The Role of α3β1 Integrin Modulation on Fabry Disease Podocyte Injury and Kidney Impairment

Toxins (Basel). 2023 Dec 14;15(12):700. doi: 10.3390/toxins15120700.

Abstract

Podocyte dysfunction plays a crucial role in renal injury and is identified as a key contributor to proteinuria in Fabry disease (FD), primarily impacting glomerular filtration function (GFF). The α3β1 integrins are important for podocyte adhesion to the glomerular basement membrane, and disturbances in these integrins can lead to podocyte injury. Therefore, this study aimed to assess the effects of chloroquine (CQ) on podocytes, as this drug can be used to obtain an in vitro condition analogous to the FD. Murine podocytes were employed in our experiments. The results revealed a dose-dependent reduction in cell viability. CQ at a sub-lethal concentration (1.0 µg/mL) induced lysosomal accumulation significantly (p < 0.0001). Morphological changes were evident through scanning electron microscopy and immunofluorescence, highlighting alterations in F-actin and nucleus morphology. No significant changes were observed in the gene expression of α3β1 integrins via RT-qPCR. Protein expression of α3 integrin was evaluated with Western Blotting and immunofluorescence, demonstrating its lower detection in podocytes exposed to CQ. Our findings propose a novel in vitro model for exploring secondary Fabry nephropathy, indicating a modulation of α3β1 integrin and morphological alterations in podocytes under the influence of CQ.

Keywords: Fabry disease; chloroquine; podocyte injury.

MeSH terms

  • Animals
  • Fabry Disease* / metabolism
  • Integrin alpha3beta1* / genetics
  • Integrin alpha3beta1* / metabolism
  • Kidney Diseases* / metabolism
  • Mice
  • Podocytes* / metabolism
  • Renal Insufficiency

Substances

  • Integrin alpha3beta1