Epitalon (Epithalon)

Price range: $225.00 through $420.00

Epitalon, a synthetic tetrapeptide, has drawn research interest for its role in studies exploring peptide regulation of telomerase activity, cellular aging mechanisms, and the molecular dynamics of peptide-DNA interactions in preclinical models.

Description

Overview

Epitalon (also referred to as Epithalon) is a synthetic tetrapeptide composed of just four amino acids (Ala-Glu-Asp-Gly), originally derived from research into naturally occurring peptides involved in pineal gland regulation. Researchers have been particularly intrigued by Epitalon’s potential interactions with cellular aging pathways, telomere regulation, and chromatin remodeling processes, making it a focal point for molecular biology and gerontology research.

Its minimalistic structure and ease of synthesis make Epitalon a useful model for studying peptide-DNA interactions, as well as the broader role of small peptides in cellular maintenance processes. Researchers continue to explore Epitalon’s capacity to modulate gene expression patterns in cultured cells, providing insights into the regulatory relationship between peptide signals and cellular longevity pathways in controlled preclinical environments.

Areas of Research

• Investigation into peptide regulation of telomerase expression in cellular models.

• Studies exploring peptide influence on chromatin remodeling and gene expression.

• Research into short peptide structure-activity relationships (SAR) for nuclear signaling.

• Examination of peptide stability and bioactivity within in vitro aging models.

• Exploration of pineal-derived peptides and their roles in circadian and aging research.

Notes & Considerations

• Epitalon’s compact tetrapeptide structure offers a unique research tool for studying peptide interactions with nuclear proteins and DNA regulatory regions.

• Researchers are investigating how sequence length and peptide charge influence nuclear import and transcriptional activity.

• Comparative studies with other pineal gland peptides provide a broader understanding of peptide-mediated cellular regulation.

• Current research trends include using Epitalon analogs to explore the interface between peptide signaling and epigenetic modifications.

Additional information

Weight N/A
Dimensions N/A
Size

100mg, 5mg

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