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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
The association between vitamin B12, albuminuria and reduced kidney function: an observational cohort study
Gearoid M McMahon1,2, Shih-Jen Hwang3, Rikki M Tanner4
1National Heart, Lung and Blood Institute's Framingham Heart Study and the Center for Population Studies, 73 Mt. Wayte Ave, Suite 2, Framingham, MA, 01702, USA. gearoid.mcmahon@nih.gov.
Insights
High vitamin B12 (B12) levels are linked to reduced kidney function in individuals with elevated homocysteine. This association was observed in the Framingham Heart Study and replicated in the NHANES cohort, highlighting a potential link between B12 and kidney health.
Area of Science:
- Nephrology
- Endocrinology
- Nutritional Science
Background:
- Cubilin (CUBN) gene variants are linked to albuminuria and vitamin B12 (B12) deficiency.
- Cubilin is a proximal tubular transport protein crucial for nutrient reabsorption.
Purpose of the Study:
- To investigate the association between plasma B12 levels and albuminuria and reduced kidney function (RKF) in a population-based cohort.
- To explore the role of homocysteine as a potential modifier in this relationship.
Main Methods:
- Analysis of plasma B12 levels in 2965 Framingham Heart Study participants.
- Logistic regression models adjusted for covariates, including homocysteine, to assess prevalent and incident albuminuria and RKF.
- Replication of findings in 4445 participants from the NHANES 2003-2004 cohort.
Main Results:
- Elevated B12 was associated with prevalent albuminuria and RKF in the Framingham cohort, but this association persisted only in individuals with high homocysteine levels.
- No significant association was found between B12 and incident albuminuria or RKF in the Framingham cohort.
- In the NHANES cohort, elevated B12 was associated with RKF, but not albuminuria.
Conclusions:
- Increased plasma B12 is associated with reduced kidney function in individuals with high baseline homocysteine levels.
- The findings suggest a complex interplay between vitamin B12, homocysteine, and kidney health.
Background:
Variants in CUBN, the gene encoding cubilin, a proximal tubular transport protein, have been associated with albuminuria and vitamin B12 (B12) deficiency. We hypothesized that low levels of B12 would be associated with albuminuria in a population-based cohort.
Methods:
We analyzed participants from the Framingham Heart Study (n = 2965, mean age 58 years, 53% female) who provided samples for plasma B12. Logistic regression models adjusted for covariates including homocysteine were constructed to test the association between B12 and prevalent albuminuria (UACR ≥17 mg/g [men] and ≥25 mg/g [women]) and reduced kidney function (defined as an eGFR < 60 ml/min/1.73 m(2), RKF). Because of a significant interaction between B12 and homocysteine in the prevalent RKF model (p = 0.005), the model was stratified by the median homocysteine levels. Logistic regression models were constructed to test the association between B12 and incident albuminuria and RKF. The results were replicated in 4445 participants from NHANES 2003-2004.
Results:
Baseline B12 levels ranged from 50-1690 pg/ml. Elevated B12 was associated with prevalent albuminuria (OR 1.44 per 1 SD increase, 95% CI 1.10-1.87) and RKF (OR 1.83, 95% CI 1.30-2.60). However after stratifying by median homocysteine levels, this relationship remained only in the higher homocysteine stratum. There was no association between B12 and incident albuminuria (OR 1.17, 95% CI 0.79 - 1.73) or RKF (OR 1.45, 95% CI 0.97 - 1.88). In the NHANES cohort, elevated B12 was associated with RKF after full covariate adjustment (OR 3.06, 95% CI 2.30-4.08). There was no association with albuminuria.
Conclusion:
In participants with high baseline homocysteine levels, increased plasma B12 was associated with RKF.
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