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Updated: Dec 25, 2025

Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation
Published on: May 31, 2016
Circulating uromodulin inhibits vascular calcification by interfering with pro-inflammatory cytokine signalling
Ioana Alesutan1,2,3,4, Trang T D Luong1,2, Nadeshda Schelski2
1Institute for Physiology and Pathophysiology, Johannes Kepler University Linz, Altenberger Strasse 69, 4040 Linz, Austria.
Insights
Uromodulin, a kidney-produced protein, prevents vascular calcification by inhibiting inflammatory signaling. Reduced and modified uromodulin in chronic kidney disease (CKD) may worsen vascular disease.
Area of Science:
- Nephrology
- Vascular Biology
- Biochemistry
Background:
- Uromodulin is exclusively produced in the kidney and secreted into blood and urine.
- Serum uromodulin levels correlate with kidney function and are reduced in chronic kidney disease (CKD) patients.
- The physiological roles of serum uromodulin remain largely unknown, particularly in CKD-associated cardiovascular complications.
Purpose of the Study:
- To investigate the role of uromodulin in medial vascular calcification, a significant contributor to cardiovascular events in CKD.
- To elucidate the mechanisms by which uromodulin influences vascular calcification and related signaling pathways.
Main Methods:
- Experiments utilized human aortic smooth muscle cells (HAoSMCs) and mouse aortic smooth muscle cells (MOVAS).
- In vivo studies involved mouse models of vascular calcification (cholecalciferol overload, subtotal nephrectomy) and analysis of serum from CKD patients.
- Uromodulin supplementation, deficiency, and overexpression models were employed, alongside in vitro assays assessing osteo-/chondrogenic transdifferentiation and inflammatory signaling.
Main Results:
- Serum uromodulin concentration was inversely correlated with calcification propensity in CKD patients.
- Uromodulin supplementation inhibited phosphate-induced osteo-/chondrogenic transdifferentiation and calcification in HAoSMCs.
- Uromodulin interfered with pro-inflammatory cytokine (TNFα, IL-1β)-induced signaling and NF-kB activation, reducing vascular calcification in vivo, except during renal failure.
- Carbamylated uromodulin, found in CKD patients, lost its anti-calcific properties.
Conclusions:
- Uromodulin acts as a protective factor against vascular calcification by inhibiting cytokine-driven pro-calcific signaling.
- Reduced and carbamylated uromodulin in CKD may contribute to the progression of vascular pathology.
- Uromodulin's protective role highlights its potential as a therapeutic target in CKD-related cardiovascular complications.
Aims:
Uromodulin is produced exclusively in the kidney and secreted into both urine and blood. Serum levels of uromodulin are correlated with kidney function and reduced in chronic kidney disease (CKD) patients, but physiological functions of serum uromodulin are still elusive. This study investigated the role of uromodulin in medial vascular calcification, a key factor associated with cardiovascular events and mortality in CKD patients.
Methods And Results:
Experiments were performed in primary human (HAoSMCs) and mouse (MOVAS) aortic smooth muscle cells, cholecalciferol overload and subtotal nephrectomy mouse models and serum from CKD patients. In three independent cohorts of CKD patients, serum uromodulin concentrations were inversely correlated with serum calcification propensity. Uromodulin supplementation reduced phosphate-induced osteo-/chondrogenic transdifferentiation and calcification of HAoSMCs. In human serum, pro-inflammatory cytokines tumour necrosis factor α (TNFα) and interleukin-1β (IL-1β) co-immunoprecipitated with uromodulin. Uromodulin inhibited TNFα and IL-1β-induced osteo-/chondrogenic signalling and activation of the transcription factor nuclear factor kappa-light-chain-enhancer of activated β cells (NF-kB) as well as phosphate-induced NF-kB-dependent transcriptional activity in HAoSMCs. In vivo, adeno-associated virus (AAV)-mediated overexpression of uromodulin ameliorated vascular calcification in mice with cholecalciferol overload. Conversely, cholecalciferol overload-induced vascular calcification was aggravated in uromodulin-deficient mice. In contrast, uromodulin overexpression failed to reduce vascular calcification during renal failure in mice. Carbamylated uromodulin was detected in serum of CKD patients and uromodulin carbamylation inhibited its anti-calcific properties in vitro.
Conclusions:
Uromodulin counteracts vascular osteo-/chondrogenic transdifferentiation and calcification, at least in part, through interference with cytokine-dependent pro-calcific signalling. In CKD, reduction and carbamylation of uromodulin may contribute to vascular pathology.
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