Ovagen
Peptides -40%

Ovagen

Substance: Ovagen

Fabricator: Dragon Pharma, Europe
Unit: 1 x vial
Strength: 20mg

If your order hasnt arrived within 35 days after shipping, we will resend it for free.


$40.80 $68.00
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Dragon Pharma Ovagen

Overview of Dragon Pharma Ovagen profile, dosage range, and key properties of this Khavinson liver and gastrointestinal tripeptide bioregulator (EDL).

Manufacturer

Brand Dragon Pharma
Last Lab Tested See COA

Core Information

Substance Ovagen (EDL)
Classification Khavinson cytogen tripeptide bioregulator
Active Half-Life Short — typical of ultrashort peptides
Typical Dosage 100–500 mcg per research protocol

Effects & Properties

Water Retention No
Aromatization No
Hepatotoxicity No
Hair Loss Risk (HBR) No
Acne No

Dragon Pharma Ovagen — EDL Tripeptide Bioregulator

Dragon Pharma Ovagen is the liver and gastrointestinal-targeted compound in the Khavinson cytogen peptide series — a synthetic tripeptide bioregulator composed of the amino acid sequence Glutamic acid-Aspartic acid-Leucine, abbreviated in scientific literature as EDL. Developed within Professor Vladimir Khavinson's peptide bioregulator program at the St. Petersburg Institute of Bioregulation and Gerontology, Dragon Pharma Ovagen carries the structural properties that define the Khavinson cytogen class: a compact three-residue architecture providing high membrane permeability and nuclear accessibility, enabling direct chromatin interaction and tissue-specific gene regulatory activity.

Dragon Pharma Ovagen's research profile is distinguished by two well-characterized biological activities documented in peer-reviewed literature. The first is its role in hepatocyte and gastrointestinal epithelial biology, where the EDL sequence interacts with tissue-specific gene programs through PepT1/SLC15A1 transporter-mediated uptake and subsequent nuclear chromatin interaction. The second is its precisely characterized competitive inhibition of HIV-1 protease in vitro, with a documented Ki value of approximately 50 μM — one of the most rigorously quantified biochemical activities established for any ultrashort peptide in the Khavinson catalog, providing a defined molecular binding reference for structure-activity research.

Dragon Pharma manufactures Ovagen to research-grade specifications with ≥99% HPLC purity and LC-MS sequence confirmation per batch. Every Dragon Pharma Ovagen vial ships with an independent third-party Certificate of Analysis. For research use only.

Dragon Pharma Ovagen — Product Specifications

Parameter Detail
Abbreviation EDL
Peptide Type Synthetic tripeptide bioregulator — Khavinson cytogen series
Sequence H-Glu-Asp-Leu-OH
Tissue Target Liver (hepatic) and gastrointestinal epithelium
Molecular Formula C15H25N3O8
Molecular Weight 375.37 g/mol
PubChem CID 444128
HIV-1 Protease Ki ~50 μM (competitive inhibition, in vitro)
Form Lyophilized powder
Purity ≥99% (HPLC, Dragon Pharma batch standard)
Identity Verification LC-MS (Glu-Asp-Leu sequence + 375.37 g/mol confirmed)
COA Independent third-party, per Dragon Pharma batch
Storage (dry) -20°C, protect from light; 24+ months
Storage (reconstituted) 2–8°C, 28 days
Research Use In vitro research only
Product Identification — Dragon Pharma Ovagen vs Other Named Products: Dragon Pharma Ovagen is the tripeptide bioregulator Glu-Asp-Leu (EDL), developed by Professor Khavinson for liver and gastrointestinal research. A separately named commercial product contains ovine (sheep) follicle-stimulating hormone (FSH) and serves an entirely different function. Verify PubChem CID 444128 and the H-Glu-Asp-Leu-OH peptide sequence before ordering. Dragon Pharma Ovagen is supplied for research use only.

Four Research Angles for Dragon Pharma Ovagen

1. Hepatocyte Biology and Liver Research

Dragon Pharma Ovagen's primary tissue target is the liver. Within the Khavinson cytogen framework, the EDL sequence is proposed to function as an endogenous liver-specific regulatory signal that maintains hepatocyte gene expression programs through direct chromatin interaction. PepT1/SLC15A1 transporters — expressed at high density in hepatocytes and gastrointestinal epithelial cells — mediate selective uptake of the EDL tripeptide, providing the biochemical basis for tissue specificity that distinguishes Dragon Pharma Ovagen from broad-acting peptides.

In aged hepatocyte culture models, the EDL sequence has been studied for protein synthesis restoration and recovery of intracellular biosynthetic rhythm — the cyclical pattern of protein production that becomes disrupted during cellular aging. Research applications include hepatocyte gene expression studies, age-related hepatic decline modeling, hepatoprotective compound screening in experimental hepatitis models, and liver-gut axis biology investigations.

2. Gastrointestinal Epithelial Research

Dragon Pharma Ovagen's tissue selectivity extends to the gastrointestinal epithelium, where PepT1/SLC15A1 transporter expression enables selective cellular uptake of the EDL sequence. GI research applications include mucosal barrier integrity studies, intestinal epithelial cell differentiation modeling, gastric mucosa protection signaling pathway investigation, digestive enzyme regulation research, and inflammatory cytokine modulation in intestinal tissue models. The coordinated liver-gut axis biology accessible through Dragon Pharma Ovagen makes it relevant for research programs examining hepato-gastrointestinal signaling in a single compound.

3. HIV-1 Protease Inhibition and Enzyme Research

The most rigorously characterized biochemical activity of Dragon Pharma Ovagen's EDL sequence comes from published HIV-1 protease inhibition research. Louis, Dyda, Nashed, Kimmel, and Davies (1998, Biochemistry) established through kinetic analysis that Glu-Asp-Leu functions as a competitive inhibitor of mature HIV-1 protease with a Ki value of approximately 50 μM — derived from the viral transframe region (TFR) of Gag-Pol. The EDL tripeptide represents one of the smallest potent analogues of the transframe octapeptide (TFP) that naturally occurs at the N-terminus of the HIV-1 transframe region.

For comparative context, the closely related tripeptide Glu-Asp-Phe demonstrates even greater inhibitory potency at approximately 20 μM Ki, making the EDL/EDF pair a natural structure-activity reference set for protease inhibition mechanism research. This well-defined Ki value makes Dragon Pharma Ovagen one of the few ultrashort peptides in the Khavinson catalog with a precisely quantified enzyme inhibition endpoint available for experimental design and result calibration.

4. Chromatin Remodeling and Epigenetic Research

Consistent with the broader Khavinson bioregulator model, Dragon Pharma Ovagen's EDL sequence is studied for nuclear chromatin interaction and epigenetic gene activation in aging cell models. Research has examined the peptide's capacity to induce decondensation of pericentromeric heterochromatin in aged lymphocyte cultures, activate nucleolar organizing regions (NORs) responsible for ribosomal RNA production, and modulate chromosomal activity in cardiovascular disease models. This chromatin remodeling activity provides a mechanistic research axis for Dragon Pharma Ovagen's hepatic gene regulatory effects, proposing that tissue-specific protein synthesis restoration in aged hepatocytes occurs through direct chromatin accessibility changes rather than receptor-mediated signaling.

Dragon Pharma Ovagen vs Dragon Pharma Livagen: Key Differences

Feature Dragon Pharma Ovagen (EDL) Dragon Pharma Livagen (KEDA)
Peptide length Tripeptide (3 residues) Tetrapeptide (4 residues)
Sequence H-Glu-Asp-Leu-OH H-Lys-Glu-Asp-Ala-OH
Molecular weight 375.37 g/mol 461.5 g/mol
Primary tissue target Liver and GI epithelium Liver and immune cells
HIV-1 protease Ki ~50 μM (documented) Not characterized
Research relationship Complementary — distinct chromatin specificity Complementary — distinct chromatin specificity
Common use Often studied in parallel with Dragon Pharma Livagen in hepatic models Often studied in parallel with Dragon Pharma Ovagen in hepatic models

Dragon Pharma supplies both Dragon Pharma Ovagen (EDL) and Dragon Pharma Livagen (KEDA) from its Khavinson cytogen catalog, enabling parallel comparative hepatic research protocols from a consistent manufacturing source. Both compounds are liver-targeted but mechanistically distinct — they modulate different chromatin subtypes and are used as complementary rather than redundant research tools.

Key Features of Dragon Pharma Ovagen

  • Dragon Pharma pharmaceutical-grade manufacturing — consistent production standards applied across Dragon Pharma's full Khavinson cytogen peptide catalog
  • ≥99% purity by Dragon Pharma batch HPLC standard — exceeds research-grade threshold for hepatic biology and enzyme inhibition assay applications
  • LC-MS sequence identity confirmed per batch — verifies Glu-Asp-Leu at 375.37 g/mol; PubChem CID 444128 confirmed; distinguishes Dragon Pharma Ovagen from related EDX tripeptide variants
  • Published Ki value: ~50 μM HIV-1 protease (competitive) — one of the only ultrashort Khavinson peptides with a precisely quantified enzyme inhibition endpoint available for experimental design calibration
  • Dual liver + GI tissue targeting via PepT1/SLC15A1 — transporter-mediated selectivity provides a mechanistic basis for tissue-specific research applications in both hepatic and intestinal cell models
  • Chromatin remodeling activity — heterochromatin decondensation and NOR activation in aged cell models; connects EDL to epigenetic aging research beyond classical hepatic biology
  • Dragon Pharma Livagen (KEDA) available for parallel comparative protocols — Dragon Pharma supplies both liver-targeted Khavinson bioregulators from consistent manufacturing for comparative chromatin specificity research
  • Independent third-party COA per Dragon Pharma batch — lot-traceable documentation; not in-house or reused across production runs

Product Summary

Dragon Pharma Ovagen is a synthetic tripeptide bioregulator (H-Glu-Asp-Leu-OH / EDL, PubChem CID 444128, MW 375.37 g/mol) manufactured by Dragon Pharma as the liver and gastrointestinal-targeted member of the Khavinson cytogen peptide series. It is characterized by PepT1/SLC15A1-mediated selective tissue uptake, documented competitive inhibition of HIV-1 protease in vitro (Ki ~50 μM), chromatin remodeling and NOR activation in aged cell models, and hepatocyte protein synthesis restoration in preclinical aging research. Dragon Pharma supplies Ovagen alongside Dragon Pharma Livagen (KEDA) for comparative liver bioregulator research from consistent pharmaceutical-grade manufacturing. Purity ≥99% by HPLC, LC-MS sequence confirmed per batch, independent third-party COA per Dragon Pharma production run. For research use only.

Research domains: Hepatic biology • Gastrointestinal epithelial research • HIV-1 protease enzyme inhibition • Chromatin remodeling and epigenetics • Liver-gut axis biology • Comparative Khavinson cytogen protocols

Frequently Asked Questions

Everything you need to know about Dragon Pharma Ovagen (EDL / Glu-Asp-Leu), its Khavinson liver bioregulator origin, research mechanisms, enzyme inhibition profile, and Dragon Pharma quality standards.

What is Dragon Pharma Ovagen and what is it used for?

Dragon Pharma Ovagen is a research-grade synthetic tripeptide bioregulator (H-Glu-Asp-Leu-OH / EDL, PubChem CID 444128, MW 375.37 g/mol) manufactured by Dragon Pharma as the liver and gastrointestinal-targeted compound in the Khavinson cytogen peptide series. It is studied for hepatocyte biology, GI epithelial research, chromatin remodeling in aged cell models, liver-gut axis biology, and competitive inhibition of HIV-1 protease in vitro (Ki ~50 μM). Dragon Pharma supplies Ovagen for research use only.

What does EDL stand for in Dragon Pharma Ovagen?

EDL is the single-letter amino acid abbreviation for Dragon Pharma Ovagen's tripeptide sequence: E (Glutamic acid), D (Aspartic acid), L (Leucine). It is used interchangeably with Ovagen in scientific literature and appears in published enzyme inhibition research as the compound identifier in Louis et al. (1998, Biochemistry). Dragon Pharma uses both EDL and Ovagen in its catalog documentation.

What is the HIV-1 protease inhibition research and Ki value for Dragon Pharma Ovagen?

Louis, Dyda, Nashed, Kimmel, and Davies (1998, Biochemistry) established through kinetic analysis that the Glu-Asp-Leu tripeptide competitively inhibits mature HIV-1 protease in vitro with a Ki value of approximately 50 μM, derived from the viral transframe region (TFR) of Gag-Pol. This is among the most precisely characterized biochemical activities documented for any ultrashort peptide in the Khavinson catalog, giving Dragon Pharma Ovagen researchers a quantified enzyme inhibition endpoint for experimental design. The closely related Glu-Asp-Phe demonstrates greater potency (~20 μM Ki), making the EDL/EDF pair a natural structure-activity reference set.

How does Dragon Pharma Ovagen differ from Dragon Pharma Livagen?

Dragon Pharma Ovagen (EDL / Glu-Asp-Leu) is a tripeptide; Dragon Pharma Livagen (KEDA / Lys-Glu-Asp-Ala) is a tetrapeptide. Both are Khavinson liver-targeted bioregulators, but they carry different amino acid sequences, different proposed chromatin interaction profiles, and different secondary research activities (HIV-1 protease inhibition for Ovagen; enkephalin-degrading enzyme inhibition for Livagen). Dragon Pharma supplies both compounds from consistent manufacturing standards for comparative liver bioregulator research protocols where both are studied in parallel as complementary rather than equivalent research tools.

What is PepT1/SLC15A1 uptake and why does it matter for Dragon Pharma Ovagen research?

PepT1/SLC15A1 is a proton-coupled oligopeptide transporter expressed at high density in hepatocytes and gastrointestinal epithelial cells. It mediates selective cellular uptake of small peptides including Dragon Pharma Ovagen's EDL sequence, providing the biochemical basis for the tissue specificity observed in Khavinson bioregulator research. This transporter-mediated uptake delivers Dragon Pharma Ovagen to nuclear chromatin interaction sites in liver and GI cells specifically, which is why its documented effects are observed in hepatic and intestinal tissue models rather than across all cell types equally.

What chromatin remodeling research is associated with Dragon Pharma Ovagen?

Consistent with the Khavinson cytogen bioregulator model, Dragon Pharma Ovagen's EDL sequence has been studied for heterochromatin decondensation and nucleolar organizing region (NOR) activation in aged lymphocyte and hepatocyte cultures. These chromatin remodeling effects — reactivating previously silenced gene regions and restoring ribosomal RNA synthesis capacity — provide a mechanistic framework for the protein synthesis restoration documented in aged hepatocyte models. This epigenetic activity connects Dragon Pharma Ovagen to aging biology research beyond its classical hepatic biology applications.

Is Dragon Pharma Ovagen the same as an ovine FSH product?

No. Dragon Pharma Ovagen is the tripeptide bioregulator Glu-Asp-Leu (EDL) developed by Professor Khavinson for liver and gastrointestinal research (PubChem CID 444128, MW 375.37 g/mol). A separately named commercial product contains ovine (sheep) follicle-stimulating hormone (FSH) and serves an entirely different biological function. Always verify the H-Glu-Asp-Leu-OH sequence and PubChem CID 444128 before ordering to confirm you are purchasing Dragon Pharma Ovagen specifically.

Why does Dragon Pharma apply LC-MS verification for a three-residue peptide?

At three residues, Dragon Pharma Ovagen (Glu-Asp-Leu) is structurally adjacent to related EDX tripeptides including Glu-Asp-Phe and Glu-Asp-Gly that differ only at the C-terminal position. These variants have meaningfully different activity profiles — Glu-Asp-Phe shows a Ki of ~20 μM for HIV-1 protease versus Dragon Pharma Ovagen's ~50 μM, a 2.5-fold potency difference from a single amino acid change. Standard HPLC purity analysis cannot reliably distinguish these variants by retention time alone. Dragon Pharma's LC-MS per batch explicitly confirms the Glu-Asp-Leu sequence at 375.37 g/mol, ensuring researchers receive the specific compound their protocol requires.

How should Dragon Pharma Ovagen be stored and reconstituted?

Dragon Pharma Ovagen lyophilized powder should be stored at -20°C, protected from light, for up to 24 months or longer. After reconstitution with bacteriostatic water, refrigerate at 2–8°C and use within 28 days — avoid freeze-thaw cycling, which degrades the tripeptide. For reconstitution, add diluent slowly against the inner vial wall, swirl gently until dissolved, do not shake. Dragon Pharma Ovagen is water-soluble and dissolves readily at standard laboratory concentrations.

Storage

Proper handling and preservation guidelines for Ovagen peptide.

Lyophilized Dragon Pharma Ovagen powder: -20°C, protected from light and moisture. Stable 24 months or longer. Dragon Pharma Ovagen ships in lyophilized form without cold-chain dependency. Allow vial to equilibrate to room temperature before opening to prevent condensation from entering.

Reconstituted Dragon Pharma Ovagen solution: 2–8°C (refrigerated). Use within 28 days. Do not refreeze — repeated freeze-thaw cycles degrade the tripeptide structure and reduce assay reproducibility.

Reconstitution protocol: Add bacteriostatic water slowly against the inner vial wall rather than directly into the lyophilized cake. Swirl gently until fully dissolved — do not shake or vortex. Dragon Pharma Ovagen is water-soluble and dissolves readily at standard laboratory concentrations. Maintain sterile technique throughout.

For research use only. Not for human consumption, veterinary use, or therapeutic application.
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