Research Disclaimer: This content discusses research peptides for scientific investigation only. These compounds are not approved for human consumption, medical use, or therapeutic applications. Information presented is for educational purposes and should not be construed as medical advice.
Growth hormone-releasing peptide-2 (GHRP-2) is a synthetic hexapeptide that stimulates growth hormone (GH) release from the pituitary gland. As a member of the growth hormone secretagogue (GHS) family, GHRP-2 has been extensively utilized in research investigating GH regulation, ghrelin receptor pharmacology, and neuroendocrine physiology.
Molecular Structure and Properties
GHRP-2 is a synthetic peptide composed of six amino acids with D-amino acid substitutions to enhance stability and oral bioavailability.
Structural characteristics:
Sequence: D-Ala-D-β-Nal-Ala-Trp-D-Phe-Lys-NH₂
Molecular weight: ~817 Da
Synthetic design: Incorporates D-amino acids for peptidase resistance
Half-life: ~20 minutes after intravenous administration
Classification: Growth hormone secretagogue (GHS)
Receptor Pharmacology
Growth Hormone Secretagogue Receptor (GHS-R)
GHRP-2 exerts its effects primarily through the GHS-R1a receptor, also known as the ghrelin receptor. This G-protein coupled receptor (GPCR) is expressed in multiple tissues:
Pituitary gland: Somatotroph cells that produce growth hormone
Hypothalamus: Arcuate nucleus and other regions regulating GH secretion
Brain regions: Hippocampus, substantia nigra, ventral tegmental area
Gene expression: GH-responsive genes in liver and other tissues
Body composition: DEXA, MRI, or CT imaging for chronic studies
Comparison with Related Compounds
Compound
Type
GH Release Potency
Research Notes
GHRP-2
Synthetic GHS
High
Robust GH release, well-characterized
GHRP-6
Synthetic GHS
High
First-generation GHRP, strong appetite effects
Ipamorelin
Synthetic GHS
Moderate
More selective, minimal cortisol/prolactin effects
Ghrelin
Natural hormone
Moderate-High
Endogenous ligand, requires acylation
GHRH
Hypothalamic hormone
High
Different receptor, synergizes with GHRPs
Experimental Considerations
Study Design Factors
Researchers should account for:
Baseline GH status: Age, sex, nutritional state affect response magnitude
Time of day: Circadian rhythms influence GH secretion
Anesthesia effects: Some anesthetics suppress GH release
Stress responses: Handling and procedures can affect GH levels
Species differences: GH secretory patterns vary across species
Potential Confounds
Additional hormonal effects to consider:
Cortisol/corticosterone: GHRP-2 may elevate stress hormones
Prolactin: Some GH release may coincide with prolactin elevation
ACTH: Activation of hypothalamic-pituitary-adrenal axis
Appetite hormones: Changes in leptin, ghrelin, and other signals
Storage and Handling
Proper peptide handling ensures research reliability:
Store lyophilized powder at -20°C or below in sealed container
Protect from light, heat, and moisture
Reconstitute with sterile water, bacteriostatic water, or appropriate buffer
Refrigerate reconstituted solution at 2-8°C
For longer storage, aliquot and freeze at -80°C
Avoid repeated freeze-thaw cycles
Use reconstituted peptide within recommended timeframe
Quality Standards
Research-grade GHRP-2 should meet rigorous specifications:
Purity: ≥98% by HPLC analysis
Identity: Confirmed by mass spectrometry (expected m/z ~817)
Certificate of analysis: Third-party testing documentation
Endotoxin levels: <1.0 EU/mg for in vivo applications
Storage conditions: Maintained throughout supply chain
Batch documentation: Lot number, synthesis date, expiration
Current Research Directions
Ongoing investigations explore:
Development of longer-acting GHS analogs for sustained GH elevation
GHS-R biased agonism and selective signaling pathways
Role of peripheral GHS-R in cardiovascular and metabolic function
Interaction between GHS-R and dopamine systems
Neuroprotective mechanisms in neurodegenerative models
Effects on bone metabolism and skeletal health
Potential synergies with other metabolic modulators
Research Safety Considerations
Laboratory personnel should observe proper precautions:
Handle as potentially bioactive compound
Use appropriate PPE (gloves, lab coat, eye protection)
Avoid direct skin contact or inhalation
Follow institutional biosafety guidelines
Dispose of properly according to regulations
Maintain accurate records of usage and storage
Summary
GHRP-2 represents a well-characterized research tool for investigating growth hormone physiology, ghrelin receptor pharmacology, and metabolic regulation. Its robust and reproducible GH-releasing effects, combined with relatively well-understood mechanisms of action, make it valuable for diverse research applications. Proper experimental design, appropriate controls, and attention to factors influencing GH secretion are essential for generating reliable and interpretable research data.
Important: GHRP-2 is intended for research purposes only and is not approved for human use, medical applications, or therapeutic interventions.
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GH-Releasing Peptide-2: Research Tool for Growth Hormone Studies
Research Disclaimer: This content discusses research peptides for scientific investigation only. These compounds are not approved for human consumption, medical use, or therapeutic applications. Information presented is for educational purposes and should not be construed as medical advice.
Growth hormone-releasing peptide-2 (GHRP-2) is a synthetic hexapeptide that stimulates growth hormone (GH) release from the pituitary gland. As a member of the growth hormone secretagogue (GHS) family, GHRP-2 has been extensively utilized in research investigating GH regulation, ghrelin receptor pharmacology, and neuroendocrine physiology.
Molecular Structure and Properties
GHRP-2 is a synthetic peptide composed of six amino acids with D-amino acid substitutions to enhance stability and oral bioavailability.
Structural characteristics:
Receptor Pharmacology
Growth Hormone Secretagogue Receptor (GHS-R)
GHRP-2 exerts its effects primarily through the GHS-R1a receptor, also known as the ghrelin receptor. This G-protein coupled receptor (GPCR) is expressed in multiple tissues:
Mechanism of GH Release
GHRP-2 stimulates GH secretion through multiple pathways:
Research Applications
Growth Hormone Physiology
GHRP-2 serves as a valuable tool for investigating:
Ghrelin System Research
As a ghrelin receptor agonist, GHRP-2 enables studies of:
Metabolic Research
Investigators utilize GHRP-2 to examine:
Neuroscience Applications
Research has explored GHRP-2 effects on:
Experimental Findings
GH Secretion Patterns
Research studies have characterized GHRP-2-induced GH release:
Metabolic Effects
Studies in animal models have reported:
Appetite and Food Intake
Investigations of feeding behavior have found:
Experimental Protocols
In Vivo Research Design
Common experimental approaches include:
In Vitro Studies
Cell-based research examines:
Analytical Methods
Growth Hormone Measurement
GH quantification techniques include:
Downstream Effects
Assessment of GH-mediated responses:
Comparison with Related Compounds
Experimental Considerations
Study Design Factors
Researchers should account for:
Potential Confounds
Additional hormonal effects to consider:
Storage and Handling
Proper peptide handling ensures research reliability:
Quality Standards
Research-grade GHRP-2 should meet rigorous specifications:
Current Research Directions
Ongoing investigations explore:
Research Safety Considerations
Laboratory personnel should observe proper precautions:
Summary
GHRP-2 represents a well-characterized research tool for investigating growth hormone physiology, ghrelin receptor pharmacology, and metabolic regulation. Its robust and reproducible GH-releasing effects, combined with relatively well-understood mechanisms of action, make it valuable for diverse research applications. Proper experimental design, appropriate controls, and attention to factors influencing GH secretion are essential for generating reliable and interpretable research data.
Important: GHRP-2 is intended for research purposes only and is not approved for human use, medical applications, or therapeutic interventions.
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