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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
Effects of amlodipine on glomerular filtration, growth, and injury in experimental hypertension
L D Dworkin1, E Tolbert, P A Recht
1Department of Medicine, Brown University, Rhode Island Hospital, Providence 02903, USA.
Abstract:
The objective of this study was to determine whether the calcium antagonist amlodipine could slow the progression of chronic renal disease. We examined the effects of amlodipine on kidney structure and function in two experimental models of hypertension. In the first study, adult, male Munich Wistar rats underwent uninephrectomy and were given weekly injections of desoxycorticosterone and 1% saline for drinking. Rats ingested normal chow or chow containing amlodipine for 8 weeks. The drug reduced systemic blood pressure, but glomerular filtration rate, kidney weight, proteinuria, and morphological evidence of glomerular injury were not affected. In the second study, male spontaneously hypertensive rats underwent uninephrectomy at 5 weeks of age and were followed for 6 months, during which they received no therapy or amlodipine. The drug dose was determined in preliminary studies to be the highest dose not associated with marked growth retardation. Again, although systemic blood pressure was significantly reduced by amlodipine, proteinuria and the prevalence of glomerulosclerosis were similar in amlodipine-treated and control spontaneously hypertensive rats. Micropuncture studies revealed that glomerular pressure remained elevated in amlodipine-treated spontaneously hypertensive rats. Kidney weight and glomerular volume were also similar in amlodipine-treated and control rats. Amlodipine also failed to inhibit platelet aggregation. Therefore, antihypertensive therapy with amlodipine fails to reduce glomerular pressure in spontaneously hypertensive rats as well as glomerular size and injury in spontaneously hypertension rats and desoxycorticosterone-salt hypertension. Although other dihydropyridine calcium antagonists have been found to reduce experimental glomerular injury, these data suggest that amlodipine may not prevent hypertensive nephrosclerosis.
Insights
Amlodipine, a calcium antagonist, did not slow chronic kidney disease progression in hypertensive rat models. It reduced blood pressure but failed to improve kidney function or structure, suggesting it may not prevent hypertensive nephrosclerosis.
Area of Science:
- Nephrology
- Pharmacology
- Hypertension Research
Background:
- Hypertensive nephrosclerosis is a major cause of chronic kidney disease.
- Calcium antagonists are used to treat hypertension, but their effect on kidney disease progression is debated.
Purpose of the Study:
- To investigate if amlodipine, a calcium antagonist, could slow the progression of chronic renal disease.
- To evaluate the effects of amlodipine on kidney structure and function in experimental models of hypertension.
Main Methods:
- Two rat models were used: desoxycorticosterone-salt hypertension and spontaneously hypertensive rats.
- Rats received amlodipine or placebo, and kidney function, structure, and blood pressure were assessed.
- Micropuncture studies were performed to measure glomerular pressure.
Main Results:
- Amlodipine reduced systemic blood pressure in both models but did not improve glomerular filtration rate, kidney weight, or proteinuria.
- Glomerular injury and glomerulosclerosis were not reduced by amlodipine treatment.
- Glomerular pressure remained elevated in amlodipine-treated spontaneously hypertensive rats.
Conclusions:
- Antihypertensive therapy with amlodipine does not appear to reduce glomerular pressure, size, or injury in these models of hypertension.
- These findings suggest amlodipine may not prevent hypertensive nephrosclerosis, despite its blood pressure-lowering effects.
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