Sermorelin (10 Vials)

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For Laboratory Research Only: This listing is intended strictly for qualified researchers conducting laboratory work. Completing a purchase confirms you meet this criteria and will not use the product for personal or human consumption.
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Description

Sermorelin

Sermorelin is a synthetic replica of the first 29 amino acids of GHRH, the signal the brain sends to prompt the pituitary gland into releasing growth hormone. It’s the shortest GHRH fragment that still fully activates the GHRH receptor, which makes it a well-established tool for research into physiological GH stimulation. Rather than introducing GH directly, sermorelin prompts the body to produce its own, leaving the natural feedback loop intact.

Key research findings

  • Research confirmed sermorelin doesn’t override the hypothalamus’s own regulation of GH, growth hormone still rises and falls in its normal physiological rhythm instead of staying constantly elevated the way direct GH administration would cause (Vittone et al., 1997)
  • In human subjects, intravenous administration produced a distinct GH pulse peaking 20 to 30 minutes after dosing, pharmacodynamic data that underpins its use as a diagnostic challenge test for assessing GH deficiency (Vittone et al., 1997)
  • In studies involving older male subjects, sermorelin raised both serum GH and IGF-1 levels, alongside measurable shifts in body composition, gains in lean mass and reductions in fat mass, making it relevant to research on age-related decline in the GH axis (Vittone et al., 1997)
  • Pharmacokinetic studies pinpointed rapid enzymatic breakdown by DPP-IV as sermorelin’s core limitation (half-life of roughly 10 to 20 minutes), a finding that drove the development of longer-acting GHRH analogues such as tesamorelin and CJC-1295 with DAC (Laron & Frenkel, 2004)

For research use only. Not intended for use in humans or animals.

References

Laron, Z., & Frenkel, J. (2004). https://pubmed.ncbi.nlm.nih.gov/15139958/

Vittone, J., et al. (1997). https://pubmed.ncbi.nlm.nih.gov/9453680/

Additional information

Size

10mg/vial

What is a peptide, exactly?

Peptides are short chains of amino acids, smaller than proteins, that function as signalling molecules within biological systems. They're involved in processes such as tissue repair, immune activity, and communication between cells.

What role do peptides play in research?

Peptides are studied for how selectively they bind to receptors and influence specific cellular pathways. That precision makes them a valuable tool in laboratory settings for investigating how biological systems function at a molecular level.

What are my payment options?

Card payment, UK bank transfer, and cryptocurrency (Bitcoin and Ethereum) are all accepted.

How do I store this product correctly?

This product ships lyophilised (freeze-dried) to remain stable throughout transit and storage. Keep it cool, dry, and shielded from direct light before use, refrigerating if holding it longer term. Once reconstituted, refrigerate immediately and handle with standard sterile technique to preserve integrity.

What are your shipping timeframes?

Delivery is UK-only. Orders placed before 2pm on a business day go out same-day; anything later, or placed on a weekend, ships the next business day. Most orders arrive within 48 hours of dispatch, with tracking sent directly to you. Orders over £200 ship free automatically.

What's your policy on returns?

As a research product, this item isn't eligible for standard returns. If it arrives damaged or you received the wrong item, reach out within 48 hours and we'll get it resolved.

How is purity confirmed for this product?

Every batch is independently tested in a laboratory before listing, confirming it meets research-grade purity standards. A Certificate of Analysis is available for this product.

Sermorelin

Sermorelin is a synthetic replica of the first 29 amino acids of GHRH, the signal the brain sends to prompt the pituitary gland into releasing growth hormone. It’s the shortest GHRH fragment that still fully activates the GHRH receptor, which makes it a well-established tool for research into physiological GH stimulation. Rather than introducing GH directly, sermorelin prompts the body to produce its own, leaving the natural feedback loop intact.

Key research findings

  • Research confirmed sermorelin doesn’t override the hypothalamus’s own regulation of GH, growth hormone still rises and falls in its normal physiological rhythm instead of staying constantly elevated the way direct GH administration would cause (Vittone et al., 1997)
  • In human subjects, intravenous administration produced a distinct GH pulse peaking 20 to 30 minutes after dosing, pharmacodynamic data that underpins its use as a diagnostic challenge test for assessing GH deficiency (Vittone et al., 1997)
  • In studies involving older male subjects, sermorelin raised both serum GH and IGF-1 levels, alongside measurable shifts in body composition, gains in lean mass and reductions in fat mass, making it relevant to research on age-related decline in the GH axis (Vittone et al., 1997)
  • Pharmacokinetic studies pinpointed rapid enzymatic breakdown by DPP-IV as sermorelin’s core limitation (half-life of roughly 10 to 20 minutes), a finding that drove the development of longer-acting GHRH analogues such as tesamorelin and CJC-1295 with DAC (Laron & Frenkel, 2004)

For research use only. Not intended for use in humans or animals.

References

Laron, Z., & Frenkel, J. (2004). https://pubmed.ncbi.nlm.nih.gov/15139958/

Vittone, J., et al. (1997). https://pubmed.ncbi.nlm.nih.gov/9453680/