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Published on: June 23, 2015
Association of Kidney Function Biomarkers with Brain MRI Findings: The BRINK Study
Prashanthi Vemuri1, David S Knopman2, Clifford R Jack1
1Department of Radiology, Mayo Clinic, Rochester, MN, USA.
Background:
Chronic kidney disease (CKD) studies have reported variable prevalence of brain pathologies, in part due to low inclusion of participants with moderate to severe CKD.
Objective:
To measure the association between kidney function biomarkers and brain MRI findings in CKD.
Methods:
In the BRINK (BRain IN Kidney Disease) study, MRI was used to measure gray matter volumes, cerebrovascular pathologies (white matter hyperintensity (WMH), infarctions, microhemorrhages), and microstructural changes using diffusion tensor imaging (DTI). We performed regression analyses with estimated glomerular filtration rate (eGFR) and urine albumin to creatinine ratio (UACR) as primary predictors, and joint models that included both predictors, adjusted for vascular risk factors.
Results:
We obtained 240 baseline MRI scans (150 CKD with eGFR <45 in ml/min/1.73 m2; 16 mild CKD: eGFR 45-59; 74 controls: eGFR≥60). Lower eGFR was associated with greater WMH burden, increased odds of cortical infarctions, and worsening diffusion changes throughout the brain. In eGFR models adjusted for UACR, only cortical infarction associations persisted. However, after adjusting for eGFR, higher UACR provided additional information related to temporal lobe atrophy, increased WMH, and whole brain microstructural changes as measured by increased DTI mean diffusivity.
Conclusions:
Biomarkers of kidney disease (eGFR and UACR) were associated with MRI brain changes, even after accounting for vascular risk factors. UACR adds unique additional information to eGFR regarding brain structural and diffusion biomarkers. There was a greater impact of kidney function biomarkers on cerebrovascular pathologies and microstructural brain changes, suggesting that cerebrovascular etiology may be the primary driver of cognitive impairment in CKD.
Insights
Kidney function biomarkers like eGFR and UACR are linked to brain changes in chronic kidney disease (CKD). Urine albumin-to-creatinine ratio (UACR) offers unique insights beyond eGFR for brain health in CKD patients.
Area of Science:
- Nephrology
- Neurology
- Radiology
Background:
- Chronic kidney disease (CKD) studies often underrepresent moderate to severe cases, leading to varied findings on brain pathologies.
- Understanding the impact of kidney function on brain health is crucial for managing CKD complications.
Purpose of the Study:
- To investigate the association between kidney function biomarkers and brain magnetic resonance imaging (MRI) findings in individuals with CKD.
- To determine if estimated glomerular filtration rate (eGFR) and urine albumin to creatinine ratio (UACR) predict specific brain pathologies.
Main Methods:
- The BRINK (BRain IN Kidney Disease) study utilized MRI to assess gray matter volumes, cerebrovascular pathologies (white matter hyperintensity (WMH), infarctions, microhemorrhages), and microstructural changes via diffusion tensor imaging (DTI).
- Regression analyses were performed using eGFR and UACR as predictors, with adjustments for vascular risk factors.
Main Results:
- Lower eGFR correlated with increased WMH, cortical infarctions, and diffusion changes.
- Higher UACR, independent of eGFR, was associated with temporal lobe atrophy, increased WMH, and whole-brain microstructural changes.
- Both eGFR and UACR showed associations with MRI brain changes, even after controlling for vascular risk factors.
Conclusions:
- Kidney function biomarkers (eGFR and UACR) are significantly associated with structural and microstructural brain changes in CKD.
- UACR provides unique information regarding brain changes beyond what eGFR offers.
- Cerebrovascular changes driven by impaired kidney function may be a primary cause of cognitive impairment in CKD.
Related Concept Videos
Imaging Studies I: Kidney, Ureter, and Bladder Studies
Serum Studies: Renal Function Tests
Imaging Studies IV: Magnetic Resonance Imaging
Magnetic Resonance Imaging

