🔬 Epithalon (Epitalon) – 10mg
Epithalon (Epitalon) is a synthetic tetrapeptide of interest in controlled laboratory studies involving cellular maintenance pathways, telomeric stability, and oxidative stress response models. Its structure resembles naturally occurring pineal-derived peptides, making it a candidate for investigations into cellular aging mechanisms and chromosomal integrity.
Lyophilized powder supplied in standard laboratory vials.
Not for injection. Not for clinical or therapeutic use.
📌 Product Specifications
- Form: Lyophilized Powder
- Amount: 10mg per vial
- Purity: ≥ 98%
- Appearance: White to off-white powder
- Storage: Refrigerate after reconstitution; freeze for long-term stability
🧪 Molecular Information
- Molecular Formula: C14H22N4O9
- Molecular Weight: 390.35 g/mol
- CAS Number: 307297-39-8
🔬 Research Applications
- Telomeric maintenance and DNA preservation studies
- Oxidative stress and antioxidant response modeling
- Investigations involving pineal-derived peptide analogs
Epithalon may exhibit reduced solubility in Bacteriostatic Water alone. For improved reconstitution, researchers often begin with a minimal volume of 0.6% Acetic Acid to assist dissolution, followed by dilution with Bacteriostatic Water. This method may help minimize foaming or clumping during preparation.
Epithalon (Epitalon or Epithalamin) – Cognitive Peptide FAQ
This FAQ provides structured technical information regarding the molecular role, structural characteristics, and experimental handling of Epithalon in controlled laboratory environments.
1. What is the molecular role of Epithalon in laboratory studies?
Epithalon is a synthetic tetrapeptide used in experimental models to study peptide–cell interactions, DNA-related regulatory processes, and intracellular signalling pathways under controlled conditions.
2. Why is Epithalon considered structurally significant in peptide research?
Its short amino acid chain and defined molecular structure (C14H22N4O9) make it useful for studying structure–function relationships in peptides, particularly how small sequences influence biochemical activity in model systems.
3. What challenges are associated with dissolving Epithalon in laboratory preparation?
Epithalon may show limited solubility in standard aqueous solutions, which can affect uniform dispersion. Researchers often adjust preparation methods to ensure complete dissolution and consistent experimental concentration.
4. How does the lyophilised form of Epithalon improve experimental reliability?
Lyophilisation stabilises the peptide by removing moisture, reducing degradation risk, and improving storage longevity. This supports more consistent reconstitution and reduces variability between experimental batches.
5. What laboratory environments typically utilise Epithalon?
Epithalon is used in biochemical and molecular research settings focused on peptide behaviour, intracellular regulation models, and structural biology experiments. It is strictly limited to non-clinical, controlled laboratory applications.

