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Exploring the interplay between kidney function and urinary metabolites in young adults: the African-PREDICT study
Wessel L du Toit1,2, Ruan Kruger1,3, Lebo F Gafane-Matemane1,3
1Hypertension in Africa Research Team (HART), North-West University, Private Bag X6001, Potchefstroom, 2520, South Africa.
Insights
Young adults with cardiovascular disease (CVD) risk factors show lower kidney function (eGFR). Urinary metabolites linked to amino acid and energy metabolism are associated with eGFR, suggesting altered metabolic regulation to protect kidney health.
Area of Science:
- Nephrology
- Metabolomics
- Cardiovascular Disease Research
Background:
- Exposure to modifiable risk factors in youth is linked to premature cardiovascular and kidney disease.
- Urinary metabolomics shows promise in predicting kidney function and cardiovascular disease (CVD).
Purpose of the Study:
- To determine the associations between estimated glomerular filtration rate (eGFR) and urinary metabolites in young adults with and without CVD risk factors.
Main Methods:
- Included apparently healthy Black and White adults (20-30 years) categorized by CVD risk factors.
- Calculated eGFR using CKD-EPI equations.
- Utilized targeted metabolomics (liquid chromatography-tandem mass spectrometry) to measure amino acids and acylcarnitines.
Main Results:
- Lower cystatin C-based eGFR was observed in young adults with CVD risk factors and multiple risk clusters compared to controls.
- eGFR positively associated with numerous urinary metabolites, including amino acids (histidine, lysine, glycine) and acylcarnitines (acetylcarnitine, decanoylcarnitine).
- Associated metabolites are linked to amino acid metabolism, energy production, and oxidative stress pathways.
Conclusions:
- Findings suggest altered metabolite reabsorption or metabolic regulation in young adults with CVD risk factors.
- These metabolic alterations may represent a mechanism to preserve renal health despite early exposure to CVD risk factors.
Abstract:
The exposure to modifiable risk factors at young ages have been linked to premature fatal and non-fatal cardiovascular and kidney outcomes. The use of urinary metabolomics has shown strong predictability of kidney function and cardiovascular disease (CVD). We therefore determined the associations between estimated glomerular filtration rate (eGFR) and urinary metabolites in young adults with and without CVD risk factors. Apparently healthy Black and White sexes were included (aged 20-30 years) and categorised by the presence or absence of risk factors, i.e., obesity, physical inactivity, smoking, excessive alcohol intake, masked hypertension, hyperglycemia, dyslipidemia and low socio-economic status, forming the CVD risk group (N = 1036), CVD risk clusters (i.e. presenting with 1 CVD risk factor (N = 344), 2 CVD risk factors (N = 360) and 3 + CVD risk factors (N = 332)) and the control group (N = 166). eGFR was calculated with CKD-EPI equations. A targeted metabolomics approach using liquid chromatography-tandem mass spectrometry was used to measure amino acids and acylcarnitines. Lower cystatin C-based eGFR were indicated in the CVD risk group, 2 and 3 + CVD risk clusters compared to the control group (all P ≤ 0.033). In the CVD risk group, eGFR associated positively with histidine, lysine, asparagine, glycine, serine, glutamine, dimethylglycine, threonine, alanine, creatine, cystine, methionine, tyrosine, pyroglutamic acid, leucine/isoleucine, aspartic acid, tryptophan, glutamic acid, free carnitine, acetylcarnitine, propionylcarnitine, isovalerylcarnitine, octanoylcarnitine and decanoylcarnitine (all P ≤ 0.044), with similar results found in the CVD risk clusters, particularly the 2 CVD risk cluster. eGFR was positively associated with metabolites linked to aromatic amino acid and branched-chain amino acid metabolism, energy metabolism and oxidative stress. These findings may indicate altered reabsorption of these metabolites or altered metabolic regulation to preserve renal health in the setting of CVD risk factors at this young age without established CVD.
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