Tesamorelin 20mg

 139,00

Tesamorelin 20 mg – Grail Formula Quality.
Researched and verified with Liquilabs s.r.o. Czechia.
Analytical testing confirms 99.7 % purity, assay content verified at 17.30 mg, molecular ion mass identified at 5135 Da and endotoxin levels at 0.002 EU/mg.
Supplied as a 20 mg lyophilized peptide with full COA traceability.
For research use only — not for human or veterinary use.

Availability: In stock: ships within 1 day after payment confirmation.

Tesamorelin 20 mg is a high-purity lyophilized peptide research compound supplied exclusively for scientific investigation and controlled laboratory experimentation. For research use only — not for human or veterinary use.  

Product Overview

Tesamorelin is a synthetic peptide research compound developed for advanced laboratory investigations involving peptide receptor biology, endocrine signalling and intracellular communication pathways. Its precisely engineered molecular structure and highly reproducible analytical profile have established Tesamorelin as one of the most extensively recognised peptides within modern peptide science. Researchers continue to investigate its molecular characteristics and receptor-mediated signalling mechanisms under carefully controlled laboratory conditions. This preparation contains 20 mg of lyophilized Tesamorelin supplied in a sealed research vial. Independent analytical testing confirmed an assay content of 17.30 mg for this production batch. Lyophilization preserves peptide stability during storage while allowing controlled reconstitution for laboratory experimentation. With its verified molecular identity, exceptional analytical purity and comprehensive third-party laboratory verification, Tesamorelin serves as a reliable research material suitable for advanced peptide investigations and controlled in vitro laboratory studies.  

Peptide Overview

Tesamorelin is a synthetic peptide research compound commonly utilised in laboratory investigations involving peptide chemistry, receptor biology and intracellular signalling systems. Researchers employ Tesamorelin in controlled experimental models designed to investigate peptide-mediated receptor activation, molecular communication pathways and complex biochemical regulatory mechanisms. Its reproducible analytical characteristics, stable manufacturing profile and well-defined molecular identity have contributed to its continued importance within peptide pharmacology and modern laboratory research. Today, Tesamorelin continues to appear throughout scientific literature involving peptide biology, molecular pharmacology, biochemical regulation and controlled experimental investigations.  

Historical Background and Scientific Context

Scientific advances in peptide engineering have enabled the development of highly specialised synthetic peptides for investigating receptor-mediated signalling pathways and intracellular molecular communication. Modern analytical technologies including ultra-high-performance liquid chromatography, Fourier-transform infrared spectroscopy and high-resolution mass spectrometry provide comprehensive verification of peptide identity, purity and manufacturing consistency, allowing researchers to investigate laboratory-grade peptide compounds with increasing confidence. As peptide science continues to evolve, Tesamorelin remains an important investigational compound utilised in controlled laboratory research involving peptide biology, molecular signalling and biochemical regulatory systems. Today, Tesamorelin continues to contribute to scientific investigations involving peptide chemistry, receptor biology and advanced in vitro experimentation.  

Mechanistic Focus in Research

Within controlled laboratory environments, Tesamorelin is commonly investigated in relation to peptide receptor signalling and intracellular molecular communication. Research investigations frequently explore:
  • Peptide receptor signalling pathways
  • Intracellular communication systems
  • Molecular signalling dynamics
  • Biochemical regulatory mechanisms
  • Endocrine signalling research
  • Comparative peptide investigations
  • Controlled molecular pathway analysis
These experimental models allow researchers to investigate complex peptide-mediated biochemical mechanisms while maintaining carefully controlled laboratory conditions.  

Analytical Verification (COA)

Each batch of Tesamorelin supplied by Grail Formula undergoes comprehensive independent third-party laboratory verification to confirm peptide identity, assay content, purity and microbiological safety. Analytical testing for this batch was performed by Liquilabs s.r.o. (Czechia) using validated chromatographic, spectrometric, microbiological and mass spectrometry techniques. Batch: GF-TESA20-B242
  • Assay Content: 17.30 mg
  • Purity: 99.7 percent
  • Identification by FTIR Spectrum: 987
  • Identification by Retention Time: 0.991
  • Molecular Ion Mass Identification: 5135 Da
  • Bacterial Endotoxins: 0.002 EU/mg
  • Total Aerobic Microbial Count: 0 CFU/g
  • Total Yeast and Mold Count: 0 CFU/g
Independent elemental impurity analysis confirmed no detectable arsenic, cadmium, cobalt, lead, mercury, nickel or vanadium, with all measured concentrations remaining below the laboratory detection limit. Additional microbiological testing confirmed no detectable aerobic microorganisms, yeasts or moulds, supporting laboratory-grade quality standards suitable for controlled scientific investigation. These analytical procedures provide confirmation of peptide identity, purity, traceability and batch consistency while ensuring every production batch meets Grail Formula’s strict research quality standards.  

Research Applications

Within controlled laboratory environments, Tesamorelin may be utilised in experimental models designed to investigate peptide biology, receptor signalling pathways, intracellular communication systems and biochemical regulatory mechanisms. Examples of research applications include:
  • Peptide biology investigations
  • Receptor signalling research
  • Molecular pathway analysis
  • Biochemical regulation studies
  • Comparative peptide investigations
  • Cellular communication research
  • Controlled in vitro peptide studies
These applications are intended exclusively for scientific and laboratory investigation.  

Grail Formula Quality

Every Grail Formula research compound is manufactured under strict quality control procedures and supported by comprehensive independent analytical verification. Each production batch undergoes extensive testing to verify:
  • Peptide identity confirmation
  • Assay content verification
  • Purity assessment
  • Molecular ion mass verification
  • Retention time confirmation
  • FTIR spectrum identification
  • Endotoxin analysis
  • Microbial contamination screening
  • Heavy metal screening
  • Complete batch traceability
Independent laboratory testing helps ensure every batch provides reliable, reproducible research material suitable for advanced scientific investigation.  

When You Choose Grail Formula

When selecting Grail Formula, researchers receive independently verified research compounds supported by complete Certificates of Analysis and transparent batch-specific laboratory documentation. Our analytical verification programme includes assay determination, purity confirmation, FTIR spectrum identification, retention time verification, molecular ion mass identification, endotoxin screening, microbiological analysis and comprehensive heavy metal testing. Every production batch is accompanied by a downloadable Certificate of Analysis issued by Liquilabs s.r.o. Czechia, providing complete traceability, independent verification and confidence in the analytical quality of every research compound supplied.  

Research Use Limitation

  • Used solely for laboratory and in vitro research
  • Not approved for human consumption
  • Not approved for veterinary use
  • Not intended for diagnostic purposes
  • Not intended for therapeutic applications
  • Not permitted for clinical administration
  • For research use only
  • Independently analysed by Liquilabs s.r.o. Czechia
  • 99.7 % purity confirmed by COA
  • Assay content verified at 17.30 mg
  • Identification confirmed by FTIR spectrum and retention time analysis
  • Molecular ion mass identified at 5135 Da
  • Bacterial endotoxin level 0.002 EU/mg
  • No detectable heavy metals or microbial contamination
  • Research-grade peptide compound
  • For research use only – not for human or veterinary use

For laboratory research only. Not intended for human consumption, injection, or cosmetic use.

This product is for research purposes only. Not for human use or diagnostic/therapeutic applications. Keep out of reach of children.

Third-Party Tested

Public COAs

Batch Verified

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