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EPITHALON

£17.99

– Telomere-Targeting Peptide for Advanced ResearchEpithalon (Epitalon) | 10mg Vial | Ultra-Pure | ≥99% Peptide-Grade Purity🔬 High-Purity Research Peptide – Synthesized for reproducible laboratory use🧪 Verified for Quality – HPLC Tested, COA Provided, Third-Party Tested📚 Backed by Scientific Literature – Extensively studied for telomerase modulation & cellular longevity Chemical Information•...

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– Telomere-Targeting Peptide for Advanced Research
Epithalon (Epitalon) | 10mg Vial | Ultra-Pure | ≥99% Peptide-Grade Purity
🔬 High-Purity Research Peptide – Synthesized for reproducible laboratory use
🧪 Verified for Quality – HPLC Tested, COA Provided, Third-Party Tested
📚 Backed by Scientific Literature – Extensively studied for telomerase modulation & cellular longevity


Chemical Information
Synonyms: Epitalon, Epithalamin, Ala-Glu-Asp-Gly
CAS Number: 307297-39-8
Molecular Formula: C14H22N4O9
Form: Lyophilized powder, 10mg per vial
Purity: ≥99% (Peptide-grade)
Storage: Store refrigerated and keep lyophilized for optimal stability


Description
Epithalon (Epitalon) is a synthetic tetrapeptide developed from the natural peptide Epithalamin, originally isolated from the pineal gland. It has become a primary focus in cellular aging and telomere dynamics research due to its proposed ability to modulate telomerase activity in experimental models.

Researchers have shown interest in Epithalon for its potential roles in DNA protection, circadian rhythm regulation, oxidative stress reduction, and healthy cellular function support. Its short length (Ala-Glu-Asp-Gly) allows high stability and efficient laboratory reconstitution, making it a valuable tool for advanced biochemical and cellular studies.


Research Findings & Scientific Insights
📈 Telomerase Activation in Research Models
Studies suggest Epithalon may support telomerase expression, helping maintain telomere structure during cellular replication—an area of significant interest in aging research.

🧬 Cellular Longevity & Structural Integrity
Research has reported improvements in cellular lifespan, DNA stability, and chromosomal protection in various model systems exposed to Epithalon.

🩺 Potential Benefits Observed in Research Models:
• Telomere length maintenance
• Reduced oxidative stress markers
• Improved mitochondrial function markers
• Enhanced circadian rhythm regulation
• Support for cellular DNA repair pathways

🌐 Comparative Insights
Compared to non-peptidic telomere research compounds, Epithalon is unique due to its short, stable peptide structure and direct relevance to telomere biology, making it a preferred candidate for longevity-related experimental setups.


Product Assurance
✅ HPLC Verified – Ensuring ≥99% purity
✅ COA Provided – On Request
✅ Manufactured in a GMP-Certified Facility – Developed & Dispatched in the UK
✅ Third-Party Testing Covered – Independent Verification Available on Request
✅ Cold Chain Express Delivery – Ensuring Potency, Integrity & Safe Arrival


⚠️ For Research Use Only
Epithalon (Epitalon) is supplied strictly for scientific research and analytical purposes only. This compound is not approved for human consumption, therapeutic use, or veterinary applications. All handling should be performed by qualified professionals in accordance with laboratory safety protocols.

⚠️ For Research Use Only – Not for Human Consumption
This product is intended strictly for laboratory research purposes and is not approved for human or veterinary use, therapeutic application, or diagnostic procedures. All handling must be performed by trained professionals in compliance with appropriate laboratory safety protocols and applicable regulations.

18+ Notice: This material is not for sale to individuals under the age of 18. By purchasing, you confirm that you are a qualified individual or acting on behalf of a qualified institution, and that the compound will be used exclusively for legitimate scientific investigation.

We acknowledge that in certain regions—particularly in countries outside of the United Kingdom, where manufacturing oversight and regulatory enforcement may be less stringent—there are isolated cases of individuals attempting to self-administer research compounds. We strongly discourage and explicitly warn against any such misuse. The self-experimentation of unapproved substances carries significant, unquantifiable risks and is both medically irresponsible and ethically unsound. Without proper analytical validation, GMP-level controls, and clinical context, the safety, quality, and pharmacological reliability of these materials cannot be assured.

All compounds must be handled in secure, controlled environments by competent personnel. Any deviation from these principles is contrary to responsible research practice and breaches both our terms of sale and the intended scientific use of these products.