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5/6th Nephrectomy in Combination with High Salt Diet and Nitric Oxide Synthase Inhibition to Induce Chronic Kidney Disease in the Lewis Rat
Published on: July 3, 2013
Volume overload and adverse outcomes in chronic kidney disease: clinical observational and animal studies
Szu-Chun Hung1, Yi-Shin Lai2, Ko-Lin Kuo1
1Division of Nephrology, Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, New Taipei City, Taiwan (S.C.H., K.L.K.) School of Medicine, Tzu Chi University, Hualien, Taiwan (S.C.H., K.L.K.).
Insights
Volume overload in chronic kidney disease (CKD) patients significantly increases risks for kidney function decline and cardiovascular events. Addressing fluid retention may improve patient outcomes.
Area of Science:
- Nephrology
- Cardiology
- Fluid Balance Research
Background:
- Volume overload is common in chronic kidney disease (CKD) patients.
- It is linked to cardiovascular risk factors but its impact on adverse outcomes is unclear.
Purpose of the Study:
- To investigate the association between volume overload and adverse outcomes in CKD patients.
- To explore the role of fluid retention in CKD progression and cardiovascular disease using animal models.
Main Methods:
- Prospective cohort study of 338 patients with stage 3-5 CKD.
- Volume overload defined by bioimpedance spectroscopy (overhydration index >7%).
- Animal models (rats) simulated fluid retention to assess renal and cardiac changes.
Main Results:
- Volume overload patients had higher risks for kidney function decline and cardiovascular events.
- Overhydration was a stronger predictor than hypertension.
- In rats, fluid retention caused inflammation, sclerosis, and fibrosis, which were reduced by diuretics.
Conclusions:
- Volume overload contributes to CKD progression and cardiovascular disease.
- Further research is needed to determine if correcting volume overload improves CKD patient outcomes.
Background:
Volume overload is frequently encountered and is associated with cardiovascular risk factors in patients with chronic kidney disease (CKD). However, the relationship between volume overload and adverse outcomes in CKD is not fully understood.
Methods And Results:
A prospective cohort of 338 patients with stage 3 to 5 CKD was followed for a median of 2.1 years. The study participants were stratified by the presence or absence of volume overload, defined as an overhydration index assessed by bioimpedance spectroscopy exceeding 7%, the 90th percentile for the healthy population. The primary outcome was the composite of estimated glomerular filtration rate decline ≥50% or end-stage renal disease. The secondary outcome included a composite of morbidity and mortality from cardiovascular causes. Animal models were used to simulate fluid retention observed in human CKD. We found that patients with volume overload were at a higher risk of the primary and secondary end points in the adjusted Cox models. Furthermore, overhydration appears to be more important than hypertension in predicting an elevated risk. In rats subjected to unilateral nephrectomy and a high-salt diet, the extracellular water significantly increased. This fluid retention was associated with an increase in blood pressure, proteinuria, renal inflammation with macrophage infiltration and tumor necrosis factor-α overexpression, glomerular sclerosis, and cardiac fibrosis. Diuretic treatment with indapamide attenuated these changes, suggesting that fluid retention might play a role in the development of adverse outcomes.
Conclusions:
Volume overload contributes to CKD progression and cardiovascular diseases. Further research is warranted to clarify whether the correction of volume overload would improve outcomes for CKD patients.
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