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Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
RAGE is a critical factor of sex-based differences in age-induced kidney damage
Seerat Bajwa1, Alexander Luebbe1, Ngoc Dong Nhi Vo1
1Department of Internal Medicine III, Jena University Hospital, Jena, Germany.
Abstract:
Introduction: Advanced glycation end products (AGEs) are a heterogeneous group of molecules with potential pathophysiological effects on the kidneys. Fibrosis together with the accumulation of AGEs has been investigated for its contribution to age-related decline in renal function. AGEs mediate their effects in large parts through their interactions with the receptor for AGEs (RAGE). RAGE is a transmembrane protein that belongs to the immunoglobulin superfamily and has the ability to interact with multiple pro-inflammatory/pro-oxidative ligands. The role of RAGE in aging kidneys has not been fully characterized, especially for sex-based differences. Methods: Therefore, we analyzed constitutive RAGE knockout (KO) mice in an age- and sex-dependent manner. Paraffin-embedded kidney sections were used for histological analysis and protein expression of fibrosis and damage markers. RNA expression analysis from the kidney cortex was done by qPCR for AGE receptors, kidney damage, and early inflammation/fibrosis factors. FACS analysis was used for immune cell profiling of the kidneys. Results: Histological analysis revealed enhanced infiltration of immune cells (positive for B220) in aged (>70 weeks old) KO mice in both sexes. FACS analysis revealed a similar pattern of enhanced B-1a cells in aged KO mice. There was an age-based increase in pro-fibrotic and pro-inflammatory markers (IL-6, TNF, TGF-β1, and SNAIL1) in KO male mice that presumably contributed to renal fibrosis and renal damage (glomerular and tubular). In fact, in KO mice, there was an age-dependent increase in renal damage (assessed by NGAL and KIM1) that was accompanied by increased fibrosis (assessed by CTGF). This effect was more pronounced in male KO mice than in the female KO mice. In contrast to the KO animals, no significant increase in damage markers was detectable in wild-type animals at the age examined (>70 weeks old). Moreover, there is an age-based increase in AGEs and scavenger receptor MSR-A2 in the kidneys. Discussion: Our data suggest that the loss of the clearance receptor RAGE in male animals further accelerates age-dependent renal damage; this could be in part due to an increase in AGEs load during aging and the absence of protective female hormones. By contrast, in females, RAGE expression seems to play only a minor role when compared to tissue pathology.
Insights
Loss of the receptor for advanced glycation end products (RAGE) accelerates kidney damage in aging male mice, linked to increased fibrosis and inflammation. Female mice showed less pronounced effects, suggesting a protective role for female hormones.
Area of Science:
- Nephrology
- Immunology
- Aging Research
Background:
- Advanced glycation end products (AGEs) contribute to kidney dysfunction and fibrosis during aging.
- The receptor for AGEs (RAGE) plays a role in mediating AGEs' effects, but its function in aging kidneys, particularly sex-based differences, is not fully understood.
Purpose of the Study:
- To investigate the role of RAGE in age- and sex-dependent kidney pathology.
- To characterize the impact of RAGE deficiency on renal fibrosis, inflammation, and damage markers in aging mice.
Main Methods:
- Analysis of constitutive RAGE knockout (KO) mice and wild-type littermates in an age- and sex-dependent manner.
- Histological analysis, qPCR for gene expression, and FACS analysis for immune cell profiling of kidney tissues.
- Assessment of fibrosis, damage, and inflammation markers including IL-6, TNF, TGF-β1, SNAIL1, NGAL, KIM1, and CTGF.
Main Results:
- Aged RAGE KO mice exhibited increased immune cell infiltration (B220+, B-1a cells) in kidneys compared to wild-type mice.
- Male RAGE KO mice showed age-dependent increases in pro-fibrotic and pro-inflammatory markers, leading to enhanced renal fibrosis and damage (NGAL, KIM1, CTGF).
- These age-related changes were more pronounced in male KO mice than in female KO mice, with wild-type animals showing no significant damage.
Conclusions:
- Loss of RAGE exacerbates age-dependent renal damage, particularly in males, potentially due to increased AGEs burden and lack of protective female hormones.
- RAGE plays a significant role in mitigating age-related kidney pathology, with its absence leading to accelerated damage and fibrosis, especially in males.
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