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High-phosphate diet causes atrial remodeling and increases atrial fibrillation vulnerability via STAT3/NF-κB signaling and oxidative stress

  • Triservice General Hospital Taiwan
  • National Defense Medical University

Research output: Contribution to journalJournal Article peer-review

19 Scopus citations

Abstract

Aim: Hyperphosphatemia is associated with adverse cardiovascular outcomes in both the general population and patients with end-stage renal disease. We evaluated whether high inorganic phosphate (Pi) intake causes atrial remodeling and increased atrial fibrillation (AF) risk. Methods: The 5/6 nephrectomized chronic kidney disease (CKD) mice were fed a high-Pi (2%) diet for 10 weeks. AF vulnerability was evaluated through transesophageal burst atrial pacing. Phosphoproteomic, Western blotting, and immunohistochemistry were used to evaluate the effects of high Pi in atrial fibroblasts, atrial myocytes, and HL-1 myocytes. Results: CKD and sham mice fed a high-Pi diet exhibited increased AF vulnerability, atrial fibrosis, and oxidative stress compared with mice fed a normal diet. Compared with normal (1 mM) Pi, high (2 mM) Pi significantly increased the activity of atrial fibroblasts and mitochondrial oxidative stress. Phosphoproteomic analysis revealed that compared with normal Pi, high Pi considerably increased the phosphorylation of intracellular proteins in atrial fibroblasts, including proteins related to NF-κB signaling and STAT3. Inhibition of NF-κB, STAT3, and Nox4 by small interfering RNA reduced the high-Pi-induced expression of collagen. In HL-1 myocytes, the high Pi induced the degradation of myofibril proteins and hyperphosphorylation of RyR2, which was abolished by Nox4 and CaMKII inhibition. Switching back to a normal-Pi diet improved the atrial abnormalities induced by high-Pi diet. Conclusions: High-Pi intake causes atrial structural and electrical remodeling and increases AF vulnerability, which is mediated through STAT3/NF-κB signaling and oxidative stress. High dietary Pi intake can exert detrimental effects on atria and may increase AF risk.

Original languageEnglish
Article numbere13964
Pages (from-to)e13964
JournalActa Physiologica
Volume238
Issue number2
DOIs
StatePublished - 06 2023

Bibliographical note

© 2023 Scandinavian Physiological Society. Published by John Wiley & Sons Ltd.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • atrial fibrillation
  • oxidative stress
  • phosphate
  • phosphoproteomics
  • Oxidative Stress/physiology
  • Humans
  • Renal Insufficiency, Chronic/complications
  • Heart Atria/metabolism
  • STAT3 Transcription Factor/metabolism
  • Atrial Fibrillation/etiology
  • Animals
  • Atrial Remodeling/physiology
  • Mice
  • Phosphates/metabolism
  • NF-kappa B/metabolism
  • Disease Models, Animal

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