Journal of Nanobiotechnology (Jun 2022)

An IFI6-based hydrogel promotes the healing of radiation-induced skin injury through regulation of the HSF1 activity

  • Jie Hao,
  • Mengyi Sun,
  • Dong Li,
  • Tao Zhang,
  • Jianjun Li,
  • Daijun Zhou

DOI
https://doi.org/10.1186/s12951-022-01466-x
Journal volume & issue
Vol. 20, no. 1
pp. 1 – 14

Abstract

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Abstract Radiation-induced skin injury (RISI) is a common complication of radiotherapy. Interferon-alpha inducible protein 6 (IFI6) significantly reduces the radiation sensitivity of HaCaT cells. Sodium alginate (SA) has substantial moisturizing properties. Graphene oxide (GO) is a suitable substrate with physical antibacterial properties. Therefore, we designed materials to modify IFI6 using the biogule of polydopamine (PDA) connected to GO/SA. The structure, size, morphology, and elemental compositions of IFI6-PDA@GO/SA were analyzed. Cytological studies suggested that IFI6-PDA@GO/SA is non-toxic to HaCaT cells, with antibacterial properties. It promotes migration and vascularization and inhibits apoptosis. These cells express IFI6 after irradiation. The mouse model suggested that IFI6-PDA@GO/SA promotes wound healing and reduces reactive oxygen species expression. IFI6-PDA@GO/SA accelerates RISI healing, possibly by initiating the SSBP1/HSF1 signaling pathway. In addition, IFI6-PDA@GO/SA improves the immune microenvironment. This study constitutes the first use of IFI6 as a RISI wound-healing material.

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