Bioregulators
Cellular Command.
Bioregulators are short-chain peptide complexes — typically 2–4 amino acids — that act as molecular switches inside specific tissues. Unlike broad-spectrum supplements, each bioregulator targets a single organ system, binding directly to DNA to restore gene expression patterns that decline with age.
The Mechanism
How Bioregulators Work
Discovered by Soviet military scientists in the 1970s and refined over four decades of clinical research, bioregulators operate through a mechanism distinct from any other supplement class. They are tissue-specific: a pineal bioregulator acts only on the pineal gland; a thymic bioregulator acts only on the thymus. By binding to chromatin and modulating gene transcription, they restore the protein synthesis patterns of younger tissue — not by flooding the system with a compound, but by correcting the regulatory signal at the source.
40+ years
Of clinical research behind the core bioregulator compounds
Tissue-specific
Each compound targets a single organ system
2–4 amino acids
Short-chain peptides that bind directly to DNA
The Range
Bioregulator Compounds
Each compound is tissue-specific. The target organ is listed — this is where the bioregulator acts and nowhere else.
Epithalon
Pineal Gland / Telomeres
Stimulates telomerase activity and restores melatonin production. The most studied bioregulator for longevity — shown in multiple trials to extend telomere length and reduce markers of biological aging.
Thymalin
Thymus / Immune System
Restores thymic function and T-cell production. The thymus involutes with age — Thymalin reverses this decline, rebuilding adaptive immune capacity and reducing susceptibility to infection and autoimmune dysregulation.
Cortagen
Cerebral Cortex
Regulates cortical neuron function and synaptic plasticity. Supports cognitive performance, memory consolidation, and neuroprotection. Used in protocols targeting age-related cognitive decline.
Vilon
Immune / Neuroendocrine
A dipeptide (Lys-Glu) that modulates the neuroendocrine-immune axis. Broad regulatory action across multiple systems — particularly effective for immune senescence and inflammatory dysregulation.
Cardiogen
Heart / Cardiovascular
Tissue-specific bioregulator for cardiac muscle. Supports cardiomyocyte function, reduces oxidative stress in cardiac tissue, and helps maintain heart muscle integrity under metabolic stress.
Hepatogen
Liver
Restores hepatocyte gene expression and supports liver regeneration. Particularly relevant for individuals with high metabolic load, supplement stacks, or exposure to environmental toxins.
Testagen
Testes / Endocrine
Bioregulator for testicular tissue. Supports Leydig cell function and testosterone biosynthesis at the gene expression level — not by adding exogenous hormones, but by restoring the tissue's own production capacity.
Ovagen
Liver / GI Tract
Originally developed for gastrointestinal and hepatic tissue, Ovagen supports gut epithelial integrity and liver function. Relevant for gut-brain axis support and digestive resilience.
Chonluten
Lungs / Bronchi
Tissue-specific bioregulator for bronchial and pulmonary tissue. Supports respiratory epithelium integrity and lung function — relevant for endurance athletes and those with respiratory compromise.
Sigumir
Cartilage / Bone
Bioregulator for cartilage and bone tissue. Supports chondrocyte function, collagen synthesis in joint tissue, and bone matrix integrity. Relevant for joint health, recovery, and skeletal longevity.
Build Your Protocol
Cross-Category Protocols
Bioregulators work at the gene expression level — but their effects are amplified when combined with peptides that drive tissue repair and liposomal compounds that support the same biological pathways. These protocols pull the most synergistic compounds from all three categories.
These products are supplied for research and general wellness purposes only. They are not intended to diagnose, treat, cure, or prevent any disease. Always consult a qualified healthcare professional before use. Bioregulator peptides are research compounds — regulations vary by jurisdiction.