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Updated: Oct 17, 2025

Transcutaneous Assessment of Renal Function in Conscious Rodents
Published on: March 26, 2016
Mendelian randomization to assess causality between uromodulin, blood pressure and chronic kidney disease
Belen Ponte1, Marie C Sadler2, Eric Olinger3
1Nephrology and Hypertension Service, Department of Medicine, University Hospitals of Geneva (HUG), Geneva, Switzerland.
Insights
Genetically higher urinary uromodulin (uUMOD) levels causally increase chronic kidney disease (CKD) risk and decrease kidney function. Uromodulin
Area of Science:
- Nephrology
- Genetics
- Epidemiology
Background:
- Urinary uromodulin (uUMOD) levels are linked to chronic kidney disease (CKD) and hypertension risk.
- Observational studies suggest uUMOD reflects kidney tubular mass, creating uncertainty about its causal role in kidney damage.
Purpose of the Study:
- To clarify the causal relationship between uUMOD levels, kidney function (eGFR), and blood pressure using Mendelian randomization.
- To investigate the directionality of effects between uUMOD, eGFR, and blood pressure.
Main Methods:
- Employed one-sample and two-sample Mendelian randomization analyses.
- Utilized a population-based cohort (3851 individuals) and large genome-wide association study consortia (up to 567,460 individuals for CKD, 757,461 for blood pressure).
- Instrumental variable analysis focused on the UMOD polymorphism rs12917707.
Main Results:
- Higher uUMOD levels were causally associated with lower estimated glomerular filtration rate (eGFR) and increased odds of CKD.
- Increased uUMOD levels were causally linked to higher systolic and diastolic blood pressure.
- The effect of uUMOD on blood pressure was mediated by eGFR, but the effect on eGFR was not mediated by blood pressure.
Conclusions:
- Genetically determined higher uromodulin levels have a direct, causal, and adverse impact on kidney function in the general population.
- These effects on kidney function are independent of blood pressure mediation.
- Findings support uromodulin as a direct contributor to kidney disease pathogenesis.
Abstract:
UMOD variants associated with higher levels of urinary uromodulin (uUMOD) increase the risk of chronic kidney disease (CKD) and hypertension. However, uUMOD levels also reflect functional kidney tubular mass in observational studies, questioning the causal link between uromodulin production and kidney damage. We used Mendelian randomization to clarify causality between uUMOD levels, kidney function and blood pressure in individuals of European descent. The link between uUMOD and estimated glomerular filtration rate (eGFR) was first investigated in a population-based cohort of 3851 individuals. In observational data, higher uUMOD associated with higher eGFR. Conversely, when using rs12917707 (an UMOD polymorphism) as an instrumental variable in one-sample Mendelian randomization, higher uUMOD strongly associated with eGFR decline. We next applied two-sample Mendelian randomization on four genome wide association study consortia to explore causal links between uUMOD and eGFR, CKD risk (567,460 individuals) and blood pressure (757,461 individuals). Higher uUMOD levels significantly associated with lower eGFR, higher odds for eGFR decline or CKD, and higher systolic or diastolic blood pressure. Each one standard deviation (SD) increase of uUMOD decreased log-transformed eGFR by -0.15 SD (95% confidence interval -0.17 to -0.13) and increased log-odds CKD by 0.13 SD (0.12 to 0.15). One SD increase of uUMOD increased systolic blood pressure by 0.06 SD (0.03 to 0.09) and diastolic blood pressure by 0.08 SD (0.05 to 0.12). The effect of uUMOD on blood pressure was mediated by eGFR, whereas the effect on eGFR was not mediated by blood pressure. Thus, our data support that genetically driven levels of uromodulin have a direct, causal and adverse effect on kidney function outcome in the general population, not mediated by blood pressure.
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