Gonadorelin Acetate
$28.00 Original price was: $28.00.$22.40Current price is: $22.40.
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Third-Party Lab Results
Transparency is our priority. Download the full HPLC and Mass Spectrometry reports for the current batch #88291. Tested on Oct 24, 2023.
DOWNLOAD FULL REPORT (PDF)Gonadorelin is a synthetic research peptide corresponding to the endogenous gonadotropin-releasing hormone (GnRH), a decapeptide with the amino acid sequence pGlu–His–Trp–Ser–Tyr–Gly–Leu–Arg–Pro–Gly–NH₂. In laboratory research settings, Gonadorelin is studied as a highly specific ligand for the GnRH receptor (GnRHR) expressed on pituitary gonadotroph cells.
Upon receptor binding in experimental models, Gonadorelin activates Gq/11 protein–coupled signaling, leading to phospholipase C (PLC) activation and downstream intracellular calcium mobilization. These signaling events are central to investigations of hypothalamic–pituitary axis regulation, peptide–receptor interaction kinetics, and endocrine feedback control mechanisms in controlled, non-clinical systems.
Gonadorelin is supplied exclusively for scientific and laboratory research use. It is not intended for human or veterinary consumption, clinical investigation, diagnostic use, or therapeutic application.
Chemical Identity & Classification
- Synthetic decapeptide identical to endogenous GnRH
- Neuropeptide hormone research compound
- GnRH receptor (GnRHR) agonist
Why Researchers Study Gonadorelin
- To investigate GnRH receptor binding and signaling dynamics
- To study hypothalamic–pituitary axis communication
- To explore endocrine feedback regulation in experimental systems
Key Research Systems & Pathways
- GnRH receptor–mediated Gq/11 signaling
- PLC/IP₃/DAG and calcium-dependent pathways
- Gonadotroph cell signaling and transcriptional responses
- Neuroendocrine feedback control mechanisms
Gonadorelin is synthesized under controlled laboratory conditions to ensure high purity, molecular fidelity, and reproducibility for preclinical research applications.
Mechanism of Action & Pathways
In experimental research models, Gonadorelin binds selectively to GnRH receptors on pituitary-derived cells, activating Gq/11-coupled intracellular signaling cascades. These pathways are studied to understand receptor activation kinetics, signal amplification, and downstream transcriptional regulation associated with endocrine signaling networks.
Cellular & Molecular Research
Gonadorelin is commonly utilized in laboratory studies examining:
- GnRH receptor binding affinity and desensitization
- Calcium-dependent intracellular signaling dynamics
- Peptide stability and receptor-mediated signal duration
All investigations are conducted in controlled in vitro or biochemical assay environments.
Neuroendocrine & System-Level Research
Research applications may include:
- Hypothalamic–pituitary signaling models
- Endocrine feedback loop analysis
- Hormone-regulated gene expression studies
These investigations remain exploratory and mechanistic, without therapeutic interpretation.
Experimental Models
- In vitro receptor-binding and signaling assays
- Ex vivo pituitary or endocrine tissue studies
- Non-clinical in vivo preclinical research models
All use is strictly limited to laboratory research contexts.
What is Gonadorelin used for in research?
Gonadorelin is used in laboratory research to study GnRH receptor signaling, hypothalamic–pituitary axis regulation, and endocrine feedback mechanisms.
What is the primary mechanism of interest for Gonadorelin?
It is studied for its activation of GnRH receptors and downstream Gq/11-mediated calcium signaling pathways.
In what form is Gonadorelin supplied?
Gonadorelin is supplied as a high-purity synthetic research peptide in 10 mg laboratory vials.
Is Gonadorelin approved for human or clinical use?
No. Gonadorelin is strictly for research use only and is not intended for human consumption, veterinary use, or clinical application.
How should Gonadorelin be stored and handled?
Gonadorelin should be stored and handled according to standard laboratory peptide storage and handling practices to maintain stability and integrity.
Researcher Reviews
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