Ovagen

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All products are strictly intended for laboratory and research purposes only and are not approved for veterinary or human use.

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Description

Overview of Ovagen

Ovagen is a research‑grade synthetic tripeptide bioregulator composed of glutamic acid, aspartic acid, and leucine (sequence: Glu–Asp–Leu; abbreviated EDL), supplied as a lyophilized powder for laboratory research. It is classified among short peptide regulators developed in the framework of peptide bioregulator research programs and is studied in controlled in vitro and preclinical models focusing on tissue–specific bioactivity.

It is important to note that Purerawz only offers Ovagen as a research chemical intended solely for laboratory use.

Chemical and Molecular Properties

Ovagen (EDL)
PubChem CID 444128
Molecular Formula C15H25N3O8
Molecular Weight 375.37 g/mol
Synonyms glutamyl-aspartyl-leucine

RefChem: 922309

Glu-Asp-Leu

IUPAC (2S)-2-[[(2S)-2-[[(2S)-2-amino-4-carboxybutanoyl]amino]-3-carboxypropanoyl]amino]-4-methylpentanoic acid
CAS Not available
Labeling Research Use Only (RUO), not for human or animal consumption.
Chemical Structure Depiction Screenshot 2026 03 13 152121
Purity ≥98%
Classification Investigational tripeptide
Storage Temperature Lyophilized at −20 °C; reconstituted solutions at 2–8 °C
Solubility Soluble in sterile water or appropriate research solvents
Safety Handle with gloves, a lab coat, eye protection; use a fume hood if dust/aerosol is possible

Various Mechanisms of Ovagen

Because peer–reviewed literature on this specific peptide’s mechanisms is limited, descriptions below reflect areas of exploratory research identified in preclinical studies

Cellular Uptake and Nuclear Access

Short peptides such as Glu–Asp–Leu (EDL) are studied in laboratory settings for their capacity to be transported into cells and potentially engage intracellular peptide transport systems.

Gene Expression Modulation

Some research descriptions propose that ultrashort peptides like Ovagen may interact with nuclear components and influence gene transcription programs in experimental models, particularly in tissues of interest such as liver and gastrointestinal cells. However, peer‑reviewed mechanistic validation in indexed journals remains limited.

Tissue‑Focused Explorations in Preclinical Systems

Ovagen is explored in experimental studies examining responses in hepatic and gastrointestinal tissues, including potential modulation of oxidative stress markers, cytoprotection assays, and gene expression profiles. These are exploratory research areas that require further verification. 

Research Applications of Ovagen

Ovagen is utilized in preclinical and in vitro research frameworks to explore:

  • Experimental models of hepatic tissue regulation, including markers of cellular resilience and stress responses.
  • Cellular assays investigating cytoprotection under oxidative or toxic stress conditions.
  • Exploratory gene expression studies in hepatic or gastrointestinal model systems examining transcriptional activity.

Why Choose Purerawz for Ovagen?

Buy Ovagen for laboratory research use from our online shop. At Purerawz, we provide high-quality reference materials. Each research compound comes with a Certificate of Analysisfor verification of purity and concentration.

Note:

Ovagen is an investigational compound currently undergoing clinical evaluation and has not been established as safe or effective for any therapeutic use

Disclaimer

This information is for educational purposes only and not medical advice. Products are for research use only. Research must follow IRB or IACUC guidelines. Verify information independently before purchasing. By ordering, you agree to our Terms and Conditions. If you are not 100% satisfied with the product you received, please contact us at support@purerawz.co

ATTENTION: All our products are for LABORATORY AND RESEARCH PURPOSES ONLY, not for veterinary or human use

Reference Links

PubChem Compound Summary for Glutamyl–Aspartyl–Leucine (EDL). PubChem. National Center for Biotechnology Information, U.S. National Library of Medicine. https://pubchem.ncbi.nlm.nih.gov/compound/444128 

Khavinson VK, Linkova NS, Chalisova NI, Dudkov AV, Koncevaya EA. Effect of short peptides on expression of signaling molecules in organotypic pineal cell culture. Bull Exp Biol Med. 152(1):138–141. https://pubmed.ncbi.nlm.nih.gov/22803060/

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