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Published on: December 2, 2014
Uroflowmetry alterations in patients with autosomal dominant polycystic kidney disease
S Lai1, A P Mittherhofer, R Cianci
1Department of Translational and Precision Medicine, UOC Nephrology, Sapienza University of Rome, Rome, Italy. silvia.lai@uniroma1.it.
Insights
Autosomal Dominant Polycystic Kidney Disease (ADPKD) patients show a higher prevalence of obstructive urological diseases. Uroflowmetry is recommended for early detection and intervention to slow kidney damage and reduce cardiovascular risks.
Area of Science:
- Nephrology
- Urology
- Cardiovascular Medicine
Background:
- Autosomal Dominant Polycystic Kidney Disease (ADPKD) is a genetic disorder causing kidney cysts and leading to end-stage renal disease.
- Extrarenal manifestations and cardiovascular risks are significant concerns in ADPKD patients.
Purpose of the Study:
- To determine the prevalence of obstructive urological disease in ADPKD patients.
- To investigate associations between urological dysfunction and endothelial, nutritional, metabolic, and inflammatory markers.
Main Methods:
- The study involved ADPKD patients and a control group.
- Uroflowmetry, renal function tests, metabolic/nutritional assessments, and endothelial/atherosclerotic markers (RRI, IMT, FMD) were performed.
Main Results:
- ADPKD patients exhibited reduced Max Flow Rate (Qmax), Voiding Volume, and Flow-Mediated Dilation (FMD).
- Increased Voiding Time and Diastolic Blood Pressure were observed in ADPKD patients.
- Qmax negatively correlated with creatinine, Renal Resistive Index (RRI), and intact Parathyroid Hormone; positively with MDRD.
Conclusions:
- A high prevalence of functional urological diseases was found in ADPKD patients.
- Uroflowmetry is a valuable, non-invasive tool for assessing ADPKD patients.
- Early intervention and cardiovascular risk screening are crucial for managing ADPKD.
Objective:
Autosomal Dominant Polycystic Kidney Disease (ADPKD) is a heterogeneous inherited disease characterized by renal and extrarenal manifestations with progressive fluid-filled cyst development leading to end-stage renal disease. Our aim was to evaluate the prevalence of obstructive urological disease in ADPKD patients and possible associations with endothelial dysfunction, nutritional, metabolic and inflammatory markers.
Patients And Methods:
The study included ADPKD patients and control group, who carried out uroflowmetry, an assessment of renal function, metabolic and nutritional parameters and an evaluation of endothelial dysfunction and atherosclerotic markers, such as Renal Resistive Index (RRI), Intima-Media Thickness (IMT) and Flow-Mediated Dilation (FMD).
Results:
We enrolled 37 ADPKD patients (20 males with 51.0 ± 14.3 years) and 34 control group (18 males with 60.7 ± 14.4 years). We showed a significant reduction in Max Flow Rate (Qmax) (p ≤ 0.001), age (p = 0.006), FMD (p = 0.023) and Voiding Volume (p = 0.053), in addition to a significant increase in Voiding Time and Diastolic Blood Pressure (p ≤ 0.001, p = 0.049; respectively) in ADPKD patients with respect to control group. Moreover, we found a negative correlation between Qmax and creatinine (r= -0.44, p = 0.007), RRI (r= -0.49, p ≤0.001) and intact Parathyroid Hormone (r = -0.329, p = 0.046), while we found a positive correlation between Qmax and MDRD (r = 0.327, p = 0.048) and between Voiding Time and serum uric acid (r= 0.34, p = 0.039) in ADPKD patients with respect to control group.
Conclusions:
In our study, we showed an elevated prevalence of urological functional diseases in ADPKD patients; therefore, we suggest to include uroflowmetry in the assessment of these patients, considering the non-invasiveness, repeatability and low cost of the exam. An early intervention could slow down the progression of renal damage and an early screening of the main cardiovascular risk factors could reduce the high morbidity and mortality in ADPKD patients.
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