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Role of enhanced glomerular synthesis of thromboxane A2 in progressive kidney disease
P Salvati1, C Ferti, R G Ferrario
1Farmitalia Carlo Erba, Nerviano, Italy.
Abstract:
Normotensive rats of the Milan strain (MNS) spontaneously develop focal glomerulosclerosis. In order to explore the contribution of glomerular thromboxane (TX) A2 synthesis to the development of the disease, we have characterized the time course of renal functional and biochemical changes, and their modification by long-term treatment with a TX-synthase inhibitor. Oral administration (150 mg.kg-1 from 1 to 14 months of age) of FCE 22178 suppressed enhanced glomerular TXB2 production at all experimental times (mean inhibition 80%) and proteinuria (varying between 27.1 and 73.0%) while preserving renal blood flow and glomerular filtration rate. These effects of TX-synthase inhibition were seen in the absence of any statistically significant changes in systemic blood pressure. Moreover, FCE 22178 had no antihypertensive effects in hypertensive rats of the Milan strain (MHS) nor in spontaneously hypertensive rats (SHR). Treatment also prevented the age-related hypoalbuminemia and hyperlipidemia observed in control MNS and significantly (P less than 0.01) reduced glomerular histologic damage, as demonstrated by light microscopy studies and measurement of sclerotic area. We conclude that: 1) MNS rats provide an animal model of long-lasting proteinuria characterized by an age-related increase in glomerular TXB2 production paralleled by progressive loss of renal structural integrity and function and by a secondary dyslipidemia; 2) pharmacological inhibition of glomerular TX-synthase attenuates the structural as well as the functional expression of kidney disease, without a primary effect on systemic blood pressure. These data are suggestive of an important modulating role of TXA2 in the progression of MNS renal disease.
Insights
Inhibition of thromboxane (TX) A2 synthesis in Milan normotensive strain rats reduced proteinuria and kidney damage. This highlights TXA2
Area of Science:
- Nephrology
- Pharmacology
- Biochemistry
Background:
- Milan normotensive strain (MNS) rats spontaneously develop focal glomerulosclerosis.
- Glomerular thromboxane (TX) A2 synthesis may contribute to disease progression.
Purpose of the Study:
- To investigate the role of glomerular TXA2 synthesis in MNS rat kidney disease.
- To evaluate the effects of long-term TX-synthase inhibition on renal function and histology.
Main Methods:
- Oral administration of FCE 22178 (TX-synthase inhibitor) to MNS rats from 1 to 14 months of age.
- Measurement of glomerular TXB2 production, proteinuria, renal blood flow, glomerular filtration rate, albumin, and lipids.
- Histological examination of kidney damage using light microscopy and measurement of sclerotic area.
Main Results:
- FCE 22178 significantly suppressed glomerular TXB2 production (80% inhibition) and proteinuria.
- TX-synthase inhibition preserved renal blood flow and glomerular filtration rate without affecting systemic blood pressure.
- Treatment prevented age-related hypoalbuminemia and hyperlipidemia, and significantly reduced glomerular histologic damage.
Conclusions:
- MNS rats serve as a model for proteinuria with increased glomerular TXB2 production and progressive renal damage.
- Pharmacological inhibition of glomerular TX-synthase attenuates kidney disease progression in MNS rats.
- TXA2 plays a significant role in modulating the progression of kidney disease in this model.