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Body mass index is associated with hyperparathyroidism in pediatric kidney transplant recipients
Karen Vanderstraeten1, Rani De Pauw1, Noël Knops2
1Department of Pediatric Nephrology and Rheumatology, Ghent University Hospital, Corneel Heymanslaan 10, 9000, Ghent, Belgium.
Insights
Hyperparathyroidism after pediatric kidney transplant decreases over time, but BMI and pre-transplant PTH levels are key factors. Controlling pre-transplant parathyroid hormone (PTH) is crucial for better outcomes.
Area of Science:
- Pediatric Nephrology
- Transplantation Immunology
- Endocrinology
Background:
- Hyperparathyroidism affects up to 50% of pediatric kidney transplant recipients.
- Persistent high parathyroid hormone (PTH) levels can complicate post-transplant recovery.
- Understanding PTH evolution is vital for managing pediatric kidney transplant patients.
Purpose of the Study:
- To track parathyroid hormone (PTH) levels in the first year after pediatric kidney transplantation.
- To identify factors influencing hyperparathyroidism post-transplant.
- To inform strategies for managing PTH in this population.
Main Methods:
- Retrospective analysis of 149 pediatric kidney transplant recipients across four European centers.
- Data collected pre-transplant and up to 12 months post-transplant.
- Multivariate logistic regression used to identify factors associated with hyperparathyroidism.
Main Results:
- Hyperparathyroidism prevalence decreased from 71% pre-transplant to 29% at 12 months post-transplant.
- Body Mass Index (BMI) SDS, estimated Glomerular Filtration Rate (eGFR), and pre-transplant hyperparathyroidism were associated with hyperparathyroidism at 12 months.
- Pre-transplant hyperparathyroidism and eGFR were significant factors for severe hyperparathyroidism at 3 and 9 months, respectively.
Conclusions:
- Allograft function is the primary determinant of severe hyperparathyroidism post-transplantation.
- Maintaining optimal Body Mass Index (BMI) and controlling pre-transplant parathyroid hormone (PTH) levels are essential.
- Early intervention and monitoring are recommended for pediatric kidney transplant recipients.
Background:
Hyperparathyroidism persists in up to 50% of pediatric kidney transplant recipients. The aims of this study were to describe the evolution of parathyroid hormone (PTH) in the first year after transplantation and to identify factors associated with hyperparathyroidism.
Methods:
This retrospective study included children who underwent kidney transplantation at the University Hospitals of Ghent, Leuven, Rotterdam, or Amsterdam. Data from 149 patients were collected before and up to 12 months after transplantation. Severe hyperparathyroidism was defined as PTH 2-fold above the reference value. Factors associated with hyperparathyroidism and severe hyperparathyroidism were identified using multivariate logistic regression analysis.
Results:
Before transplantation, 97 out of 137 patients (71%) had hyperparathyroidism. The probability of hyperparathyroidism and severe hyperparathyroidism declined from 0.49 and 0.17 to 0.29 and 0.09 at 3 and 12 months after transplantation, respectively. BMI SDS (β: 0.509; p = 0.011; 95% CI: 1.122-2.468), eGFR (β: - 0.227; p = 0.030; 95% CI: 0.649-0.978), and pre-transplant hyperparathyroidism (β: 1.149; p = 0.039; 95% CI: 1.062-9.369) were associated with hyperparathyroidism 12 months after transplantation. Pre-transplant hyperparathyroidism (β: 2.115; p = 0.044; 95% CI: 1.055-65.084), defined as intact parathormone (iPTH) levels > 65 ng/l (6.9 pmol/l) or 1-84 PTH > 58 ng/l (6.2 pmol/l), was associated with severe hyperparathyroidism at 3 months. Only eGFR (β: - 0.488; p = 0.010; 95% CI: 0.425-0.888) was inversely associated with severe hyperparathyroidism at 9 months after transplantation.
Conclusions:
Allograft function remains the main determinant of severe hyperparathyroidism after transplantation. Our findings emphasize the importance of BMI and pre-transplant PTH control.
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