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A Mouse 5/6th Nephrectomy Model That Induces Experimental Uremic Cardiomyopathy
Published on: November 7, 2017
Target organ cross talk in cardiorenal syndrome: animal models
Lennart G Bongartz1, Branko Braam, Carlo A Gaillard
1Dept. of Nephrology and Hypertension, Heidelberglaan 100, 3584 CX Utrecht, The Netherlands.
Insights
The combination of chronic kidney disease (CKD) and heart failure (HF) worsens outcomes. New rat models show CKD exacerbates cardiac damage and HF worsens kidney injury, revealing cardiorenal syndrome interactions.
Area of Science:
- Cardiology
- Nephrology
- Pathophysiology
Background:
- The cardiorenal syndrome (CRS) involves complex interactions between chronic kidney disease (CKD) and heart failure (HF).
- Existing animal models offer limited insight into the dual organ damage and pathogenesis of CRS.
Purpose of the Study:
- To review existing literature on cardiorenal interactions in animal models.
- To develop and characterize novel rat models of combined CKD and HF to study organ cross-talk.
Main Methods:
- Literature review of animal models of CKD and HF.
- Development of two rat models where CKD preceded cardiac dysfunction (via nitric oxide depletion or myocardial infarction).
- Assessment of cardiac remodeling, function, and renal pathology in control and combined injury groups.
Main Results:
- Previous
- double-hit
- models often failed to show additive organ damage.
- In the novel models, CKD rats exhibited exacerbated cardiac remodeling and failure after cardiac insult.
- Combined cardiorenal injury worsened renal damage markers, including glomerulosclerosis and proteinuria.
Conclusions:
- Established rat models demonstrate significant cross-talk between the heart and kidneys in cardiorenal syndrome.
- These models provide a valuable platform for investigating therapeutic interventions for cardiorenal interactions.
Abstract:
The combination of chronic kidney disease (CKD) and heart failure (HF) is associated with an adverse prognosis. Although clinical studies hint at a specific bidirectional interaction between HF and CKD, insight into the pathogenesis of cardiorenal syndrome (CRS) remains limited. We review available evidence on cardiorenal interactions from animal models of CKD and HF and discuss several studies that employed a "double-hit" model to research organ cross talk between the heart and kidneys. Regarding cardiac changes in CKD models, parameters of cardiac remodeling are equivocal and cardiac systolic function generally remains preserved. Structural changes include hypertrophy, fibrosis, and microvasculopathy. In models of HF, data on renal pathology are mostly limited to functional hemodynamic changes. Most double-hit models were unable to show that combined renal and cardiac injury induces additive damage to both organs, perhaps because of the short study duration or absence of organ failure. Because of this lack of "dual-failure" models, we have developed two rat models of combined CKD and HF in which renal dysfunction induced by a subtotal nephrectomy preceded cardiac dysfunction. Cardiac dysfunction was induced either functionally by nitric oxide depletion or structurally by myocardial infarction. In both models, we found that cardiac remodeling and failure were worse in CKD rats compared with controls undergoing the same cardiac insult. Variables of renal damage, like glomerulosclerosis and proteinuria, were also further worsened by combined cardiorenal injury. These studies show that target organ cross talk does occur in CRS. These models may be useful for interventional studies in rats.
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