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Published on: June 15, 2016
Hypervolemia in Dialysis Patients Impairs STAT3 Signaling and Upregulates miR-142-3p: Effects on IL-10 and IL-6
Christof Ulrich1, Roman Fiedler1,2, Eva Herberger1
1Department of Internal Medicine II, Martin Luther University Halle-Wittenberg, 06120 Halle (Saale), Germany.
Insights
Fluid overload in hemodialysis patients elevates pro-inflammatory cytokine IL-6 and impairs anti-inflammatory IL-10 signaling, potentially via STAT3 and miR-142 pathways. This suggests hypervolemia disrupts immune cell communication.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Fluid overload is linked to inflammation in hemodialysis (HD) patients.
- Pro-inflammatory Interleukin-6 (IL-6) may overpower anti-inflammatory Interleukin-10 (IL-10).
Purpose of the Study:
- To investigate if hypervolemia impairs IL-10 and IL-6 signaling pathways (STAT3) and miR-142 in HD patients.
- To analyze IL-10/IL-6 transcript and protein production, STAT3 phosphorylation, and miR-142 levels.
Main Methods:
- Cross-sectional study of 40 HD patients, divided into normovolemic and hypervolemic groups using bioimpedance.
- Analysis of peripheral blood mononuclear cells (PBMCs) for cytokine transcripts and proteins.
- Phospho-flow cytometry for STAT3 phosphorylation and qPCR for miR-142 levels.
Main Results:
- Hypervolemic patients were older, had more diabetes, and higher CRP.
- Elevated IL-10 transcripts but not protein in hypervolemic patients.
- Increased IL-6 mRNA and protein despite higher SOCS3 mRNA.
- Reduced STAT3 phosphorylation at serine 727 (full transactivation) in hypervolemic patients.
- Significantly elevated miR-142-3p in hypervolemic patients.
Conclusions:
- Hypervolemia may impair inflammatory and anti-inflammatory signaling through insufficient STAT3 phosphorylation.
- Elevated miR-142-3p in hypervolemia might contribute to inefficient IL-10 signaling, but further research is needed.
Abstract:
Fluid overload in hemodialysis patients (HD) has been proven to be associated with inflammation. Elevated levels of the pro-inflammatory cytokine interleukin-6 (IL-6) appear to be inadequately counterbalanced by the anti-inflammatory cytokine interleukin-10 (IL-10). We initiated a cross-sectional study enrolling 40 HD patients who were categorized by a bioimpedance measurement in normovolemic (N; 23) and hypervolemic (H; 17) groups to test whether IL-10- and IL-6-related signal transduction pathways (signal transducer of transcript 3: STAT3) and/or a post-transcriptional regulating mechanism (miR-142) are impaired by hypervolemia. IL-10/IL-6 transcript and protein production by PBMCs (peripheral blood mononuclear cells) were determined. Phospho-flow cytometry was used to detect the phosphorylated forms of STAT3 (pY705 and pS727). miR-142-3p/5p levels were detected by qPCR. Hypervolemic patients were older, more frequently had diabetes, and showed higher CRP levels. IL-10 transcripts were elevated in H patients but not IL-10 protein levels. In spite of the elevated mRNA expression of the suppressor of cytokine expression 3 (SOCS3), IL-6 mRNA and protein expression were increased in immune cells of H patients. The percentage of cells staining positive for STAT3 (pY705) were comparable in both groups; in STAT3 (pS727), however, the signal needed for full transactivation was decreased in H patients. miR-142-3p, a proven target of IL-10 and IL-6, was significantly elevated in H patients. Insufficient phosphorylation of STAT3 may impair inflammatory and anti-inflammatory cytokine signaling. How far degradative mechanisms induced by elevated miR-142-3p levels contribute to an inefficient anti-inflammatory IL-10 signaling remains elusive.
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