Chonluten

Chonluten (Glu-Asp-Gly, EDG) is a synthetic tripeptide (MW ~305.3 g/mol) from the Khavinson bioregulatory peptide family, designed as a bioregulator for mucosal epithelium of the respiratory and gastrointestinal tracts. It is proposed to restore mucosal barrier function and epithelial regeneration in aging or damaged tissues. Published primarily in Russian biogerontology literature.

Category: Respiratory / Anti-Aging. Evidence rating: D (animal/preclinical only).

Clinical status: Russian clinical studies. Not validated in Western trials.

Chonluten is proposed to modulate gene expression in mucosal epithelial cells of the lungs and GI tract, restoring mucin production, tight junction protein expression, and epithelial turnover rates. It may promote stem cell-mediated mucosal regeneration. The mechanism follows the Khavinson peptide…

Safety considerations: Reported as well-tolerated; No serious adverse events in published literature; Simple tripeptide with expected low toxicity.

Reviewed by the PeptideAtlas Editorial Team.

Chonluten — measured properties

Amino-acid sequenceGlu-Asp-Gly (EDG)
Molecular formulaC9H14N2O7
Molecular weight~305.3 g/mol
Half-life~15-30 minutes
Production methodsynthetic
Anti-doping statusnot-listed
US regulatory statusResearch peptide. Not FDA-approved.

Related peptides: Bronchogen.

Frequently asked questions

What is Chonluten used for?

Chonluten is proposed as a mucosal bioregulator for respiratory and GI tissue. Evidence is limited to Russian publications and it has not been validated in Western clinical trials.

What is CHONLUTEN?

Chonluten is a Khavinson bioregulator tripeptide researched for respiratory mucosal tissue and lung epithelial cell function, particularly in aging populations.

What are the research benefits of CHONLUTEN?

CHONLUTEN has been studied for: Lung tissue support, Mucosal barrier function, Respiratory epithelial health, Immune mucosal defense. Khavinson bioregulator; lung/mucosal tissue focus.

How does CHONLUTEN work?

Short peptide bioregulator that may modulate gene expression in lung epithelial cells, supporting mucosal barrier integrity and respiratory tissue homeostasis.

Coverage on this site: Epithalon Research: Telomerase Activation and Longevity Effects.