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August 19, 2019Journal of the American Heart Association193 citationsOpen Access

Systemic Inflammation Rapidly Induces Reversible Atrial Electrical Remodeling: The Role of Interleukin‐6–Mediated Changes in Connexin Expression

PLPietro Enea LazzeriniFLFranco Laghi‐PasiniMAMaurizio Acampa

Structured PICO

Does systemic inflammation induce reversible atrial electrical remodeling via interleukin-6-mediated changes in connexin expression?

P
Population
54 patients with different inflammatory diseases and elevated C-reactive protein, an additional 12 patients undergoing cardiac surgery (for tissue/blood analysis), and an in vitro model using HL-1 mouse atrial myocytes.
I
Intervention
Reduction of C-reactive protein by >75% (clinical cohort) and exposure to interleukin-6 (in vitro model).
C
Comparator
Baseline active inflammatory disease state with elevated C-reactive protein (clinical cohort) and unexposed cells (in vitro model).
O
Outcome
Electrocardiographic P-wave dispersion indices, cytokine levels (interleukin-6, tumor necrosis factor-α, interleukin-1, interleukin-10), and connexin expression (connexin 40, connexin 43).surrogate

Systemic inflammation rapidly and reversibly induces atrial electrical remodeling by down-regulating cardiac connexins via interleukin-6, providing a mechanistic link between acute inflammation and increased atrial fibrillation risk.

Abstract

Background Systemic inflammation is a strong predictor of atrial fibrillation. A key role for electrical remodeling is increasingly recognized, and experimental data suggest that inflammatory cytokines can directly affect connexins resulting in gap-junction dysfunction. We hypothesized that systemic inflammation, regardless of its origin, promotes atrial electric remodeling in vivo, as a result of cytokine-mediated changes in connexin expression. Methods and Results Fifty-four patients with different inflammatory diseases and elevated C-reactive protein were prospectively enrolled, and electrocardiographic P-wave dispersion indices, cytokine levels (interleukin-6, tumor necrosis factor-α, interleukin-1, interleukin-10), and connexin expression (connexin 40, connexin 43) were measured during active disease and after reducing C-reactive protein by >75%. Moreover, peripheral blood mononuclear cells and atrial tissue specimens from an additional sample of 12 patients undergoing cardiac surgery were evaluated for atrial and circulating mRNA levels of connexins. Finally, in vitro effects of interleukin-6 on connexin expression were studied in HL-1 mouse atrial myocytes. In patients with active inflammatory diseases, P-wave dispersion indices were increased but rapidly decreased within days when C-reactive protein normalizes and interleukin-6 levels decline. In inflammatory disease patients, both P-wave dispersion indices and interleukin-6 changes were inversely associated with circulating connexin levels, and a positive correlation between connexin expression in peripheral blood mononuclear cells and atrial tissue was demonstrated. Moreover, interleukin-6 significantly reduced connexin expression in HL-1 cells. Conclusions Our data suggest that regardless of specific etiology and organ localization, systemic inflammation, via interleukin-6 elevation, rapidly induces atrial electrical remodeling by down-regulating cardiac connexins. Although transient, these changes may significantly increase the risk for atrial fibrillation and related complications during active inflammatory processes.

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Cite This Study

Lazzerini et al. (2019) studied this question.

synapsesocial.com/papers/69d56f7875589c71d767d8eehttps://doi.org/10.1161/jaha.118.011006
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effect of Ongoing Inflammation in Rheumatoid Arthritis on P-Wave Dispersion2007 · 33 citations
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  5. 5Role of Tumor Necrosis Factor-α in the Pathogenesis of Atrial Fibrosis and Development of an Arrhythmogenic Substrate2013 · 122 citations