KAIST Skin-Conformable Micro-LED Mask Boosts Skin Rejuvenation, Brightening, and Synergistic Benefits with Polynucleotide (PN) Injections
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KAIST Skin-Conformable Micro-LED Mask Boosts Skin Rejuvenation, Brightening, and Synergistic Benefits with Polynucleotide (PN) Injections


Home beauty devices that let users care for their skin conveniently at home have grown popular recently, but conventional LED masks are limited not only by their rigid structures but also by their point-emitting LEDs, which must be positioned away from the skin to spread light over a broader area. This inherently prevents close skin contact and increases optical loss.

KAIST (President Chung-Sik Bae) announced on September 2 that a joint research team led by Professor Keon Jae Lee from the Department of Materials Science and Engineering confirmed skin-brightening and elasticity-improving effects using a face-conforming LED mask. The mask combines a flexible surface-emitting micro-LED layer, consisting of a dense micro-LED array and a light-diffusing layer for uniform illumination, with a three-dimensional elastic scaffold that conforms to facial contours.

In a 2024 study published in Advanced Materials, Professor Lee clinically demonstrated that a flexible surface-emitting micro-LED mask produced up to 340% greater improvement in deep skin elasticity than conventional LED masks.

In the present study, the 3D elastic scaffold adapted to different facial contours, increasing skin-contact area from 46.9% to 78.1% and reducing the light-source-to-skin distance to 1.8 mm, while achieving 93.83% light uniformity across eight facial measurement sites.

The researchers evaluated the mask in a split-face clinical study involving 33 participants. All of the participants received PN injections across the entire face, while the micro-LED mask was applied to only one side for eight weeks. The micro-LED-treated side showed greater improvement across all five skin-brightening indices, including skin brightness, tone uniformity, skin exfoliation, melasma count, and melasma area. Consistent with the clinical findings, human-derived skin tissue treated with micro-LEDs also showed reduced expression of the melanogenesis-related markers MITF and TYR, supporting a direct contribution of the LED treatment to the brightening effect. PN injections are primarily known for skin rejuvenation, with limited evidence of a direct skin-brightening effect when used alone.

The synergy between PN injection and the micro-LED mask was also evident in skin regeneration and post-procedure recovery. Deep skin elasticity improved by 12.8% on the LED+PN side, compared with 3.1% on the PN-only side, representing approximately 4.1 times the improvement observed with PN alone. Skin-barrier recovery was faster, while post-procedure redness was reduced to a greater extent, consistent with the known anti-inflammatory and tissue-repair effects of red-light photobiomodulation. These findings suggest that the LED mask may boost mitochondrial ATP production in the skin and activate regenerative responses that PN alone cannot fully induce.

Professor Lee said, “This study clinically demonstrates that home-use LED masks can extend beyond skin rejuvenation to skin brightening and highlights the importance of delivering light in close contact with the skin. When combined with in-clinic skin-rejuvenation injections, the mask can substantially improve skin elasticity and accelerate post-procedure recovery, creating a new clinic-to-home care platform.”

This study was conducted jointly by researchers from KAIST and AMOREPACIFIC. A related product based on the technology is scheduled to launch in Japan in Q4 2026 and enter the U.S. market in Q1 2027.

The resulting paper, titled “Clinical validation of skin brightening and rejuvenation enabled by a skin-conformable surface-emitting micro-LED mask with injection,” was published in Nano Energy (Vol. 157, Article 112288; DOI: 10.1016/j.nanoen.2026.112288).
Paper title: Clinical validation of skin brightening and rejuvenation enabled by a skin-conformable surface-emitting micro-LED mask with injection
Journal: Nano Energy (Vol. 157, Article 112288)
DOI: 10.1016/j.nanoen.2026.112288)
Angehängte Dokumente
  • Figure 1. Structure and operation of the Skin-Conformable Surface-Emitting Micro-LED Mask with a three-dimensional elastic scaffold. The elastic supports positioned between the outer cover and the surface-emitting layer move independently along the facial contours, bringing the light source into close contact with the skin. This structure reduces gaps between the mask and skin and enables uniform delivery of red light across the entire face.
  • Figure 2. Mechanism underlying the combined cosmetic effects of PN skin-rejuvenation injections and the Skin-Conformable Surface-Emitting Micro-LED Mask. Red-light irradiation following PN injections promotes mitochondrial activation, ATP production, fibroblast proliferation, and collagen and elastin formation at sites of microinjury, swelling, and inflammation. It also induces macrophage polarization toward a reparative phenotype, reducing inflammation and synergistically enhancing skin rejuvenation, brightening, and post-procedure recovery.
  • Figure 3. Clinical and ex vivo validation of combined PN injections and surface-emitting micro-LED treatment. In a split-face clinical trial involving 33 participants, the combination treatment improved all five skin-brightening parameters and produced approximately 4.1 times the improvement in deep skin elasticity observed with PN injections alone.. In human-derived skin tissue, the combination also reduced the expression of the melanogenesis-related markers MITF and TYR, supporting the observed skin-brightening effect.
Regions: Asia, South Korea, Japan
Keywords: Applied science, Engineering, Technology, Business, Medical & pharmaceutical, Health, Medical, Well being

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