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Staphylococcus epidermidis prevents UV-induced skin aging by suppressing TLR3-mediated senescence

  • Xinxin Wang
  • , Mengke Wang
  • , Jingya Yang
  • , Wenbo Liu
  • , Haidong Jia
  • , Yuanyuan Chen
  • , Yuping Lai
  • East China Normal University
  • Shanghai Jahwa United Co. Ltd

科研成果: 期刊稿件文章同行评审

摘要

Ultraviolet (UV) radiation is a major environmental driver of skin photoaging and induces keratinocyte senescence accompanied by the release of senescence-associated secretory phenotype (SASP) factors that promote dermal degeneration. However, whether and how skin commensal bacteria modulate UV-induced senescence remains incompletely understood. Here, we investigated the potential role of Staphylococcus epidermidis, a dominant epidermal commensal, in regulating UV-induced skin photoaging. In a murine photoaging model, intradermal or topical administration of a ≤10 kDa fraction derived from S. epidermidis culture supernatant attenuated epidermal hyperplasia, collagen degradation, and the expression of senescence-associated markers following long-term UV exposure. In keratinocytes, UVB irradiation induced reactive oxygen species accumulation, DNA damage, and robust production of SASP factors that promoted paracrine senescence in dermal fibroblasts. Treatment with S. epidermidis or its candidate bioactive lipopeptide component LP78 markedly reduced these responses. Genetic deletion or silencing of Toll-like receptor 3 (Tlr3) diminished UV-induced SASP factor production and fibroblast senescence, supporting a role of TLR3 in photoaging-associated inflammatory signaling. Mechanistically, S. epidermidis and LP78 activated TLR2 signaling to induce TNF receptor-associated factor 1 (TRAF1), a negative regulator of TLR3, thereby suppressing TLR3-mediated SASP production. Collectively, these findings identify a potential microbiota-innate immune regulatory axis in which S. epidermidis-derived factors restrain keratinocyte inflammatory senescence and attenuate UV-induced skin damage. This work highlights a potential role of commensal bacteria in limiting photoaging-associated inflammation.

源语言英语
页(从-至)1796085
页数1
期刊Frontiers in Immunology
17
DOI
出版状态已出版 - 2026

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