Sermorelin
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Existing research has found the following:
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Supports Growth Hormone Stimulation Research – Studied for its potential to enhance endogenous GH secretion through pituitary activation.
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Explores Muscle Growth & Recovery Mechanisms – Investigated for promoting lean tissue development and aiding post-exertion recovery.
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Evaluates Metabolic & Lipolytic Effects – Examined for its role in improving fat oxidation and supporting metabolic balance in research models.
Description
Growth Hormone Secretion Pathways
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Sermorelin (GRF 1–29) is a synthetic peptide analog of growth-hormone–releasing hormone (GHRH) that has been studied in pre-clinical and cellular models for its ability to stimulate pituitary GH release and upregulate IGF-1–related pathways in endocrine research.
Skeletal-Muscle Growth and Recovery
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Experimental studies demonstrate that Sermorelin-induced GH signaling supports myoblast proliferation, protein synthesis, and recovery mechanisms in muscle-tissue culture and animal models, providing a platform for anabolic and regenerative research.
Metabolic and Lipid Oxidation Studies
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In non-clinical systems, GH-axis modulation by Sermorelin has been linked to enhanced fat oxidation, improved mitochondrial efficiency, and altered nutrient-partitioning patterns, making it a valuable compound for studying metabolic regulation.
Sleep and Circadian Rhythm Research
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Pre-clinical literature suggests that Sermorelin may influence pulsatile GH secretion during slow-wave sleep phases, enabling investigations into neuroendocrine feedback loops and circadian hormone rhythms.
Dermal and Collagen-Synthesis Models
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In fibroblast and tissue-culture systems, GH and IGF-1 signaling stimulated by GHRH analogs such as Sermorelin has been associated with collagen synthesis and extracellular-matrix remodeling, supporting studies in skin physiology and repair.
Immune Modulation Research
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GH-axis stimulation has been explored for its potential to influence cytokine expression and immune-cell function, allowing use of Sermorelin in immune-regulation and recovery-assay models.
Cognitive and Neuroendocrine Studies
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Non-clinical investigations link GH signaling to neuroplasticity and neurotrophic-factor modulation, making Sermorelin a relevant research compound for studying memory, focus, and cognitive resilience.
STORAGE DETAILS
Lyophilized Sermorelin peptide is stable at room temperature for 90 days; however, it should NOT be stored below freezing for any extended period. After reconstitution, refrigerate at ≤36°F.
Product Specifications
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Appearance: Solid, white powder in 3mL glass ampule
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Chemical Formula: C149H246N44O42S
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PubChem CID: 16133819
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CAS Number: 86168-78-7
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Molecular Weight: 3357.96 g/mol
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Synonyms: GRF 1-29, GHRH 1-29, 86168-78-7
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Storage: Store at ≤6°C, sealed, away from heat, light, and moisture.
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Concentration: ≥98%
Research Use Only (RUO). Not for human or animal use. Not for diagnostic, therapeutic, or clinical applications. No claims are made regarding growth hormone stimulation, fat loss, or anti-aging effects in humans. End-user assumes responsibility for determining suitability for specific research protocols.






