Targeted reduction of advanced glycation improves renal function in obesity
Brooke E Harcourt1, Karly C Sourris, Melinda T Coughlan
1Baker IDI Heart and Diabetes Research Institute, Melbourne, Victoria, Australia. brooke.harcourt@bakeridi.edu.au
Abstract:
Obesity is highly prevalent in Western populations and is considered a risk factor for the development of renal impairment. Interventions that reduce the tissue burden of advanced glycation end-products (AGEs) have shown promise in stemming the progression of chronic disease. Here we tested if treatments that lower tissue AGE burden in patients and mice would improve obesity-related renal dysfunction. Overweight and obese individuals (body mass index (BMI) 26-39 kg/m(2)) were recruited to a randomized, crossover clinical trial involving 2 weeks each on a low- and a high-AGE-containing diet. Renal function and an inflammatory profile (monocyte chemoattractant protein-1 (MCP-1) and macrophage migration inhibitory factor (MIF)) were improved following the low-AGE diet. Mechanisms of advanced glycation-related renal damage were investigated in a mouse model of obesity using the AGE-lowering pharmaceutical, alagebrium, and mice in which the receptor for AGE (RAGE) was deleted. Obesity, resulting from a diet high in both fat and AGE, caused renal impairment; however, treatment of the RAGE knockout mice with alagebrium improved urinary albumin excretion, creatinine clearance, the inflammatory profile, and renal oxidative stress. Alagebrium treatment, however, resulted in decreased weight gain and improved glycemic control compared with wild-type mice on a high-fat Western diet. Thus, targeted reduction of the advanced glycation pathway improved renal function in obesity.
Insights
Reducing dietary advanced glycation end-products (AGEs) improved kidney function in obese individuals. In mice, AGE reduction also improved renal health and reduced obesity-related complications.
Area of Science:
- Nephrology
- Metabolic Diseases
- Biochemistry
Background:
- Obesity is a major risk factor for chronic kidney disease in Western populations.
- Advanced glycation end-products (AGEs) contribute to chronic disease progression.
- Reducing AGE burden is a potential therapeutic strategy for obesity-related renal dysfunction.
Purpose of the Study:
- To investigate if lowering tissue AGE burden improves obesity-related renal dysfunction in humans and mice.
- To explore the mechanisms of AGE-related renal damage in obesity.
Main Methods:
- A randomized crossover trial in obese individuals comparing low-AGE and high-AGE diets.
- Investigated AGE-related renal damage in obese mice using alagebrium (an AGE-lowering drug) and RAGE knockout mice.
Main Results:
- A low-AGE diet improved renal function and inflammatory markers (MCP-1, MIF) in obese individuals.
- In obese mice, alagebrium treatment improved renal function, reduced inflammation and oxidative stress.
- Alagebrium treatment in mice also decreased weight gain and improved glycemic control.
Conclusions:
- Targeted reduction of the advanced glycation pathway can improve renal function in obesity.
- Lowering AGEs is a promising therapeutic approach for managing obesity-related kidney disease.
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