Biomedicines (Jun 2022)

Thrombin Activity in Rodent and Human Skin: Modified by Inflammation and Correlates with Innervation

  • Valery Golderman,
  • Shani Berkowitz,
  • Shani Guly Gofrit,
  • Orna Gera,
  • Shay Anat Aharoni,
  • Daniela Noa Zohar,
  • Daria Keren,
  • Amir Dori,
  • Joab Chapman,
  • Efrat Shavit-Stein

DOI
https://doi.org/10.3390/biomedicines10061461
Journal volume & issue
Vol. 10, no. 6
p. 1461

Abstract

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Thrombin is present in peripheral nerves and is involved in the pathogenesis of neuropathy. We evaluated thrombin activity in skin punch biopsies taken from the paws of male mice and rats and from the legs of patients with suspected small-fiber neuropathy (SFN). In mice, inflammation was induced focally by subcutaneous adjuvant injection to one paw and systemically by intraperitoneal lipopolysaccharides (LPS) administration. One day following injection, thrombin activity increased in the skin of the injected compared with the contralateral and non-injected control paws (p = 0.0009). One week following injection, thrombin increased in both injected and contralateral paws compared with the controls (p = 0.026), coupled with increased heat-sensitivity (p = 0.009). Thrombin activity in the footpad skin was significantly increased one week after systemic administration of LPS compared with the controls (p = 0.023). This was not accompanied by increased heat sensitivity. In human skin, a correlation was found between nerve fiber density and thrombin activity. In addition, a lower thrombin activity was measured in patients with evidence of systemic inflammation compared with the controls (p = 0.0035). These results support the modification of skin thrombin activity by regional and systemic inflammation as well as a correlation with nerve fiber density. Skin thrombin activity measurments may aid in the diagnosis and treatment of SFN.

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