Adhesive-Yet-Removable Silica-Polydopamine Janus Particles for High-Performance Skin Photoprotection

Abstract Photoprotective materials must remain on the skin during use while permitting gentle removal afterward, creating a conflict between durable adhesion and post-use cleansing. Here, we report anisotropic dumbbell-shaped mesoporous Silica-Polydopamine Janus particles (SiO2&PDA JPs) designed to balance these competing requirements at the skin interface. The hydrophilic silica domain suppresses PDA aggregation and serves as a carrier for avobenzone, whereas the PDA domain provides broadband ultraviolet shielding, radical-scavenging activity, and skin adhesion. Under continuous ultraviolet irradiation, more than 70% of avobenzone remained in the Janus system after 4 h, compared with approximately 10% for free avobenzone. Ex vivo imaging indicated that the SiO2&PDA JPs were predominantly confined to the skin surface, and in vivo fluorescence imaging showed approximately 60% retention after 6 h of unrestricted mouse activity. The particles resisted water rinsing but were substantially removed by wet-towel wiping. Their adsorption at oil-water interfaces and reduction of interfacial tension further promoted emulsification-assisted removal of oily residues under gentle rubbing. In HaCaT cells, the Janus formulation reduced ultraviolet-induced reactive oxygen species accumulation, mitochondrial depolarization, and γH2AX formation. In a mouse model, it attenuated epidermal thickening and ultraviolet-associated DNA damage. These results identify anisotropic SiO2&PDA JPs as an adhesive-yet-removable skin-interfacing biomaterial integrating ultraviolet-filter stabilization, radical-scavenging activity, surface retention, and practical cleansing.

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Publication Details

Journal
ACS Applied Materials & Interfaces
Published
2026-10-06
DOI
https://doi.org/10.1021/acsami.6c15420
Primary Topic
Skin Protection and Aging
Type
article
Field-Weighted Citation Impact
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article

Adhesive-Yet-Removable Silica-Polydopamine Janus Particles for High-Performance Skin Photoprotection

Licheng Chen, Hang Jiang, Cheng Yang, Haoran Jin et al.
ACS Applied Materials & Interfaces
Skin Protection and Aging
article

Adhesive-Yet-Removable Silica-Polydopamine Janus Particles for High-Performance Skin Photoprotection

Licheng Chen, Hang Jiang, Cheng Yang, Haoran Jin, Yunxing Li, Bing Tian Zhao, Ziyuan Ji, Beizhe Chang
article en

Abstract

Abstract Photoprotective materials must remain on the skin during use while permitting gentle removal afterward, creating a conflict between durable adhesion and post-use cleansing. Here, we report anisotropic dumbbell-shaped mesoporous Silica-Polydopamine Janus particles (SiO2&PDA JPs) designed to balance these competing requirements at the skin interface. The hydrophilic silica domain suppresses PDA aggregation and serves as a carrier for avobenzone, whereas the PDA domain provides broadband ultraviolet shielding, radical-scavenging activity, and skin adhesion. Under continuous ultraviolet irradiation, more than 70% of avobenzone remained in the Janus system after 4 h, compared with approximately 10% for free avobenzone. Ex vivo imaging indicated that the SiO2&PDA JPs were predominantly confined to the skin surface, and in vivo fluorescence imaging showed approximately 60% retention after 6 h of unrestricted mouse activity. The particles resisted water rinsing but were substantially removed by wet-towel wiping. Their adsorption at oil-water interfaces and reduction of interfacial tension further promoted emulsification-assisted removal of oily residues under gentle rubbing. In HaCaT cells, the Janus formulation reduced ultraviolet-induced reactive oxygen species accumulation, mitochondrial depolarization, and γH2AX formation. In a mouse model, it attenuated epidermal thickening and ultraviolet-associated DNA damage. These results identify anisotropic SiO2&PDA JPs as an adhesive-yet-removable skin-interfacing biomaterial integrating ultraviolet-filter stabilization, radical-scavenging activity, surface retention, and practical cleansing.

ACS Applied Materials & Interfaces
Jiangnan University (CN)
Openalex Percentile: Top 9%
Skin Protection and Aging
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