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Updated: Jan 31, 2026

Robot-Assisted Kidney Transplantation
Published on: July 19, 2021
Short stature in advanced pediatric CKD is associated with faster time to reduced kidney function after transplant
Yijun Li1, Larry A Greenbaum2, Bradley A Warady3
1Department of Epidemiology, Johns Hopkins Bloomberg School of Public Health, Baltimore, MD, USA. yijunli@jhu.edu.
Insights
Short stature in children undergoing kidney transplant is linked to faster decline in kidney function post-transplant. This growth failure impacts long-term outcomes, highlighting the need for clinical awareness and further research into contributing factors.
Area of Science:
- Pediatric Nephrology
- Transplantation Medicine
- Growth and Development
Background:
- Short stature in pediatric kidney transplant recipients is associated with poorer outcomes and increased mortality.
- The impact of pre-transplant short stature on post-transplant kidney function is not well understood.
- Chronic kidney disease (CKD) can contribute to growth failure through various accumulated risks.
Purpose of the Study:
- To investigate the relationship between pre-transplant short stature and kidney function after kidney transplantation in children.
- To characterize the time to a decline in estimated glomerular filtration rate (eGFR) to < 45 ml/min/1.73 m² in relation to pre-transplant stature.
Main Methods:
- Analysis of the Chronic Kidney Disease in Children (CKiD) cohort, focusing on children who received a kidney transplant.
- Definition of short stature as height < 3rd percentile for age and sex.
- Utilized parametric survival models, adjusting for socioeconomic status (SES), disease severity, and parental height, to assess time to eGFR < 45 ml/min/1.73 m².
Main Results:
- 20% of 138 transplanted children had short stature prior to transplant.
- Children with short stature experienced a significantly faster decline in kidney function post-transplant (log-rank p=0.004).
- After adjustments, short stature was associated with a 40% shorter time to eGFR < 45 ml/min/1.73 m² (relative time 0.60).
Conclusions:
- Pre-transplant short stature is a significant predictor of accelerated loss of kidney function following transplantation in children.
- Factors such as SES, disease severity, and parental height partially mediate this association.
- Clinicians must consider growth failure as a critical factor influencing post-transplant kidney function and patient outcomes.
Background:
Among children who receive a kidney transplant, short stature is associated with a more complicated post-transplant course and increased mortality. Short stature prior to transplant may reflect the accumulated risk of multiple factors during chronic kidney disease (CKD); however, its relationship with post-transplant kidney function has not been well characterized.
Methods:
In the Chronic Kidney Disease in Children (CKiD) cohort restricted to children who received a kidney transplant, short stature (i.e., growth failure) was defined as age-sex-specific height < 3rd percentile. The outcome was time to estimated glomerular filtration rate (eGFR) < 45 ml/min/1.73 m2 after transplant. Parametric survival models, including adjustment for disease severity, socioeconomic status (SES), and parental height by inverse probability weighting, described the relative times to eGFR< 45 ml/min/1.73 m2.
Results:
Of 138 children (median CKD duration at transplant: 13 years), 20% (28) had short stature before the transplant. The median time to eGFR < 45 ml/min/1.73 m2 after kidney transplantation was 6.6 years and those with short stature had a significantly faster time to the poor outcome (log-rank p value 0.004). Children with short stature tended to have lower SES, nephrotic proteinuria, higher blood pressure, and lower mid-parental height before transplant. After adjusting for these variables, children with growth failure had 40% shorter time to eGFR < 45 ml/min/1.73 m2 than those with normal stature (relative time 0.60, 95%CI 0.32, 1.03).
Conclusions:
Short stature was associated with a faster time to low kidney function after transplant. SES, disease severity, and parental height partially explained the association. Clinicians should be aware of the implications of growth failure on the outcome of this unique population, while continued attempts are made to define modifiable factors that contribute to this association.
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