Fine lines & wrinkles — collagen & line smoothing
Stimulate collagen and elastin production and smooth fine lines, expression lines and deeper wrinkles.
Lines set in when the dermis loses the collagen and elastin that keep the surface plump and springy. MYS-Exo exosomes switch collagen production back on in the fibroblast while inhibiting the enzymes that break it down, so lines soften from within rather than being filled from without.
Fine Lines & Wrinkles
Stimulate collagen and elastin production and smooth fine lines, expression lines and deeper wrinkles.
Skin feels firmer, superficial dry lines soften
Fine lines fade, expression lines look smoother
Wrinkles and folds soften, skin elasticity improves
How to use: Use consistently on face and neck, reinforcing wrinkle-prone areas. Daily sunscreen recommended.
Targeting principle & mechanism
Core functional proteins: TGF-β1/3, bFGF, VEGF, HGF, elastin, procollagen, MMP-1 inhibitors, HSP70
Targets: Dermal fibroblasts, elastic-fibre cells, lined / creased areas
- Activates the TGF-β/Smad pathway to continuously generate collagen, elastin and fibronectin, plumping the dermis under lines.
- Inhibits MMP-1 collagenase, reducing collagen loss so new lines form more slowly.
- Rebuilds the dermal–epidermal junction (DEJ), softening nasolabial folds and eye-area fine lines.
- Antioxidant repair of UV-induced cellular damage, slowing the photo-aging that deepens wrinkles.
How exosomes target the skin
Core functional proteins: CD9 / CD63 / CD81 tetraspanins, integrins, ICAM adhesion proteins, chemokine receptor CXCR4
Targets: Full-thickness damaged / problem skin areas and their target cells
- Targeted recognition: the exosome membrane carries a molecular “postal code” that binds matching ligands on cells in the problem area, actively grabbing the lesion while barely retaining on healthy skin.
- Transdermal delivery: the 30–150 nm nanoscale matches stratum-corneum gaps; with its phospholipid bilayer it enters cells intact via both passive penetration and active endocytosis, without being broken down.
- Intracellular release: once inside the cell the membrane fuses and ruptures, releasing functional proteins that directly regulate cell genes and signalling pathways — improving skin from the root.
