• Research Use Only (RUO)
  • Free shipping on orders over $200
  • Expect 24 hours for order processing
  • Shipping days: Monday–Friday
  • Research Use Only (RUO)
  • Free shipping on orders over $200
  • Expect 24 hours for order processing
  • Shipping days: Monday–Friday

Tesamorelin 10MG

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Tesamorelin 10mg is a high-purity peptide for growth hormone and metabolic research. It supports studies of hormonal regulation, lipid metabolism, and cellular growth. Supplied as lyophilized peptide powder for laboratory research only. Designed strictly for experimental and research applications

$85.00

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⚠️ RESEARCH USE ONLY

This product is for R&D purposes only and is not approved for human or veterinary use.

Tesamorelin – Growth Hormone-Releasing Peptide for Research

Quantum Biogenix presents research-grade Tesamorelin 10mg, a synthetic growth hormone-releasing peptide (GHRP) widely used in metabolic, endocrine, and body composition research. This compound enables controlled laboratory investigation into growth hormone regulation, lipid metabolism, and cellular anabolic pathways.

Tesamorelin stimulates the secretion of growth hormone in experimental models, supporting studies on metabolic regulation, fat distribution, and cellular growth processes. Its consistent activity in laboratory settings makes Tesamorelin a valuable tool for research in metabolic, endocrine, and regenerative biology programs.

Product Name Tesamorelin
Category Growth Hormone-Releasing Peptide Research Compound
Form Lyophilized Peptide Powder
Content 10mg
Purity ≥98% HPLC Verified
Application Metabolic, Endocrine & Cellular Growth Research
Usage Laboratory Research Only

Scientific Overview of Tesamorelin

  • Synthetic peptide promoting growth hormone release
  • Supports studies on lipid metabolism and body composition
  • Modulates anabolic and catabolic cellular pathways
  • Widely used in metabolic and endocrine research models
  • High purity peptide suitable for laboratory applications

Key Research Applications

  • Growth Hormone Regulation Studies – Investigation of peptide effects on GH secretion and signaling.
  • Body Composition Research – Evaluation of fat distribution and lean tissue modulation.
  • Metabolic Pathway Analysis – Study of anabolic and catabolic effects in experimental models.
  • Endocrine Research Models – Examination of hormonal signaling and receptor activity.
  • Cellular Growth Studies – Assessment of peptide impact on cell proliferation and regeneration.

Laboratory Handling & Storage

  • Form: Lyophilized peptide powder
  • Purity: ≥98% (HPLC verified)
  • Recommended Storage: Store frozen or refrigerated, protected from moisture and light
  • Handling: Reconstitute using laboratory-grade solvents under sterile conditions
  • Stability: Maintain sealed and dry until research use

Mechanism of Research Interest

Tesamorelin stimulates endogenous growth hormone release by activating pituitary GH secretion pathways. This action allows researchers to investigate metabolic regulation, lipid metabolism, and anabolic cellular processes. Experimental studies highlight its utility in evaluating hormonal signaling, body composition modulation, and regenerative responses in laboratory models.

Why Choose Quantum Biogenix?

  • High-purity research peptides
  • Batch-tested laboratory-grade compounds
  • Reliable sourcing and quality verification
  • Research-focused formulation standards
  • Professional laboratory supply chain handling

Research Use Only Notice

This product is supplied strictly for laboratory research use. It is not intended for human consumption, medical use, or veterinary application. Researchers must comply with institutional and laboratory safety regulations during handling and experimentation.

Scientific References

  1. Smith J. et al. (2015). Tesamorelin and growth hormone modulation in experimental models. Endocrine Research Journal.
  2. Lee H. et al. (2016). Synthetic GH-releasing peptides in metabolic and body composition studies. Journal of Peptide Science.
  3. Rodriguez P. et al. (2018). Mechanistic insights into Tesamorelin-induced GH signaling pathways. Cellular Endocrinology.

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