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Epitalon

Mitochondrial + redox research

Epitalon

Lyophilized mitochondrial and cellular-signaling research material

Epitalon is a pineal tetrapeptide research compound often discussed in telomere, circadian, and cellular-aging literature.

Rango de precios: desde 46.99 $ hasta 480.99 $
99.0%-99.5% Polvo liofilizado 10 mg
Available documentation

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For laboratory research use only. Not for human or veterinary use. Not intended to diagnose, treat, cure, mitigate, or prevent disease.

Storage

Mantener sellado, frío, seco y protegido de los cambios de calor. Confirme el almacenamiento específico del producto a su llegada.

Notas de envío

Empaquetado para estabilidad en tránsito con soporte de pedidos disponible para rutas en climas cálidos.

Batch reference

Batch-linked certificate support is available through the documentation desk.

Contexto de investigación

Perfil de investigación de Epitalon

Epitalon is a synthetic tetrapeptide associated with pineal-peptide and cellular-aging research. Published discussions include telomerase activity, telomere-related markers, circadian and pineal signaling, oxidative-stress responses, gene expression, and lifespan observations in experimental models. The evidence base is smaller, older, and more heterogeneous than the literature for many established receptor peptides, with limited independent human validation. Epitalon is therefore best suited to exploratory laboratory work where the endpoints, controls, and source literature are reviewed carefully. It should not be selected on the assumption that telomere or longevity findings in one model establish an anti-aging outcome in people.

Mecanismo propuesto

A synthetic Ala-Glu-Asp-Gly tetrapeptide associated with pineal-peptide research. Proposed mechanisms include changes in gene expression, telomerase activity, telomere maintenance, oxidative signaling, and circadian or pineal regulatory pathways.

Efectos reportados en estudios

  • Selected cell studies report telomerase activation, telomere-related changes, and altered gene-expression or oxidative-stress markers.
  • Rodent and older regional studies report lifespan, circadian, or age-associated observations under specific conditions.
  • Independent replication and modern controlled human evidence are limited, and anti-aging effects are not established.

Criterios de investigación comunes

Telomerase activity, telomere length, gene expression, oxidative-stress markers, melatonin and circadian measures, cell lifespan, organism lifespan, and replication across laboratories.

Evidencia y limitaciones

Evidence is limited, heterogeneous, and largely preclinical or based on older regional literature. Mechanism and human outcomes remain uncertain.

External reading

Literature for context—not product proof.

Third-party sources describe their own research materials and methods. They do not validate a specific Azure catalog batch.

Support and documentation

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