚠️
⚠️

Hazard Statements (H):

  • H302: Harmful if swallowed
  • H315: Causes skin irritation
  • H319: Causes serious eye irritation

Precautionary Statements (P):

  • P261: Avoid breathing dust
  • P264: Wash hands thoroughly
  • P280: Wear protective equipment

Common Effects

Visual hallucinations
Altered perception
Euphoria

Legal Status by Country

Click any country to view detailed legal information and shipping regulations.

Frequently Asked Questions

Q:What is 1P-ETH-LAD used for in research?

1P-ETH-LAD is primarily used as an analytical reference standard in forensic toxicology, pharmacological research, quality control testing, and method development. It is NOT intended for human or veterinary use.

Q:How should 1P-ETH-LAD be stored?

Store 1P-ETH-LAD at -20°C in a dark, dry environment. Protect from light and moisture to maintain stability. When stored properly, research chemicals have a shelf life of approximately 2 years. Always use amber glass vials with proper sealing.

Q:Is 1P-ETH-LAD legal in my country?

Legal status varies by jurisdiction. 1P-ETH-LAD is legal for research purposes in several EU countries including Ireland, Italy as of 2026. Always verify current regulations in your specific location before ordering.

Q:What analytical methods are used to test 1P-ETH-LAD purity?

High-Performance Liquid Chromatography with UV detection (HPLC-UV) is the primary method for purity analysis. Additional confirmation methods include Gas Chromatography-Mass Spectrometry (GC-MS), Liquid Chromatography-Mass Spectrometry (LC-MS/MS), and Nuclear Magnetic Resonance (NMR) spectroscopy.

Q:What is the minimum purity guaranteed for EuroChems 1P-ETH-LAD?

All EuroChems 1P-ETH-LAD products are guaranteed to be ≥98% pure as verified by HPLC analysis. Each batch includes a Certificate of Analysis (COA) confirming purity specifications.

Related Research

Similar Compounds

Safety Notice

This compound is for research purposes only. Not for human consumption. Always use proper safety equipment and follow all applicable regulations.