🧬 Triptorelin Peptide: High-Purity GnRH Analogue for Research;
Triptorelin peptide is a synthetic Gonadotropin-Releasing Hormone (GnRH) analogue widely used in research to study pituitary function, hormone regulation, and reproductive endocrinology.
Its high stability and purity make it a preferred tool in laboratories investigating endocrine pathways and hormonal signaling, allowing researchers to model complex physiological processes accurately.
🧠 What Is Triptorelin Peptide?
Triptorelin is a decapeptide analogue of natural GnRH, which regulates the release of luteinizing hormone (LH) and follicle-stimulating hormone (FSH) from the pituitary gland.
In laboratory research, Triptorelin is used to study:
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Pituitary hormone regulation
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Reproductive and endocrine system function
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Cell signaling pathways influenced by GnRH
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Hormonal feedback mechanisms
By mimicking natural GnRH activity, Triptorelin provides a controlled and reproducible method for exploring hormone release mechanisms in vitro and in vivo.
🔬 Chemical and Physical Properties
| Property | Description |
|---|---|
| Peptide Name | Triptorelin (GnRH analogue) |
| Amino Acid Length | 10 (decapeptide) |
| Purity | ≥98% (HPLC tested) |
| Form | Lyophilized powder |
| Molecular Weight | 1310.5 g/mol |
| Storage Temperature | –20°C (long-term stability) |
High-purity Triptorelin ensures reliable and reproducible results in research focusing on endocrine and reproductive pathways.
⚗️ Research Applications
Triptorelin peptide is intended strictly for laboratory research. Common applications include:
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Endocrine Studies – Investigating pituitary hormone secretion and GnRH receptor activity.
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Reproductive Biology Research – Studying LH and FSH regulation and reproductive hormone pathways.
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Cell Signaling Research – Understanding GnRH-mediated intracellular signaling in endocrine cells.
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Experimental Models – Evaluating feedback mechanisms in controlled in vitro and in vivo studies.
Its controlled, consistent activity allows researchers to model hormone regulation and pituitary signaling with precision.
⚙️ Benefits of Triptorelin Peptide for Research
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High stability and purity ensures consistent experimental outcomes.
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Reproducible performance in endocrine and reproductive research models.
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Scientifically validated in studies of GnRH signaling and pituitary hormone regulation.
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Easy handling and reconstitution due to its lyophilized peptide form.
🧪 Storage and Handling
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Store lyophilized Triptorelin at –20°C, protected from light and moisture.
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Reconstitute with sterile water or buffer before use.
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After reconstitution, refrigerate at 2–8°C and use within the recommended timeframe.
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Avoid repeated freeze–thaw cycles to preserve peptide bioactivity.
⚠️ Important Disclaimer
Triptorelin peptide is for laboratory research use only.
It is not approved for human, veterinary, or medical use.
Use only in controlled laboratory environments by qualified professionals.
❓ Triptorelin Peptide FAQ
Q1: What makes Triptorelin peptide unique?
Triptorelin is a synthetic GnRH analogue that reliably stimulates pituitary hormone release, making it ideal for endocrine research.
Q2: Can Triptorelin be used in humans?
No, this peptide is strictly for laboratory research and is not approved for medical use.
Q3: What is the purity of Triptorelin?
High-quality Triptorelin peptide is ≥98% pure, verified using HPLC testing.
Q4: How should Triptorelin peptide be stored?
Lyophilized at –20°C, and after reconstitution, refrigerate at 2–8°C. Avoid repeated freeze–thaw cycles.
Q5: What research areas commonly use Triptorelin?
Triptorelin is used in endocrinology, reproductive biology, pituitary hormone regulation, and cell signaling research.
🧭 Summary
Triptorelin peptide is a high-purity, decapeptide GnRH analogue widely used for research in endocrine, pituitary, and reproductive studies. Its stability, reproducibility, and precise activity make it an essential tool for laboratories investigating hormonal regulation, receptor signaling, and cellular endocrine pathways.



