Key result
In a rat model, acute myocardial infarction on the background of chronic kidney disease was associated with increased interstitial fibrosis, renal inflammation, and long-term elevation in urine Ngal.
Why the study?
Does acute myocardial infarction in the setting of chronic kidney disease accelerate intrinsic kidney injury in a rat model?
Does acute myocardial infarction in the setting of chronic kidney disease accelerate intrinsic kidney injury in a rat model?
In a rat model, acute myocardial infarction superimposed on chronic kidney disease accelerates renal fibrosis and elevates urine Ngal, highlighting its potential as a biomarker for cardiorenal syndrome.
May worsen renal injury post-MI in experimental CKD; leaves open urine NGAL utility and human cardiorenal translation.
BACKGROUND: Cardiac events are the main cause of death among patients with end-stage renal failure. Even a mild renal disease is currently considered a major risk factor for cardiovascular complications following myocardial infarction (MI). The aim of the present study was to detect histological, sera and urine characteristics of kidney injury in cardiorenal syndrome (CRS) compared to chronic kidney disease (CKD) with an intact cardiac function. METHODS: We employed a rat model for CRS, in which an acute MI (AMI) was induced 4 weeks after establishment of subtotal nephrectomy. Four weeks later, left ventricular function was assessed by echocardiography and changes in renal performance were examined using histological and biochemical parameters. RESULTS: Increased interstitial fibrosis as well as renal inflammation were observed in renal sections derived from CRS rats, compared to subtotal nephrectomy (CKD)-only animals. Moreover, we found that even though AMI on the background of CKD was not associated with a further decrease in creatinine clearance or a further increase in sera BUN levels compared to CKD only, a significant long-term elevation in urine neutrophil gelatinase-associated lipocalin (Ngal) levels was detectable post-MI induction. CONCLUSIONS: AMI in the CKD setting is associated with accelerated renal fibrosis and long-term elevated urine Ngal values, suggesting that cardiac dysfunction contributes to accelerated intrinsic kidney injury in CKD. The data indicate that elevated urine Ngal may potentially serve as an early non-invasive laboratory parameter for a left ventricular dysfunction-related renal injury.
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Entin‐Meer et al. (2012) studied Cardiorenal syndrome. Acute myocardial infarction (CRS model) vs. Subtotal nephrectomy (CKD)-only was evaluated on Histological, sera and urine characteristics of kidney injury (interstitial fibrosis, renal inflammation, urine Ngal levels). In a rat model, acute myocardial infarction on the background of chronic kidney disease was associated with increased interstitial fibrosis, renal inflammation, and long-term elevation in urine Ngal.
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