Differential Photosensitivity of Fibroblasts Obtained from Normal Skin and Hypertrophic Scar Tissues

Int J Mol Sci. 2024 Feb 9;25(4):2126. doi: 10.3390/ijms25042126.

Abstract

It is unclear whether normal human skin tissue or abnormal scarring are photoreceptive. Therefore, this study investigated photosensitivity in normal skin tissue and hypertrophic scars. The expression of opsins, which are photoreceptor proteins, in normal dermal fibroblasts (NDFs) and hypertrophic scar fibroblasts (HSFs) was examined. After exposure to blue light (BL), changes in the expression levels of αSMA and clock-related genes, specifically PER2 and BMAL1, were examined in both fibroblast types. Opsins were expressed in both fibroblast types, with OPN3 exhibiting the highest expression levels. After peripheral circadian rhythm disruption, BL induced rhythm formation in NDFs. In contrast, although HSFs showed changes in clock-related gene expression levels, no distinct rhythm formation was observed. The expression level of αSMA was significantly higher in HSFs and decreased to the same level as that in NDFs upon BL exposure. When OPN3 knocked-down HSFs were exposed to BL, the reduction in αSMA expression was inhibited. This study showed that BL exposure directly triggers peripheral circadian synchronization in NDFs but not in HSFs. OPN3-mediated BL exposure inhibited HSFs. Although the current results did not elucidate the relationship between peripheral circadian rhythms and hypertrophic scars, they show that BL can be applied for the prevention and treatment of hypertrophic scars and keloids.

Keywords: OPN3; blue light; human skin fibroblast; hypertrophic scar; peripheral circadian rhythm; αSMA.

MeSH terms

  • Cicatrix, Hypertrophic* / metabolism
  • Fibroblasts / metabolism
  • Humans
  • Keloid* / metabolism
  • Opsins / metabolism
  • Rod Opsins / metabolism
  • Skin / metabolism

Substances

  • Opsins
  • OPN3 protein, human
  • Rod Opsins

Grants and funding

This work was funded by JSPS KAKENHI, grant number JP16K11366 and 18H02961.