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Updated: Jul 20, 2026

Murine Renal Transplantation Procedure
Published on: July 10, 2009
The challenge of renal function in heart transplant children
Sylvie Di Filippo1, Pierre Cochat, André Bozio
1Department of Pediatric Cardiology, Hopital Cardiologique de Lyon, 28 Avenue Doyen Lepine, 69677, Bron Cedex, France. sylvie.di.filippo@wanadoo.fr
Insights
Pediatric heart transplant recipients frequently experience renal dysfunction due to calcineurin inhibitors. Genetic factors and therapeutic strategies, including reduced calcineurin inhibitor use, are key to improving long-term outcomes.
Area of Science:
- Nephrology
- Pediatric Cardiology
- Immunosuppression
Background:
- Renal dysfunction is a significant complication after pediatric heart transplantation, affecting 22-57% of recipients.
- Chronic nephropathy impacts long-term prognosis in these young patients.
- The precise incidence and contributing factors require further elucidation.
Purpose of the Study:
- To review the incidence and mechanisms of chronic kidney disease following pediatric heart transplantation.
- To explore potential therapeutic strategies for mitigating renal dysfunction.
- To highlight the role of genetic factors in renal outcomes.
Main Methods:
- Literature review of studies on pediatric heart transplantation and renal function.
- Analysis of pathophysiological mechanisms, including calcineurin inhibitor toxicity.
- Examination of genetic polymorphisms and their association with renal dysfunction.
Main Results:
- Calcineurin inhibitor-induced renal vasoconstriction, renin-angiotensin system activation, and TGF-beta1 pathways contribute to nephrotoxicity.
- Angiotensin II overproduction and ACE gene polymorphisms may correlate with poor prognosis.
- Genetic polymorphisms influence calcineurin inhibitor exposure and renal outcomes.
Conclusions:
- Reducing calcineurin inhibitor exposure or delaying administration may prevent renal dysfunction.
- Pharmacological interventions like ACE inhibitors and TGF-beta1 blockade show promise.
- Further research into genetic polymorphisms and less nephrotoxic immunosuppressants is crucial for optimizing pediatric heart transplant care.
Abstract:
Renal dysfunction may occur after pediatric heart transplantation and impacts on long-term prognosis. This study aims to review the incidence and mechanisms of chronic nephropathy following heart transplantation, and suggest therapeutic directions. The proportion of pediatric heart-transplant recipients with impaired renal function varies from 22 to 57%, and end-stage renal failure from 3 to 10%, depending on the method used for estimating the glomerular filtration rate. The pathophysiology of renal dysfunction is in part due to calcineurin inhibitor-induced renal vasoconstriction, through activation of the intrarenal renin-angiotensin system, TGF-beta1 upregulation and TGF-beta1 gene polymorphisms. Overproduction of angiotensin II, associated with angiotensin-converting-enzyme genotype, might be associated with poor prognosis and pharmacological factor gene polymorphisms, and may contribute to variation of calcineurine inhibitor exposure in the kidney. Strategies to prevent renal dysfunction include reducing calcineurine inhibitor exposure or delaying calcineurine inhibitor administration from the early post-transplant period. Calcium channel blockers and angiotensin-converting-enzyme inhibitors, blockade of angiotensin II, or anti-TGF-beta1 antibodies might limit nephrotoxicity. No accurate marker can predict the potential of renal lesions to develop. Lowering calcineurine inhibitors levels with immunosuppressive agents that are either less nephrotoxic or non-nephrotoxic should be formally studied. Of high interest is the impact of genetic polymorphism on the development of renal dysfunction.
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