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Recombinant human collagen XVII protects epidermal stem cells from blue light-induced photoaging by downregulating the Notch pathway.

Created on 17 Jul 2026

Authors

Xudong Wang, Qiang Li, Xin Yang, Yu Bai, Shijia Sui, Ge Ge, Haitao Li, Rongya Yang

Published in

Annals of medicine. Volume 58. Issue 1. Pages 2694876. Epub Jul 16, 2026.

Abstract

Epidermal stem cell (ESC) degeneration is closely associated with skin aging and functional deterioration. Type XVII collagen (COL17A1) critically regulates ESC polarity and epidermal homeostasis. This study investigated the protective effects of recombinant human COLXVII (rhCol17) against blue light-induced photoaging, particularly on ESC.
Blue light-induced photoaging models were established using in vitro ESCs and in vivo Sprague-Dawley rats. Transcriptomic profiling was conducted to systematically elucidate the underlying mechanisms.
In photoaging ESCs, rhCol17 enhanced ESC viability and migratory capacity, decreased senescence cells, while suppressing ROS production and the secretion of pro-inflammatory factors interleukin (IL)-6, IL-1β and tumor necrosis factor-α. Furthermore, rhCol17 upregulated stem cell markers COL17A1, ITGB1, ITGA6 and P63. In photoaging rat models, rhCol17 alleviated skin dryness, reduced epidermal thickness, delayed aging, and increased the levels of COL17A1 and ITGB1. Importantly, rhCol17 treatment does not affect organ histology or biochemical parameters in rats. Mechanistically, rhCol17 could inhibit the levels of Notch1 and HES1, and senescence markers P16, P21, and P53 in photoaging ESCs and rat skin. Additionally, the ADAM10 inhibitor GI254023X slightly reduced or did not significantly alter the proportion of senescent cells or the expression levels of P16, P21, and P53 in rhCol17-treated BL-induced ESCs, whereas the Notch activator VPA significantly reversed these protective effects of rhCol17.
This study demonstrates that rhCol17 counteracts blue light-induced ESC dysfunction and epidermal photoaging, suggesting therapeutic potential for photoaging intervention.

PMID:
42464532
Bibliographic data and abstract were imported from PubMed on 17 Jul 2026.

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