Mishima E, Ito J, Wu Z, Nakamura T, Wahida A, Doll S, Tonnus W, Nepachalovich P, Eggenhofer E, Aldrovandi M, et al
Some of these biological drivers that accelerate cellular aging include: Mitochondrial dysfunction (your cells ability to produce energy efficiently) DNA damage (which accumulates over time and affects cell function) Cellular senescence ( old or damaged cells that stop dividing but dont die off) Oxidative stress (an imbalance between free radicals and your antioxidant defenses) Chronic inflammation (low-grade inflammation that disrupts repair and immunity) Impaired tissue repair (a reduced ability to regenerate and heal) Hormonal changes (declines in key hormones that regulate metabolism, cognition, and more) Immune system decline (reduced ability to defend against threats and remove cellular waste) These internal biological mechanisms form a feedback loop that accelerates aging from the inside out

Cellular-Response Research Research involving GHK-Cu has explored its interaction with: Cellular-repair and regenerative signaling pathways Oxidative-stress and antioxidant-defense mechanisms Tissue-remodeling and extracellular-matrix pathways Cellular-response and physiological-maintenance signaling Because GHK-Cu interacts with regenerative and growth-related pathways, some research settings involving active cancer-, tumor-, or abnormal proliferative research models may warrant additional monitoring and individualized evaluation
References Pickart L, Margolina A
It may lengthen the anagen phase of the hair cycle