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Updated: May 8, 2026

Robot-Assisted Kidney Transplantation
Published on: July 19, 2021
The consequences of pediatric renal transplantation on bone metabolism and growth
Justine Bacchetta1, Bruno Ranchin, Delphine Demède
1aInstitut de Génomique Fonctionnelle de Lyon (IGFL), Ecole Normale Supérieure bUniversité de Lyon, Lyon cCentre de Référence des Maladies Rénales Rares, Service de Néphrologie, Rhumatologie et Dermatologie Pédiatriques dService de Chirurgie Pédiatrique, Hôpital Femme Mère Enfant, Hospices Civils de Lyon, Bron, France.
Insights
Managing chronic kidney disease-mineral bone disorder in transplanted children focuses on optimizing growth and bone health. Key strategies include supporting renal function, using steroid-sparing treatments, and ensuring proper nutrition and lifestyle for better outcomes.
Area of Science:
- Pediatric Nephrology
- Bone Metabolism
- Renal Transplantation
Background:
- Chronic kidney disease (CKD) complications like growth retardation and renal osteodystrophy persist post-transplantation in children.
- Steroid-sparing strategies are increasingly used, yet achieving normal growth remains a challenge.
- CKD-mineral bone disorder (CKD-MBD) significantly impacts quality of life and self-esteem in pediatric transplant recipients.
Purpose of the Study:
- To review the pathophysiology of CKD-MBD in pediatric renal transplant recipients.
- To outline essential management strategies for daily clinical practice.
- To address the critical issue of achieving normal height and growth post-transplantation.
Main Methods:
- Literature review focusing on pathophysiology and management of CKD-MBD in pediatric renal transplant patients.
- Analysis of current therapeutic options and their effectiveness.
- Synthesis of evidence-based recommendations for clinical practice.
Main Results:
- Calcimimetics show efficacy in adult post-transplant hyperparathyroidism, with limited pediatric data.
- Elevated fibroblast growth factor 23 levels correlate with increased rejection risk, though mechanisms are unclear.
- Recombinant human growth hormone (rhGH) therapy is effective for short stature in transplanted children.
Conclusions:
- Daily management prioritizes optimizing renal function and promoting steroid-sparing approaches.
- Optimal nutrition and lifestyle are crucial for maximizing final height and preventing bone deformities.
- Equilibrating calcium/phosphate metabolism, correcting metabolic abnormalities, and ensuring adequate vitamin D levels are vital for bone and cardiovascular health.
Purpose Of Review:
During childhood, growth retardation, decreased final height and renal osteodystrophy are common complications of chronic kidney disease (CKD). These problems remain present in patients undergoing renal transplantation, even though steroid-sparing strategies are more widely used. In this context, achieving normal height and growth in children after transplantation is a crucial issue for both quality of life and self-esteem. The aim of this review is to provide an overview of pathophysiology of CKD-mineral bone disorder (MBD) in children undergoing renal transplantation and to propose keypoints for its daily management.
Recent Findings:
In adults, calcimimetics are effective for posttransplant hyperparathyroidism, but data are missing in the pediatric population. Fibroblast growth factor 23 levels are associated with increased risk of rejection, but the underlying mechanisms remain unclear. A recent meta-analysis also demonstrated the effectiveness of rhGH therapy in short transplanted children.
Summary:
In 2013, the daily clinical management of CKD-MBD in transplanted children should still focus on simple objectives: to optimize renal function, to develop and promote steroid-sparing strategies, to provide optimal nutritional support to maximize final height and avoid bone deformations, to equilibrate calcium/phosphate metabolism so as to provide acceptable bone quality and cardiovascular status, to correct all metabolic and clinical abnormalities that can worsen both bone and growth (mainly metabolic acidosis, anemia and malnutrition), promote good lifestyle habits (adequate calcium intake, regular physical activity, no sodas consumption, no tobacco exposure) and eventually to correct native vitamin D deficiency (target of 25-vitamin D >75 nmol/l).
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