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Published on: May 26, 2022
Proteinuria-lowering effect of heparin therapy in diabetic nephropathy without affecting the
Urs Benck1, Sarah Haeckel, John H Clorius
1V. Department of Medicine, University Hospital Mannheim, Mannheim, Germany. urs.benck@med5.ma.uni-heidelberg.de
Insights
Heparins reduce proteinuria in diabetic nephropathy (DN) by altering the glomerular filter, not by interfering with the renin-angiotensin-aldosterone system. This study investigated the mechanism behind heparin
Area of Science:
- Nephrology
- Pharmacology
- Diabetology
Background:
- Diabetic nephropathy (DN) involves proteinuria and reduced renal function.
- Angiotensin II (AngII) plays a key role in DN progression.
- Heparins are known to reduce proteinuria in DN, but the mechanism is unclear.
Purpose of the Study:
- To investigate if the antiproteinuric effect of heparins in DN is mediated by interference with the renin-angiotensin-aldosterone system.
- To assess the impact of enoxaparin on renal hemodynamics and aldosterone levels in patients with DN and controls.
Main Methods:
- A study involving volunteers with DN, glomerulonephritis, and controls.
- Measurement of renal hemodynamics using clearance techniques ((99m)Tc-DTPA and (131)I-hippurate).
- Assessment of glomerular filtration rate (GFR), effective renal plasma flow, mean arterial pressure, and heart rate before and after enoxaparin administration, with and without AngII infusion.
Main Results:
- Enoxaparin did not alter aldosterone levels or affect AngII-induced changes in renal hemodynamics.
- GFR remained stable across all groups.
- Enoxaparin significantly reduced proteinuria specifically in patients with diabetic nephropathy.
Conclusions:
- The antiproteinuric effect of heparins in DN is not explained by modulation of the renin-angiotensin-aldosterone system.
- Reduced proteinuria in DN with heparins suggests intrinsic changes in the glomerular filter.
- The observed effects were specific to diabetic nephropathy, not glomerulonephritis.
Abstract:
Angiotensin-converting enzyme inhibitors and angiotensin II (AngII) type 1 receptor blockers lower proteinuria and preserve renal function in diabetic nephropathy (DN). The antiproteinuric effects are greater than their blood pressure reduction, involving the sieving properties of the glomerular filter. In DN, glomerular staining for heparan sulfate proteoglycans is decreased. AngII inhibits heparan sulfate synthesis. Also, heparins modulate AngII signaling in glomerular cells, inhibiting aldosterone synthesis and lowering proteinuria in DN. Is the antiproteinuric effect of heparins due to its interference with the renin-angiotensin-aldosterone system? Ten volunteers each with DN and glomerulonephritis and control subjects were examined before and after low-dosage enoxaparin. Renal hemodynamics were determined with (99m)Tc-DTPA and (131)I-hippurate clearance. Glomerular filtration rate (GFR), effective renal plasma flow, mean arterial pressure, and heart rate were measured at baseline and during AngII infusion before and after enoxaparin while on normal salt and salt restriction. Enoxaparin did not lower aldosterone levels. GFR remained stable in all groups. AngII caused a significant decrease in effective renal plasma flow, whereas mean arterial pressure and heart rate increased significantly. Enoxaparin did not influence the AngII-induced changes of renal hemodynamics during normal salt intake or salt restriction. All groups showed identical responses to AngII before and after enoxaparin. In patients with diabetes, enoxaparin caused a significant decrease in proteinuria. It is concluded that the antiproteinuric effect of heparins in DN cannot be explained via interaction with the renin-angiotensin-aldosterone system. The absence of hemodynamic changes combined with reduced proteinuria point to intrinsic alterations in the glomerular filter. The effects were seen only in DN, not in glomerulonephritis.
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