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Description
Sermorelin is a synthetic peptide derived from an endogenous hormone called growth hormone-releasing hormone (GHRH). Similar to GHRH, sermorelin exerts its effects in the pituitary gland by binding to somatotroph cells leading to secretion of growth hormone.
The peptide was previously approved by the United States Food and Drug Administration (FDA) for treatment of short stature disorder, proving to be safe and effective at inducing catch-up growth in undersized children through increasing GH and insulin-like growth factor 1 (IGF-1).
Similarly, human trials have demonstrated that sermorelin can safely increase GH and IGF-1 levels in healthy older adults, leading to fat loss and increased lean body mass.
Sermorelin and related GH-releasing peptides are the subject of research interest based on claims that they can deliver several highly sought-after anti-aging effects associated with increased GH such as improved body composition, thicker skin, improved well-being, and libido.

What is Sermorelin?
Sermorelin, originally referred to as GHRH (1-29), is a 29 amino acid peptide derived from the first 29 amino acids of the endogenous peptide hormone, growth hormone-releasing hormone (GHRH).
Sermorelin falls into a category of compounds called growth hormone secretagogues (GHSs), defined by the ability to increase the natural production of growth hormone (GH).
Within the family of GHSs, there are two subcategories:
• Compounds that bind to the growth hormone secretagogue receptor (GHS-R), which is the receptor for ghrelin; and,
• Compounds that bind to the growth hormone-releasing hormone receptor (GHRHR), which is the receptor for endogenous GHRH.
Sermorelin falls into the second category of GHSs that bind to GHRH, which is not surprising as it is an identical 29-amino acid fragment derived from GHRH.
Sermorelin first received FDA approval in 1990 for diagnosis of GH deficiency. This is due to the peptide's ability to rapidly increase GH secretion, making it a useful diagnostic tool for determining the cause of growth deficiencies in children.
Further evaluation of sermorelin in children led to a second FDA approval in 1997 for treatment of children with growth failure due to idiopathic GH deficiency, as it was shown to increase GH release and growth velocity in children during a 36-month study.
What Does Sermorelin Do?
Sermorelin is a 29-amino acid peptide derivative of the endogenous peptide hormone GHRH, that retains the full functional activity of GHRH, due to the fact that the sermorelin peptide includes the GHRH receptor binding domain.
Sermorelin has a rapid half life of 11-12 minutes when administered via injection and exerts its effects by binding to the GHRH receptor at the pituitary gland. This leads to stimulation of growth hormone secretion by the pituitary gland, independent of changes to other hormones such as luteinizing hormone (LH), follicle-stimulating hormone (FHS), prolactin, cortisol, glucose, glucagon, or thyroid stimulating hormone (TSH).
Unlike administration of GH which introduces an unnatural, single bolus of the hormone, sermorelin leads to stimulation of pulsatile GH secretion that mirrors endogenous secretion patterns . It is hypothesized that GH secretion in this pulsatile fashion over a 24-hour period is important for reaping the full benefits of the GH-IGF-1 axis.
An important byproduct of sermorelin's targeting of the underlying regulatory feedback pathway is that GH and IGF-1 levels are maintained in a physiological range, avoiding the negative consequences of GH therapy.
Similar to hGH administration, the most notable effects of sermorelin are around increased lipolysis due to direct action of GH on adipose tissue and increased lean body mass due to upregulation of IGF-1 secretion.
Due to these unique properties, sermorelin is useful to researchers interested in an alternative to exogenous rhGH administration that can produce the following effects, all otherwise associated with rhGH:
• Diagnosis of growth hormone deficiency
• Treatment of low IGF-1 levels
• Improvements in body composition and fat loss
• Improved muscle strength and exercise performance
• Increased skin thickness
• Improved memory and well-being
• Increased resting energy expenditure
Sermorelin peptides and other peptides
Sermorelin HGH and other peptides have quickly gained a huge amount of interest from bodybuilders for stimulating growth hormone, enhancing muscle growth and helping users lose weight.
Although, typically, the focus is around growth hormone, peptides such as Sermorelin achieve these goals in part by stimulating the liver to release insulin-like growth factor-1 (IGF-1). Then, IGF-1 works to trigger muscle protein production, helping users build muscle mass – while also promoting the breakdown of body fat.
As synthetic HGH was banned by the likes of the International Olympic Committee from 1989 onwards, users previously using HGH drugs looked to new alternatives. Since bodybuilders have explored new avenues, many claim that GHSs offer many benefits of HGH, with fewer side effects.
The most popular GHSs used for bodybuilding include:
●Growth-hormone releasing hormones: such as sermorelin, tesamorelin, CJC-1293, and CJC-1295.
●Ghrelin and compounds mimicking its actions: such as lenomorelin, anamorelin, ipamorelin, macimorelin, and tabimorelin.
●Growth hormone-releasing peptides (GHRPs): such as alexamorelin, GHRP-1, GHRP-2, GHRP-3, GHRP-4, GHRP-5, GHRP-6, and hexarelin.Sermorelin vs HGH
So, why should users opt for Sermorelin vs human growth hormone?
Although many users seek 'Sermorelin HGH', Sermorelin isn't actually growth hormone itself. So, unlike a synthetic growth hormone drug, you're not putting growth hormone into your body, but instead stimulating the pituitary gland and HGH production.
With HGH prohibited for off-label use, HGH therapy is typically only used in a medical setting, for conditions that may cause muscle wastage – not for bodybuilding.
If we go by this comparison of Sermorelin and synthetic HGH, Sermorelin should have fewer side effects.
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