Scientific Reports (Aug 2022)

Red blood cell distribution width is associated with increased interactions of blood cells with vascular wall

  • Sharan Ananthaseshan,
  • Krzysztof Bojakowski,
  • Mariusz Sacharczuk,
  • Piotr Poznanski,
  • Dominik S. Skiba,
  • Lisa Prahl Wittberg,
  • Jordan McKenzie,
  • Anna Szkulmowska,
  • Niclas Berg,
  • Piotr Andziak,
  • Hanna Menkens,
  • Maciej Wojtkowski,
  • Dorota Religa,
  • Fredrik Lundell,
  • Tomasz Guzik,
  • Zbigniew Gaciong,
  • Piotr Religa

DOI
https://doi.org/10.1038/s41598-022-17847-z
Journal volume & issue
Vol. 12, no. 1
pp. 1 – 14

Abstract

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Abstract The mechanism underlying the association between elevated red cell distribution width (RDW) and poor prognosis in variety of diseases is unknown although many researchers consider RDW a marker of inflammation. We hypothesized that RDW directly affects intravascular hemodynamics, interactions between circulating cells and vessel wall, inducing local changes predisposing to atherothrombosis. We applied different human and animal models to verify our hypothesis. Carotid plaques harvested from patients with high RDW had increased expression of genes and proteins associated with accelerated atherosclerosis as compared to subjects with low RDW. In microfluidic channels samples of blood from high RDW subjects showed flow pattern facilitating direct interaction with vessel wall. Flow pattern was also dependent on RDW value in mouse carotid arteries analyzed with Magnetic Resonance Imaging. In different mouse models of elevated RDW accelerated development of atherosclerotic lesions in aortas was observed. Therefore, comprehensive biological, fluid physics and optics studies showed that variation of red blood cells size measured by RDW results in increased interactions between vascular wall and circulating morphotic elements which contribute to vascular pathology.