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Updated: Aug 4, 2026

Intravascular Delivery of Biologics to the Rat Kidney
Published on: September 1, 2016
Post-cyclosporine-mediated hypertension and nephropathy: amelioration by vascular endothelial growth factor
1Division of Nephrology, Department of Medicine, University of Washington, Seattle, Washington 98195, USA. dkang@bcm.tmc.edu
Insights
Cyclosporin A (CsA) induced kidney injury leads to salt-sensitive hypertension. Vascular Endothelial Growth Factor (VEGF) treatment improved blood pressure and renal recovery in a CsA nephropathy rat model.
Area of Science:
- Nephrology
- Cardiovascular Research
- Vascular Biology
Background:
- Microvascular and tubulointerstitial injury are implicated in salt-sensitive hypertension.
- Cyclosporin A (CsA) nephropathy causes renal lesions and hypertension.
- The role of angiogenic factors in preventing CsA-induced hypertension is unclear.
Purpose of the Study:
- To investigate if an angiogenic factor, vascular endothelial growth factor (VEGF(121)), can prevent hypertension in a CsA nephropathy model.
- To assess VEGF(121)'s effect on microvascular and renal injury progression.
Main Methods:
- Rats received CsA and a low-salt diet, followed by a high-salt diet.
- Animals with established CsA nephropathy were treated with VEGF(121) or vehicle.
- Blood pressure, osteopontin expression, macrophage infiltration, collagen III deposition, and arteriolopathy were assessed.
Main Results:
- High-salt diet induced salt-sensitive hypertension in CsA-treated rats.
- VEGF(121) treatment significantly lowered blood pressure.
- VEGF(121) reduced inflammatory markers, fibrosis, and improved arteriolopathy resolution.
Conclusions:
- CsA-induced renal injury leads to salt-sensitive hypertension.
- VEGF(121) treatment mitigates hypertension and accelerates histological recovery in CsA nephropathy.
- VEGF's vascular protective effects, particularly on arteriolopathy, offer a potential therapeutic strategy for CsA-associated hypertension and renal disease.
Abstract:
Recent studies have demonstrated a role for microvascular and tubulointerstitial injury in some models of salt-sensitive hypertension. We utilized a model of post-cyclosporin A (CsA) nephropathy and hypertension to test the hypothesis that treatment with an angiogenic factor aimed at ameliorating the microvascular and renal injury would prevent the development of hypertension. CsA was administered with a low-salt diet for 45 days, resulting in a renal lesion characterized by afferent arteriolopathy, focal peritubular capillary loss, and tubulointerstitial fibrosis. Rats were then placed on a high-salt diet and randomized to receive either vascular endothelial growth factor (VEGF(121)) or vehicle for 14 days. Placement of rats with established CsA nephropathy on a high-salt diet results in the rapid development of salt-sensitive hypertension. VEGF(121) treatment resulted in lower blood pressure, and this persisted on discontinuing the VEGF. VEGF(121) treatment was also associated with a decrease in osteopontin expression, macrophage infiltration, and collagen III deposition and markedly stimulated resolution of the arteriolopathy (20.9 +/- 7.8 vs. 36.9 +/- 6.1%, VEGF vs. vehicle, P < 0.05). In conclusion, CsA-associated renal microvascular and tubulointerstitial injury results in the development of salt-sensitive hypertension. Treatment of animals with established CsA nephropathy with VEGF reduces the hypertensive response and accelerates histological recovery. The vascular protective effect of VEGF may be due to the improvement of arteriolopathy. Angiogenic growth factors may represent a novel strategy for treating CsA-associated hypertension and renal disease.
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