The chemokine receptor CX3CR1 reduces renal injury in mice with angiotensin II-induced hypertension

Author:

Ahadzadeh Erfan1,Rosendahl Alva1,Czesla Daniel1,Steffens Paula1,Prüßner Lennard1,Meyer-Schwesinger Catherine2,Wanner Nicola1,Paust Hans Joachim1,Huber Tobias B.1,Stahl Rolf A. K.1,Wiech Thorsten3,Kurts Christian4,Seniuk Anika2,Ehmke Heimo25,Wenzel Ulrich O.15

Affiliation:

1. III. Department of Medicine, University Hospital Hamburg-Eppendorf, Hamburg, Germany

2. Department of Cellular and Integrative Physiology, University Hospital Hamburg-Eppendorf, Hamburg, Germany

3. Department of Nephropathology University Hospital Hamburg-Eppendorf, Hamburg, Germany

4. Institutes of Molecular Medicine and Experimental Immunology, Rheinische Friedrich-Wilhelms University, Bonn, Germany

5. German Centre for Cardiovascular Research, partner site Hamburg/Kiel/Lübeck, Germany

Abstract

The role of CX3CR1, also known as fractalkine receptor, in hypertension is unknown. The present study determined the role of the fractalkine receptor CX3CR1 in hypertensive renal and cardiac injury. Expression of CX3CR1 was determined using CX3CR1GFP/+ mice that express a green fluorescent protein (GFP) reporter in CX3CR1+ cells. FACS analysis of leukocytes isolated from the kidney showed that 34% of CD45+ cells expressed CX3CR1. Dendritic cells were the majority of positive cells (67%) followed by macrophages (10%), NK cells (6%), and T cells (10%). With the use of confocal microscopy, the receptor was detected in the kidney only on infiltrating cells but not on resident renal cells. To evaluate the role of CX3CR1 in hypertensive end-organ injury, an aggravated model of hypertension was used. Unilateral nephrectomy was performed followed by infusion of angiotensin II (ANG II, 1.5 ng·g−1·min−1) and a high-salt diet in wild-type ( n = 15) and CX3CR1-deficient mice ( n = 18). CX3CR1 deficiency reduced the number of renal dendritic cells and increased the numbers of renal CD11b/F4/80+ macrophages and CD11b/Ly6G+ neutrophils in ANG II-infused mice. Surprisingly, CX3CR1-deficient mice exhibited increased albuminuria, glomerular injury, and reduced podocyte density in spite of similar levels of arterial hypertension. In contrast, cardiac damage as assessed by increased heart weight, cardiac fibrosis, and expression of fetal genes, and matrix components were not different between both genotypes. Our findings suggest that CX3CR1 exerts protective properties by modulating the invasion of inflammatory cells in hypertensive renal injury. CX3CR1 inhibition should be avoided in hypertension because it may promote hypertensive renal injury.

Funder

German Research Foundation

Publisher

American Physiological Society

Subject

Physiology

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