Evaluation of risk factors and treatment options in patients with ureteral stricture disease at a single institution

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AI-generated summary by gemini-2.5-flash-lite, 2026-07-15

This retrospective review of 25 patients found that impacted stones were the most common cause of ureteral strictures, and endoscopic management was successful in selected cases.

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AI-generated deep summary by claude@2026-07, 2026-07-15 · read from full text

This retrospective single-institution chart review evaluated risk factors for benign ureteral strictures and the success of different treatment modalities in 25 patients with 29 strictures, identifying etiologies including impacted stones, radiation, and endometriosis. Most strictures (60%) were attributed to impacted stones, with reported complications during prior stone interventions in some patients (e.g., perforation with possible urinoma, retained fractured guidewire, and ureteric/orifice resection), and treatment options ranged from endoscopic laser endoureterotomy with balloon dilation to surgical reconstruction, diversion, and surveillance. The paper’s limitations include the small sample size, retrospective design, and absence of detailed comparative effectiveness metrics across the many treatment categories. Relevance to endometriosis: the study lists endometriosis as one stricture etiology (4%) among multiple non-malignant causes, though its main focus is evaluating ureteral stricture risk factors and treatment outcomes rather than endometriosis per se.

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Abstract

INTRODUCTION: Ureteral strictures are a significant cause of morbidity and mortality, resulting in potential kidney damage requiring several surgical procedures. Non-malignant causes include radiation, trauma from calculi impaction, pelvic surgery, or ureteroscopy (URS). We identified risk factors in our patients with ureteral strictures and the success of their treatment outcomes. METHODS: A retrospective chart review of 25 patients with 29 ureteral strictures was performed to determine the success of their treatment. RESULTS: Twenty-five (25) patients with 29 benign ureteral strictures were identified. Most cases (60%) were caused by impacted stones where the median stone size was 1.15 cm (0.37-1.8 cm). Intervention for stones prior to stricture development included shockwave lithotripsy, URS, and percutaneous nephrolithotomy. Five patients with strictures from impacted stones had ureteric complications during stone treatment including perforation +/- urinoma (n=3), fractured guidewire left in situ (n=1), and ureteric orifice resection (n=1). Other stricture etiologies included radiation (28%) and endometriosis (4%). Treatment modalities used included ureteroureterostomy (n=2), ureteral re-implant (n=3), urinary diversion (n=3), autotrasplant (n=1), laser endoureterotomy +/- balloon dilation (n=8), nephrectomy (n=2), balloon dilation +/- stent (n=3), ureterovesical junction (UVJ) resection + stent (n=1), chronic stent changes (n=4), or surveillance (n=3). CONCLUSIONS: Our evaluation highlights important principles. Patients with complicated ureteroscopies or severely impacted calculi warrant close followup with imaging after stone treatment due to possibility of rapid renal deterioration from stricture formation. Radiation-induced strictures are difficult to manage, possibly requiring subsequent urinary diversion. Finally, endoscopic management of benign ureteral strictures via balloon dilation and laser endoureterotomy is an excellent choice in properly selected patients, with opportunity for subsequent salvage treatments if needed.
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Introduction

Ureteral strictures are a significant cause of morbidity and mortality, resulting in potential kidney damage requiring several surgical procedures. Non-malignant causes include radiation, trauma from calculi impaction, pelvic surgery, or ureteroscopy (URS). We identified risk factors in our patients with ureteral strictures and the success of their treatment outcomes.

Methods

A retrospective chart review of 25 patients with 29 ureteral strictures was performed to determine the success of their treatment.

Results

Twenty-five (25) patients with 29 benign ureteral strictures were identified. Most cases (60%) were caused by impacted stones where the median stone size was 1.15 cm (0.37‒1.8 cm). Intervention for stones prior to stricture development included shockwave lithotripsy, URS, and percutaneous nephrolithotomy. Five patients with strictures from impacted stones had ureteric complications during stone treatment including perforation +/- urinoma (n=3), fractured guidewire left in situ (n=1), and ureteric orifice resection (n=1). Other stricture etiologies included radiation (28%) and endometriosis (4%). Treatment modalities used included ureteroureterostomy (n=2), ureteral re-implant (n=3), urinary diversion (n=3), autotrasplant (n=1), laser endoureterotomy +/- balloon dilation (n=8), nephrectomy (n=2), balloon dilation +/- stent (n=3), ureterovesical junction (UVJ) resection + stent (n=1), chronic stent changes (n=4), or surveillance (n=3).

Conclusions

Our evaluation highlights important principles. Patients with complicated ureteroscopies or severely impacted calculi warrant close followup with imaging after stone treatment due to possibility of rapid renal deterioration from stricture formation. Radiation-induced strictures are difficult to manage, possibly requiring subsequent urinary diversion. Finally, endoscopic management of benign ureteral strictures via balloon dilation and laser endoureterotomy is an excellent choice in properly selected patients, with opportunity for subsequent salvage treatments if needed. Downloads Downloads Published How to Cite Issue Section License You, the Author(s), assign your copyright in and to the Article to the Canadian Urological Association. This means that you may not, without the prior written permission of the CUA: - Post the Article on any Web site - Translate or authorize a translation of the Article - Copy or otherwise reproduce the Article, in any format, beyond what is permitted under Canadian copyright law, or authorize others to do so - Copy or otherwise reproduce portions of the Article, including tables and figures, beyond what is permitted under Canadian copyright law, or authorize others to do so. The CUA encourages use for non-commercial educational purposes and will not unreasonably deny any such permission request. You retain your moral rights in and to the Article. This means that the CUA may not assert its copyright in such a way that would negatively reflect on your reputation or your right to be associated with the Article. The CUA also requires you to warrant the following: - That you are the Author(s) and sole owner(s), that the Article is original and unpublished and that you have not previously assigned copyright or granted a licence to any other third party; - That all individuals who have made a substantive contribution to the article are acknowledged; - That the Article does not infringe any proprietary right of any third party and that you have received the permissions necessary to include the work of others in the Article; and - That the Article does not libel or violate the privacy rights of any third party.

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pubmed
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