Skip to main content

Under: Anti-Aging & Longevity

Best Peptides for Cellular Senescence

Reducing the accumulation of dysfunctional senescent cells that drive aging.

4 peptides

Cellular senescence refers to the accumulation of dysfunctional cells that have lost the ability to divide but remain metabolically active, contributing to chronic inflammation and age-related decline. Research peptides like SS-31 and Epitalon are being studied for their potential to address senescence through distinct mechanisms: SS-31 targets mitochondrial function by stabilizing the electron transport chain and reducing oxidative stress, while Epitalon is investigated for its effects on telomerase activity and circadian regulation. These peptides represent different research approaches to understanding how cellular dysfunction might be modulated at the molecular level.

Research protocols for senescence-related peptides typically involve subcutaneous or intramuscular administration, with frequency and duration varying significantly between compounds and study designs. Dosing considerations are highly dependent on the specific peptide, individual factors, and research objectives, making consultation with a research-focused healthcare provider essential for anyone considering participation in peptide research.

Peptides Studied for Cellular Senescence

Epitalon
medium

Epitalon (Epithalon) is a synthetic tetrapeptide based on the natural peptide epithalamin, produced by the pineal gland. It is primarily studied for its effects on telomerase activation.

Epitalon
medium

Epitalon (Epithalon) is a synthetic tetrapeptide based on the natural peptide epithalamin, produced by the pineal gland. It is primarily studied for its effects on telomerase activation.

SS-31, also known as Elamipretide or Bendavia, is a mitochondria-targeted tetrapeptide. It has been studied extensively for mitochondrial diseases, heart failure, and age-related decline in mitochondrial function.

SS-31, also known as Elamipretide or Bendavia, is a mitochondria-targeted tetrapeptide. It has been studied extensively for mitochondrial diseases, heart failure, and age-related decline in mitochondrial function.

Related Conditions