Methylene Blue–Powered Skincare
Methylene Blue–Powered Skincare
Powered by Young Goose. Enhanced by Troscriptions.
Skin doesn't age because of a hydration problem. It ages because of an energy problem. Young Goose's flagship moisturizer was already built around this — NAD+ precursors, CoQ10, Ergothioneine, and GHK-Cu targeting cellular function rather than surface symptoms. The new formula adds Creatine to buffer ATP demand spikes, and pharmaceutical grade Methylene Blue, sourced from Troscriptions, taking the mitochondrial strategy further by targeting energy production and cellular detox simultaneously.
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When Young Goose approached us about reformulating C.A.R.E., the fit was obvious. They'd already built a moisturizer around the cellular biology of skin aging. Methylene Blue — Troscriptions' flagship compound for mitochondrial support — was the missing piece. The result is a formula that brings our internal cellular strategy to the surface, literally.
A 3rd generation NAD+ support system that feeds your skin's NAD+ pathway. NAD+ levels decline measurably with age; NAD+ APEX supports the cellular machinery that depends on it for energy production and repair.
Acts as an alternative electron carrier across mitochondrial chain blockages, supporting energy production when normal electron transport pathways are compromised. New to the next generation formula, in collaboration with Troscriptions.
Buffers ATP during cellular energy demand spikes, giving skin cells a reserve of energy precisely when they need it most. New to the next generation formula.
Serves as the inner-membrane electron shuttle essential to the electron transport chain. Replenishes naturally declining levels to support efficient mitochondrial energy production.
A long-half-life antioxidant that concentrates in mitochondria, protecting against oxidative stress at the cellular level where it is most needed.
Modulates gene expression associated with mitochondrial biogenesis and extracellular matrix remodeling, supporting the conditions for collagen synthesis and cellular renewal.