Research chemical sequence

Cardiogen

Cardiogen is listed as a research-use-only chemical sequence. Research use only. Not for human or veterinary use. Public catalog information is limited to chemical identity, analytical documentation, and external reference records.

Research-use boundary: Research use only. Not for human or veterinary use. Public catalog information is limited to chemical identity, analytical documentation, and external reference records.

Public identity

Publication state
unpublished
Sequence
Ala-Glu-Asp-Arg
IUPAC name
N-L-Alanyl-L-alpha-glutamyl-L-alpha-aspartyl-L-arginine
Molecular formula
C18H31N7O9

Available variants

Published product variants and USD prices
SizeSKUPrice (USD)AvailabilityRepresentative purity
20mgDFP-008$0.00Out of stock99.6%

Analytical boundary

Representative catalog purity: 99.6%

No active-batch certificate of analysis is currently published.

Purity figures shown here are representative catalog specifications, not lot-specific measurements.

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Evidence inventory

Record state
citation records
Public records
18
Reviewed summaries
0
Verified citations
0
  • Human study: 4
  • In vivo: 6
  • In vitro: 8
  • Special category: 0
  • Unclassified: 0

These counts describe linked records and review status. They do not establish efficacy, safety, or fitness for any use.

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Technical record

CAS number
135400-89-2
Molecular weight
516.6 Da
Sequence class
peptide
Molecular formula
C18H31N7O9
Appearance
White to off-white lyophilized powder.
Solubility
Hydrophilic. Readily soluble in water (e.g., ultrapure water, PBS) at concentrations up to 10 mg/mL. For optimal stability, reconstitute in sterile water or PBS (pH 6.0-8.0). Avoid repeated freeze-thaw cycles.
Mechanism record
Cardiogen (Ala-Glu-Asp) is a Khavinson 3-residue chemical sequence bioregulator with tissue-specific affinity for cardiomyocytes. It interacts with regulatory DNA regions in cardiac tissue, modulating gene expression involved in contractile protein synthesis, cardiomyocyte survival, and ischemic preconditioning. Research demonstrates normalization of cardiac protein synthesis rates in aging tissue models.
Half-life record
~20–30 minutes (SubQ, plasma)

Recorded receptors

  • Cardiomyocyte surface receptors
  • cardiac gene expression regulators

External literature records

  1. External literature record

Limitations and research boundary

Research use only. Not for human or veterinary use. Public catalog information is limited to chemical identity, analytical documentation, and external reference records.

External records are attributed references. Their presence does not convert a source-reported observation into a product claim.