At a glance

Senescent-cell clearance
Physical fitness / organ function restoration (preclinical)
Vascular rejuvenation (preclinical)
Testosterone support via Leydig-cell senolysis (preclinical)
Unknown human safety / oncogenic risk
Off-target apoptosis risk
Injection-site / flu-like reactions
Product-quality / purity uncertainty
BenefitSide effectHealth risk· more & brighter bars = stronger

Effects

  • Senescent-cell clearance: Selectively induces apoptosis in FOXO4-overexpressing senescent cells while leaving healthy proliferating cells unaffected in animal and in-vitro models [1][3].
  • Physical fitness restoration (preclinical): In naturally aged and chemotherapy-stressed mice, treatment restored fur density, physical activity levels, and renal function within weeks [7][8].
  • Vascular / endothelial rejuvenation (preclinical): Studies in aged mouse models show FOXO4-DRI alleviates endothelial cell senescence and improves vascular function [5].
  • Testosterone support (preclinical): In aged mice, clearance of senescent Leydig cells improved the testicular microenvironment and alleviated age-related testosterone-secretion insufficiency [6].
  • Reduction of pro-inflammatory SASP: Clearing senescent cells reduces their senescence-associated secretory phenotype (SASP) — the chronic inflammatory cytokine cloud that drives tissue ageing — in animal models [1][3].
Classification

Experimental senolytic peptide (D-retro-inverso)

Route

Subcutaneous injection (oral/nasal/transdermal not viable — peptide degradation)

Regulatory status

Not FDA-approved; research-use only; no completed human trials (as of June 2026)

Half-life / stability

Cellular uptake ~2–4 h; detectable 72+ h; D-amino acid structure confers protease resistance vs. L-peptides

Origin

Developed by de Keizer et al., Erasmus University Medical Center; first published in Cell, 2017