Forskningsforbindelser af farmaceutisk kvalitet
Buy longevity research peptides online — Epitalon, MOTS-c, NAD+, Thymosin Alpha-1 — all HPLC-verified at ≥99% purity with full Certificate of Analysis. This category covers the most-studied compounds at the intersection of aging biology and peptide science, targeting specific hallmarks of aging: telomere attrition (Epitalon activates telomerase in fibroblast cultures), mitochondrial dysfunction (MOTS-c is a mitochondrial-derived peptide that modulates insulin sensitivity and metabolic aging), cellular NAD+ decline (NAD+ precursors support sirtuin activity and DNA repair), and immune senescence (Thymosin Alpha-1 modulates T-cell function in aging models). For researchers studying biological age, epigenetic clocks, or multi-pathway aging interventions, these compounds provide pharmacologically distinct tools to probe different aging hallmarks. Every batch ships with batch-specific HPLC chromatogram, mass-spectrometry identity confirmation, and published half-life documentation.
Epitalon (AEDG tetrapeptide) is one of the most-studied longevity peptides, based on the naturally-occurring pineal peptide epithalamin. Research demonstrates telomerase activation and extended replicative lifespan in fibroblast cultures — a 44-passage extension vs 34 in controls. 15+ years of human-cohort data on cardiovascular markers and mortality.
MOTS-c is a 16-amino-acid peptide encoded in mitochondrial DNA — one of the only known mitochondrial-derived peptides. Research shows it regulates insulin sensitivity, skeletal muscle metabolism, and AMPK signaling. Levels decline sharply with age, making it central to mitochondrial-aging research.
NAD+ is the cofactor for sirtuin deacetylases and PARP DNA-repair enzymes. Tissue NAD+ concentrations decline 50%+ between young and aged subjects in published data. Direct NAD+ supplementation is the most parsimonious research tool for studying sirtuin-mediated aging interventions.
Thymosin Alpha-1 (Tα1) modulates T-cell development and maturation. Aging thymic involution drives immune senescence — research into Tα1 supplementation tests whether exogenous signaling can partially reverse age-related T-cell decline.
Epitalon and NAD+ are the two most foundational — Epitalon for telomere and senescence research, NAD+ for sirtuin and mitochondrial-repair studies. These have the broadest published literature and the most-established research protocols.
Yes — different peptides target different aging hallmarks (telomeres, mitochondria, DNA repair, immune function). Combined protocols targeting multiple hallmarks simultaneously are increasingly common in longevity research, though interaction data is still being established.
Common markers include epigenetic clocks (Horvath, GrimAge, DunedinPACE), telomere length via qPCR, inflammatory markers (CRP, IL-6), NAD+ concentration, and metabolomic profiles. Body composition and grip strength serve as functional endpoints.
Showing 1–8 of 12 products
Page 1 of 2
Skin HealthCalyssee
Kobberbindende tripeptid (Gly-His-Lys) — naturligt forekommende peptid, studeret for kollagensyntese, hårfollikelbiologi og dermal regenerering.
RecoverySupreme Biologics
Mitokondrielt afledt 16-aminosyre-peptid, studeret for metabolisk regulering og AMPK-aktivering.
RecoverySupreme Biologics
Nicotinamid adenin dinukleotid — essentielt coenzym, centralt for mitokondriel energimetabolisme og sirtuinaktivitet.
Skin HealthFourNines
Kobberbindende tripeptid (Gly-His-Lys) — naturligt forekommende peptid, studeret for kollagensyntese, hårfollikelbiologi og dermal regenerering.
RecoveryFourNines
Ala-Glu-Asp-Gly-tetrapeptid afledt af polypeptidekstrakter fra koglekirtlen — studeret for telomeraseopregulering og circadisk normalisering.
RecoveryFourNines
Mitokondrielt afledt 16-aminosyre-peptid, studeret for metabolisk regulering og AMPK-aktivering.
RecoveryFourNines
Nicotinamid adenin dinukleotid — essentielt coenzym, centralt for mitokondriel energimetabolisme og sirtuinaktivitet.
ResearchCalyssee
Førsteklasses forskningsstak, der kombinerer tre peptider til hud, vævsgendannelse og cellulær energimetabolisme: GHK-Cu 50mg (kobber-tripeptid, der driver kollagensyntese), BPC-157 10mg (gastrisk-afledt angiogent peptid) og NAD+ 500mg i 10ml (mitokondrielt coenzym). ≥99 % HPLC-verificeret.