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Digital Home-Monitoring of Patients after Kidney Transplantation: The MACCS Platform
Published on: April 12, 2021
How to monitor renal function in pediatric solid organ transplant recipients
1Department of Paediatrics, Children's Hospital at London Health Science Centre, University of Western Ontario, London, Ontario, Canada. guido.filler@lhsc.on.ca
Insights
Early detection of kidney problems after pediatric organ transplants is crucial. Current methods like serum creatinine are limited; newer tests like cystatin C-based GFR estimation show promise for monitoring transplant recipients.
Area of Science:
- Nephrology
- Pediatric Transplantation
- Biomarkers
Background:
- Pediatric solid organ transplantation requires vigilant monitoring for renal dysfunction.
- Early detection of kidney damage is essential to prevent long-term complications.
Purpose of the Study:
- To review available tools for early detection of renal dysfunction post-pediatric solid organ transplantation.
- To evaluate the efficacy and limitations of current and emerging biomarkers.
Main Methods:
- Review of literature on renal function assessment in pediatric transplant recipients.
- Analysis of established markers (GFR, serum creatinine) and novel markers (cystatin C, microalbuminuria).
- Consideration of hypertension screening and monitoring protocols.
Main Results:
- Serum creatinine and Schwartz formula have low sensitivity for early renal damage.
- Nuclear medicine GFR scans (isotope clearance) are preferred over inulin clearance.
- Cystatin C-based GFR estimation offers a promising alternative.
- Microalbuminuria's role needs further study in transplantation.
- Hypertension screening is vital for all recipients.
Conclusions:
- Pediatric solid organ transplant recipients, especially those on calcineurin inhibitors (CNI), need regular screening for renal damage.
- GFR scans and cystatin C-based estimations are recommended for monitoring.
- Integrated management including hypertension monitoring is essential.
Abstract:
The aim is to review the tools for early detection of renal dysfunction after pediatric solid organ transplantation. Currently, the most widely used marker for detection of renal dysfunction involves measurement of GFR. Inulin clearance forms the "gold standard" method for measuring GFR; however, nuclear medicine methods ((51)Cr EDTA and (99)Tc DTPA isotope clearance studies) have replaced inulin clearance. The measurement of serum creatinine has a low sensitivity for the early detection of renal damage. The Schwartz formula using patient height and serum creatinine requires center-specific constants and has limitations associated with creatinine determination. These limitations may be overcome using a cystatin C-based GFR estimation. In diabetic nephropathy, and more recently in hemolytic uremic syndrome, microalbuminuria has been established as a useful screening tool for renal damage, while its predictive value in the transplantation setting needs to be established. All transplant recipients should be screened for hypertension. Early referral for ambulatory 24-h blood pressure monitoring and involvement of pediatric nephrologists should be considered. All pediatric solid organ transplant recipients receiving CNI should be screened regularly for high blood pressure and early evidence of renal damage using either GFR scans or cystatin C-based GFR estimations.
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