Cutaneous expression of TREM, vitamin D receptor and HMGB1 in vitamin D deficiency

Austin H Nguyen1, Victorial M Lim1, Jonathan P Fleegel1

  • 1Department of Clinical and Translational Science, Creighton University School of Medicine, Omaha, NE, USA.

Insights

Vitamin D influences skin cell signaling by affecting triggering receptors expressed on myeloid cells (TREM-1 and TREM-2). This vitamin D-TREM pathway interaction may impact skin conditions and keratinocyte differentiation.

Area of Science:

  • Dermatology
  • Immunology
  • Cell Biology

Background:

  • Vitamin D receptor (VDR) and TREM pathways are linked to skin diseases.
  • The precise relationship and potential crosstalk between VDR and TREM signaling in the skin are not well understood.

Purpose of the Study:

  • To investigate the impact of vitamin D status on the expression of TREM-1, TREM-2, VDR, HMGB1, and RAGE in cutaneous tissues.
  • To explore the potential crosstalk between VDR and TREM pathways in the skin.

Main Methods:

  • Utilized Yucatan microswine fed either vitamin D-deficient or sufficient diets.
  • Employed immunohistochemistry to evaluate the epidermal expression of TREM-1, TREM-2, VDR, HMGB1, and RAGE in cutaneous tissue samples.

Main Results:

  • Vitamin D sufficiency correlated with increased TREM-1 and TREM-2 expression in keratinocytes.
  • TREM-1 expression was higher in basal cells, while TREM-2 was more abundant in keratinocytes, irrespective of vitamin D levels.
  • VDR expression was consistently higher in the cytoplasm and nuclei of basal cells compared to keratinocytes. HMGB1 and RAGE levels showed no significant difference based on vitamin D status.

Conclusions:

  • Vitamin D plays a role in regulating TREM pathway signaling within the skin.
  • The ratio of TREM-1 to TREM-2 may be involved in keratinocyte differentiation.
  • Potential crosstalk between VDR and TREM pathways could influence the progression of skin cancers and inflammatory skin disorders.

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