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Excessive sodium chloride ingestion promotes inflammation and kidney fibrosis in aging mice.

Authors :
Bernhardt A
Krause A
Reichardt C
Steffen H
Isermann B
Völker U
Hammer E
Geffers R
Philipsen L
Dhjamandi K
Ahmad S
Brandt S
Lindquist JA
Mertens PR
Source :
American journal of physiology. Cell physiology [Am J Physiol Cell Physiol] 2023 Aug 01; Vol. 325 (2), pp. C456-C470. Date of Electronic Publication: 2023 Jul 03.
Publication Year :
2023

Abstract

In aging kidneys, a decline of function resulting from extracellular matrix (ECM) deposition and organ fibrosis is regarded as "physiological." Whether a direct link between high salt intake and fibrosis in aging kidney exists autonomously from arterial hypertension is unclear. This study explores kidney intrinsic changes (inflammation, ECM derangement) induced by a high-salt diet (HSD) in a murine model lacking arterial hypertension. The contribution of cold shock Y-box binding protein (YB-1) as a key orchestrator of organ fibrosis to the observed differences is determined by comparison with a knockout strain ( Ybx1 <superscript>ΔRosaERT+TX</superscript> ). Comparisons of tissue from mice fed with normal-salt diet (NSD, standard chow) or high-salt diet (HSD, 4% NaCl in chow; 1% NaCl in water) for up to 16 mo revealed that with HSD tubular cell numbers decrease and tubulointerstitial scarring [periodic acid-Schiff (PAS), Masson's trichrome, Sirius red staining] prevails. In Ybx1 <superscript>ΔRosaERT+TX</superscript> animals tubular cell damage, a loss of cell contacts with profound tubulointerstitial alterations, and tubular cell senescence was seen. A distinct tubulointerstitial distribution of fibrinogen, collagen type VI, and tenascin-C was detected under HSD, transcriptome analyses determined patterns of matrisome regulation. Temporal increase of immune cell infiltration was seen under HSD of wild type, but not Ybx1 <superscript>ΔRosaERT+TX</superscript> animals. In vitro Ybx1 <superscript>ΔRosaERT+TX</superscript> bone marrow-derived macrophages exhibited a defect in polarization (IL-4/IL-13) and abrogated response to sodium chloride. Taken together, HSD promotes progressive kidney fibrosis with premature cell aging, ECM deposition, and immune cell recruitment that is exacerbated in Ybx1 <superscript>ΔRosaERT+TX</superscript> animals. NEW & NOTEWORTHY Short-term experimental studies link excessive sodium ingestion with extracellular matrix accumulation and inflammatory cell recruitment, yet long-term data are scarce. Our findings with a high-salt diet over 16 mo in aging mice pinpoints to a decisive tipping point after 12 mo with tubular stress response, skewed matrisome transcriptome, and immune cell infiltration. Cell senescence was aggravated in knockout animals for cold shock Y-box binding protein (YB-1), suggesting a novel protective protein function.

Details

Language :
English
ISSN :
1522-1563
Volume :
325
Issue :
2
Database :
MEDLINE
Journal :
American journal of physiology. Cell physiology
Publication Type :
Academic Journal
Accession number :
37399499
Full Text :
https://doi.org/10.1152/ajpcell.00230.2023