Regenerative Exosome Science · GMP Manufactured

Enlarged Pores

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Skin Concern · Enlarged Pores

Enlarged pores — oil balance & refined texture

Balance oil and moisture, soften rough skin and refine a coarse, uneven texture so pores look tighter and smoother.

Pores look larger when the skin is oily-but-dehydrated and the surrounding texture is rough and slack. Rather than stripping the skin, MYS-Exo exosomes rebalance oil and water and firm the tissue around each pore, so the surface reads smoother and more refined.

Enlarged Pores

Balance oil and moisture, soften rough skin and refine a coarse, uneven texture so pores look tighter and smoother.

Same day

Skin becomes soft, tight-and-oily feeling eases

3–5 days

Texture feels smoother, shine is better balanced

Over 2–4 weeks

Surface looks more refined, pores appear tighter

How to use: Use twice daily. Combine with a light moisturizer; keep consistent sun protection.

Targeting principle & mechanism

Core functional proteins: bFGF, VEGF, HAS1/2/3, aquaporin AQP3, TGF-β

Targets: Keratinocytes, dermal fibroblasts, dermal microcirculation

  1. Up-regulates keratinocyte AQP3 water channels to rebalance an oily-but-dehydrated surface.
  2. Stimulates fibroblasts to secrete hyaluronic acid, plumping and firming the tissue around each pore.
  3. VEGF improves dermal microcirculation and the skin’s own water cycle, softening rough, coarse texture.

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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