Intracellular Zinc Trafficking during Crotalus atrox Venom Wound Development

Int J Mol Sci. 2023 Apr 5;24(7):6763. doi: 10.3390/ijms24076763.

Abstract

In this study, we examined zinc trafficking in human umbilical vein endothelial cells (HUVEC) stimulated with Crotalus atrox (CA venom) snake venom. We utilized MTS cytotoxicity assays to monitor the cytotoxic range of CA venom. HUVEC monolayers stimulated with 10 µg/mL CA venom for 3 h displayed cellular retraction, which coincided with 53.0 ± 6.5 percent viability. In contrast, venom concentrations of 100 µg/mL produced a complete disruption of cellular adherence and viability decreased to 36.6 ± 1.0. The zinc probe Fluozin-3AM was used to detect intracellular zinc in non-stimulated controls, HUVEC stimulated with 10 µg/mL CA venom or HUVEC preincubated with TPEN for 2 h then stimulated with 10 µg/mL CA venom. Fluorescent intensity analysis returned values of 1434.3 ± 197.4 for CA venom demonstrating an increase of about two orders of magnitude in labile zinc compared to non-stimulated controls. Endothelial response to CA venom induced a 96.1 ± 3.0- and 4.4 ± 0.41-fold increase in metallothionein 1X (MT1X) and metallothionein 2A (MT2A) gene expression. Zinc chelation during CA venom stimulation significantly increased cell viability, suggesting that the maintenance of zinc homeostasis during envenomation injury improves cell survival.

Keywords: Crotalus atrox; cytotoxicity; injury; regeneration; venom; wound; zinc.

MeSH terms

  • Animals
  • Crotalus* / metabolism
  • Human Umbilical Vein Endothelial Cells
  • Humans
  • Metallothionein / metabolism
  • Snake Venoms / metabolism
  • Zinc* / metabolism

Substances

  • Zinc
  • Snake Venoms
  • Metallothionein