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Updated: Feb 6, 2026

Robot-Assisted Kidney Transplantation
Published on: July 19, 2021
Comparing treatment modalities for transplant kidney vesicoureteral reflux in the pediatric population
K R Sheth1, J T White1, I Stanasel2
1Texas Children's Hospital, Houston, TX, 77030, USA; Scott Department of Urology, Baylor College of Medicine, Houston, TX, 77030, USA.
Insights
Deflux injection for transplant ureter vesicoureteral reflux (VUR) showed poor results, with all patients experiencing recurrence or failure. Redo ureteral reimplantation after Deflux also increased complication risks, suggesting it is not recommended as a first-line treatment.
Area of Science:
- Urology
- Transplantation Surgery
- Pediatric Nephrology
Background:
- Vesicoureteral reflux (VUR) in transplant ureters can lead to febrile urinary tract infections and increased morbidity in pediatric renal transplant recipients.
- Non-refluxing ureteral reimplantation is standard, but VUR can still occur, posing surgical challenges for revision due to scar tissue and vascularity.
- Alternative treatments like endoscopic Deflux injection and surveillance are being explored for transplant ureter VUR.
Purpose of the Study:
- To review institutional experience managing VUR in transplant ureters.
- To compare the outcomes of surveillance, Deflux injection, and ureteral reimplantation for transplant ureter VUR.
- To evaluate the efficacy and complications associated with different VUR management modalities in pediatric renal transplant patients.
Main Methods:
- Retrospective chart review of renal transplant patients from January 2002 to January 2017.
- Identification of patients with post-transplant VUR via voiding cystourethrogram (VCUG).
- Documentation of indications for end-stage renal disease, urologic comorbidities, and post-transplant outcomes including febrile UTIs and interventions.
Main Results:
- VUR occurred in 12.3% of transplant patients (35/285).
- Deflux injection (11 patients) demonstrated a 100% failure rate, with most showing immediate recurrence.
- Redo ureteral reimplantation after failed Deflux had a 50% complication rate, including VUR recurrence and ureterovesical junction obstruction.
Conclusions:
- Endoscopic Deflux injection for VUR in the transplant setting yielded poor outcomes, with all treated patients failing the intervention.
- Redo ureteral reimplantation following failed Deflux was associated with significant complications, unlike primary reimplantation.
- Deflux is not recommended as a first-line treatment for VUR in pediatric renal transplant recipients based on this institutional experience.
Introduction:
Non-refluxing ureteral reimplantation is favored in pediatric renal transplantation to prevent complications, such as vesicoureteral reflux (VUR) in the transplant ureter. VUR resulting in febrile urinary tract infections remains a problem in this population, leading to repeated hospitalizations and increased morbidity. Revision of the vesicoureteral anastomosis can be a surgical challenge due to scar tissue and tenuous vascularity of the transplant ureter. Therefore, alternative options such as endoscopic injection of Deflux at the neo-orifice and surveillance with prophylactic antibiotics have emerged as potential treatment modalities for transplant ureter VUR.
Objective:
The authors reviewed their experience of the management of VUR in the transplant ureter, comparing outcomes of various modalities.
Study Design:
With Institutional Review Board approval, a retrospective chart review of all renal transplant patients from January 2002 to January 2017 was conducted. All patients with VUR on voiding cystourethrogram (VCUG) after surgery were identified. Indications for end-stage renal disease, urologic comorbidities, pretransplant VCUG, and operative details were recorded. After transplantation, febrile urinary tract infections, ultrasound findings, and any further interventions-surveillance, subureteral endoscopic injection of Deflux, or ureteral reimplantation-were documented along with their outcomes.
Results:
Overall, VUR was identified in 35/285 (12.3%) transplant patients after a non-refluxing ureteroneocystostomy. VUR was managed with surveillance in 17/35 (49%), intravesical Deflux injection in 11/35 (31%), and immediate redo ureteral reimplantation in 7/35 (20%). Ten out of 11 patients undergoing Deflux injection had a postoperative VCUG. All patients developed VUR recurrence; the majority showed immediate failure and only 1/10 showed late recurrence. Of the immediate failures, 3/9 patients were maintained on prophylactic antibiotics, and 6/9 patients underwent ureteral reimplantation. In these six patients undergoing reimplantation after failed Deflux, 3/6 (50%) patients required additional surgeries: One patient developed recurrence of reflux and two patients developed ureterovesical junction obstruction. In contrast, no complications were seen in patients undergoing primary ureteral reimplantation.
Discussion:
The study is limited by low numbers and a retrospective design. However, the results of this study differ significantly from the published Deflux series showing a success rate of more than 50% in the treatment of transplant kidney VUR. In fact, post-Deflux redo ureteral reimplantation was associated with an increased risk of postoperative complication.
Conclusion:
The use of Deflux in the post-transplant setting has poor results. In the study series, 11/11 patients demonstrated clinical and radiographic failure. Therefore, as an institution the authors do not recommend Deflux as first-line treatment of VUR in the transplant patient.
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