Regenerative Exosome Science · GMP Manufactured

Pigmentation

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Skin Concern · Pigmentation

Pigmentation — melanin control & even tone

Inhibit melanin production, block pigment transfer and accelerate skin metabolism to fade spots, sun tan and uneven tone.

Pigmentation — sun spots, melasma and post-inflammatory marks — is melanin that keeps being made and deposited. MYS-Exo exosomes address it at the melanocyte: blocking synthesis, clearing the free radicals that trigger it and speeding away the melanin-laden dead cells, without irritation or peeling.

Pigmentation

Inhibit melanin production, block pigment transfer and accelerate skin metabolism to fade spots, sun tan and uneven tone.

7 days

Skin looks less sallow, clearer and brighter

2–4 weeks

Melanin fades, sun tan and dull patches lighten

6–8 weeks

Skin tone becomes even, fairer and luminous

How to use: Best used at night. Daily sunscreen is mandatory to avoid pigment rebound. Avoid harsh peeling ingredients.

Targeting principle & mechanism

Core functional proteins: HGF, SOD, GSH (glutathione), TGF-β, tyrosinase-inhibiting protein, TRP-1-inhibiting peptide

Targets: Melanocytes, keratin-metabolising cells, dull / pigmented areas

  1. Directly inhibits tyrosinase and TRP-1 activity, blocking melanin synthesis.
  2. Clears UV / oxidative free radicals to prevent new melanin and improve sallow dullness.
  3. Speeds orderly keratinocyte turnover to shed melanin-laden dead cells for an even, clear complexion.
  4. Inhibits melanin transfer to the stratum corneum, fading post-inflammatory marks, sun spots and uneven tone.

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

  1. 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.
  2. 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.
  3. 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.

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