Vascular pathologies in chronic kidney disease: pathophysiological mechanisms and novel therapeutic approaches

Philip Düsing1, Andreas Zietzer1, Philip Roger Goody1

  • 1Heart Center, Department of Medicine II, University Hospital Bonn, University of Bonn, Venusberg-Campus 1, 53127, Bonn, Germany.

Journal of Molecular Medicine (Berlin, Germany)
|January 22, 2021
PubMed

Insights

Chronic kidney disease (CKD) significantly increases cardiovascular disease (CVD) risk through vascular calcification and other factors. Understanding these links may reveal new therapeutic targets for better patient outcomes.

Area of Science:

  • Nephrology
  • Cardiology
  • Pathophysiology

Background:

  • Cardiovascular disease (CVD) is a leading cause of mortality in chronic kidney disease (CKD) patients.
  • CKD is an independent risk factor for CVD, driven by uremic toxins, inflammation, and oxidative stress.
  • Vascular alterations, specifically atherosclerosis and vascular calcification (VC), are key mediators of CKD-CVD mortality.

Purpose of the Study:

  • To review the pathophysiological mechanisms linking CKD and CVD.
  • To emphasize vascular alterations, particularly VC, in CKD-associated cardiovascular risk.
  • To highlight novel molecular pathways and potential therapeutic targets.

Main Methods:

  • Literature review of pathophysiological mechanisms.
  • Analysis of CKD-specific alterations impacting cardiovascular health.
  • Focus on vascular calcification pathways.

Main Results:

  • CKD promotes VC through mineral dysregulation, hyperphosphatemia, and impaired inhibitors (fetuin A, vitamin K-dependent proteins).
  • Vascular smooth muscle cell transdifferentiation into osteoblast-like cells is central to VC.
  • Extracellular vesicles and microRNAs are emerging as key intercellular communication pathways in VC.

Conclusions:

  • CKD significantly elevates CVD risk, primarily via vascular damage like VC.
  • Understanding VC's cellular and molecular mechanisms is crucial for developing targeted therapies.
  • Novel pathways involving intercellular communication offer promising therapeutic avenues for CKD-CVD patients.

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