Case
A 41-year-old Asian nulliparous woman was referred from a regional hospital with a diagnosis of an ovarian cyst. The patient had been experiencing abdominal pain for one year before admission, which had progressively worsened over the past four months. The pain was predominantly associated with menstruation. It was described as a dull, persistent ache radiating posteriorly to the rectum and extending distally to both thighs. Over the last few months, the pain had significantly intensified and markedly interfered with her daily activities and quality of life (VAS 10). To relieve the pain, the patient had been taking Dexketoprofen.
She reported regular menstrual cycles every 25–28 days, lasting 5–7 days, with menstrual bleeding requiring 2–3 sanitary pads per day. She denied any abdominal mass, abnormal uterine bleeding, vaginal discharge, urinary or bowel complaints, weight loss, or decreased appetite. Cervical cancer screening history, including Pap smear and HPV testing, was unavailable because the patient had not undergone prior screening before referral. Mammography was also not performed, as the referring hospital did not have mammography facilities and there were no clinical findings suggestive of breast pathology. There was no family history of malignancy. The patient had a previous history of laparotomy for appendectomy. Physical examination revealed no obvious abnormalities. However, digital rectal examination identified a firm, immobile mass located at the right posterior aspect of the cervix. The mass measured approximately 5×4 × 4 cm, with a solid consistency and irregular surface.
Transvaginal ultrasonography demonstrated findings consistent with deep infiltrating endometriosis (DIE), particularly a suspected DIE nodule located at the lower right posterior aspect of the uterus. The nodule measured 2.65 cm in its longest diameter and 1.56 cm in its shortest diameter, with echogenic characteristics typical of endometriotic tissue ( Figure 1A ). Importantly, the ultrasound examination also revealed right hydronephrosis ( Figure 1B ), extrinsic ureteral compression secondary to deep infiltrating endometriosis. These findings indicated advanced disease with possible infiltration into adjacent pelvic structures. Figure 1 Ultrasonography examination. ( A ) Transvaginal ultrasonography demonstrating VU (vesica urinaria, urinary bladder) and a deep infiltrating endometriosis (DIE) nodule located at the lower right posterior aspect of the uterus. The lesion measured 2.65×1.56 cm and exhibited echogenic characteristics consistent with endometriotic tissue; ( B ) Ultrasonographic image showing right-sided hydronephrosis characterized by dilation of the renal pelvis and calyces, suggestive of ureteral obstruction secondary to deep infiltrating endometriosis. Ultrasonography images show a uterine nodule and kidney hydronephrosis due to endometriosis.
Ultrasonography examination. ( A ) Transvaginal ultrasonography demonstrating VU (vesica urinaria, urinary bladder) and a deep infiltrating endometriosis (DIE) nodule located at the lower right posterior aspect of the uterus. The lesion measured 2.65×1.56 cm and exhibited echogenic characteristics consistent with endometriotic tissue; ( B ) Ultrasonographic image showing right-sided hydronephrosis characterized by dilation of the renal pelvis and calyces, suggestive of ureteral obstruction secondary to deep infiltrating endometriosis.
Further evaluation with magnetic resonance imaging (MRI) provided more detailed assessment of disease extent and confirmed significant urological complications. The MRI revealed right hydroureter and grade IV hydronephrosis of the right kidney, representing severe dilation of the renal collecting system ( Figure 2 ). These findings demonstrated serious urinary tract involvement by the endometriotic process, with a high risk of permanent renal damage if left untreated. The imaging characteristics were consistent with deep infiltrating endometriosis involving the posterior pelvic compartment with secondary genitourinary involvement. Figure 2 Magnetic resonance imaging (MRI) of the pelvis revealing right hydroureter and grade IV hydronephrosis, indicating severe dilation of the renal collecting system due to ureteral involvement by deep infiltrating endometriosis in the posterior pelvic compartment. A = anterior orientation marker; P = posterior orientation marker. ( A ) Green arrow: cervical mass extending to the right adnexa; White arrow: distal right hydroureter. ( B ) Black arrow: uterine fundus. Green arrow: deep infiltrating endometriosis nodule located adjacent to the right cervix. Pelvic MRI with two grayscale scans, A and B, showing arrow markers on a dark background.
Magnetic resonance imaging (MRI) of the pelvis revealing right hydroureter and grade IV hydronephrosis, indicating severe dilation of the renal collecting system due to ureteral involvement by deep infiltrating endometriosis in the posterior pelvic compartment. A = anterior orientation marker; P = posterior orientation marker. ( A ) Green arrow: cervical mass extending to the right adnexa; White arrow: distal right hydroureter. ( B ) Black arrow: uterine fundus. Green arrow: deep infiltrating endometriosis nodule located adjacent to the right cervix.
To evaluate renal function, a nuclear renogram was performed. The examination demonstrated markedly reduced tracer uptake and delayed excretion in the right kidney, consistent with severe obstructive uropathy and significantly impaired right renal function ( Figure 3 ). These findings suggested substantial functional compromise secondary to longstanding ureteral obstruction. The residual renal function of the affected kidney was extremely limited, indicating advanced and likely irreversible renal damage caused by longstanding ureteral obstruction. Figure 3 Nuclear renogram demonstrating severely impaired function of the right kidney with reduced tracer uptake and delayed excretion, consistent with obstructive uropathy secondary to ureteral involvement by deep infiltrating endometriosis. The numbered boxes (1–28) represent sequential dynamic scintigraphic images acquired over time during the renogram study, illustrating tracer uptake, transit, and excretion by both kidneys. The accompanying time–activity curves demonstrate markedly reduced tracer uptake and delayed washout in the right kidney compared with the left kidney. A composite nuclear renogram showing sequential kidney images and time activity curves with right sided low uptake. A composite nuclear renogram report with three visually distinct parts. The image A showing a grid of 28 sequential scintigraphic frames of the kidneys and bladder, arranged in 4 rows by 7 columns, each frame numbered 1 through 28. Kidney activity appears in the upper portion of each frame and bladder activity appears as a rounded focus near the bottom that becomes more prominent in later frames. The image B showing a small summed kidney image with two kidney outlines and a central bladder region. The image C showing a line graph of renogram time activity curves. The x-axis label is time in minute, ranging from 0 to 30 with labeled ticks at 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30. The y-axis label is counts, ranging from 0 to 400 with labeled ticks at 0, 100, 200, 300, 400. Four curves are listed in the legend: left kidney, right kidney, left cortex, right cortex. A vertical reference line is drawn at 15 minute. The highest curve rises rapidly to about 350 counts near 3 minute, then declines to about 200 counts by about 10 minute, stays near 200 counts until 15 minute, then drops to about 120 counts by about 18 minute and remains near 120 to 140 counts through 30 minute. A mid level curve stays near about 110 counts early and trends down to about 70 counts by 30 minute. Two low curves remain near about 10 to 30 counts across the full 0 to 30 minute range with small fluctuations. A right side text table lists numeric results. Global values include glomerular filtration rate 63.84 milliliter per minute and scaled glomerular filtration rate 77.66 milliliter per minute. Kidney table lists left versus right: kidney area 84.32 centimeter superscript 2 versus 43.72 centimeter superscript 2; kidney depth 4.73 centimeter versus 4.76 centimeter; uptake percent 89.72 versus 10.28; glomerular filtration rate 57.27 versus 6.57. Additional tables list left versus right values: kidney time to peak 2.75 versus 2.00; peak to 1 over 2 peak 12.5 versus 2.25; 30 minute over peak ratio 0.24 versus 0.21; 30 minute over 3 minute ratio 0.27 versus 0.26; diuretic T one half 4.38 versus 2.25. Cortex values list time to peak 2.75 versus 2.25; peak to 1 over 2 peak 5.25 versus 0.25; 30 minute over peak ratio 0.28 versus 0.28; 30 minute over 3 minute ratio 0.29 versus 0.28; diuretic T one half not available versus 0.25.
Nuclear renogram demonstrating severely impaired function of the right kidney with reduced tracer uptake and delayed excretion, consistent with obstructive uropathy secondary to ureteral involvement by deep infiltrating endometriosis. The numbered boxes (1–28) represent sequential dynamic scintigraphic images acquired over time during the renogram study, illustrating tracer uptake, transit, and excretion by both kidneys. The accompanying time–activity curves demonstrate markedly reduced tracer uptake and delayed washout in the right kidney compared with the left kidney.
Based on the clinical presentation and imaging findings, a multidisciplinary management approach involving gynecology and urology was recommended. The proposed surgical intervention included complete resection of the endometriotic nodule combined with nephrectomy of the affected kidney, given the severity of hydronephrosis and the markedly diminished residual renal function demonstrated on nuclear renography. Ureteral reconstructive procedures such as ureteral reimplantation were considered unlikely to provide meaningful functional recovery because the kidney was considered functionally nonviable. However, after thorough counseling regarding the risks, benefits, and alternative treatment options, the patient declined surgical intervention and opted for conservative management, despite understanding the potential long-term consequences of untreated severe endometriosis with urological involvement.
The patient was subsequently treated with monthly leuprolide acetate injections for three consecutive months. Follow-up transrectal ultrasonography demonstrated partial reduction in the size of the deep infiltrating endometriosis nodule compared to baseline evaluation ( Figure 4 ). Despite this interval decrease in lesion size and improvement in pain symptoms, right hydronephrosis persisted, indicating ongoing structural obstruction and the need for close surveillance of renal function. Long-term follow-up with periodic imaging and renal function monitoring was planned. The patient was also counseled that definitive surgical management, including nephrectomy and excision of the endometriotic lesion, would be reconsidered if lesion progression, worsening hydronephrosis, or further renal deterioration occurred during follow-up. Figure 4 Follow-up transrectal ultrasonography after three months of hormonal therapy with leuprolide acetate, showing partial reduction in the size of the deep infiltrating endometriosis nodule compared to baseline evaluation. Persistent right hydronephrosis remains evident despite interval lesion shrinkage. Ultrasound images showing the uterus and right ovary, with measurements of left ovarian cysts.
Follow-up transrectal ultrasonography after three months of hormonal therapy with leuprolide acetate, showing partial reduction in the size of the deep infiltrating endometriosis nodule compared to baseline evaluation. Persistent right hydronephrosis remains evident despite interval lesion shrinkage.
Intro
Endometriosis affects approximately 5–10% of women of reproductive age worldwide, with pooled prevalence estimates ranging from 1.0% in population-based studies to 5.0% in self-reported cohorts and an overall incidence of 1.4 to 3.5 cases per 1000 person-years. 1 , 2 Although peritoneal and ovarian lesions constitute the majority of cases, the ureter is involved in fewer than 1% of all endometriosis patients, with urinary tract endometriosis accounting for less than 10% of surgical diagnoses and ureteral involvement comprising only a quarter of these urinary lesions. 3 Such figures underline the rarity of ureteral endometriosis and its potential for delayed diagnosis due to non-specific presentations and the lack of population-based surveillance data. 1 , 2
Ureteral endometriosis is commonly categorized into intrinsic and extrinsic types according to the depth of ureteral involvement. Intrinsic disease involves infiltration of the ureteral wall, whereas extrinsic disease is characterized by periureteral fibrosis and external compression without direct mucosal invasion. Although this distinction has become less emphasized in recent literature because overlapping pathological features are frequently observed, it remains clinically important because the extent of ureteral infiltration may influence the choice of surgical management and postoperative outcomes. 4 , 5 Severe intrinsic involvement or advanced obstruction may require ureteral resection and reconstruction, while selected extrinsic lesions may be managed more conservatively. 4 , 5
Ureteral endometriosis, characterized by fibrotic lesions causing extrinsic ureteral compression or intrinsic infiltration, may lead to silent renal obstruction and irreversible renal damage if not promptly identified. 3 Clinical manifestations often include flank pain, hematuria, or incidental hydronephrosis on imaging, but up to 50% of patients present without urologic symptoms. 3 Although multiple reviews on urinary tract endometriosis have been published, most available evidence regarding diagnosis and treatment continues to originate from retrospective studies, small case series, and case reports due to the rarity of the disease. 5 Consequently, no universally accepted diagnostic algorithm currently exists, and early recognition still depends largely on clinical suspicion combined with imaging and histopathological confirmation.
When patients decline surgical intervention, conservative hormonal therapy offers a non-invasive alternative aimed at suppressing ectopic endometrial tissue and alleviating ureteral compression. Gonadotropin-releasing hormone agonists, progestins, and combined oral contraceptives have demonstrated efficacy in reducing lesion size and improving hydronephrosis in selected patients, although treatment response may be incomplete in cases with extensive fibrosis. 6 Therefore, close imaging and renal function follow-up are essential during conservative management to prevent progressive renal impairment.
However, in this case, ureteral endometriosis was not diagnosed at an early stage, resulting in a severe complication characterized by a decline in renal function to approximately 10% of its remaining capacity. This condition reflects the serious consequences of undetected chronic ureteral obstruction, which ultimately leads to progressive renal damage and the potential for permanent loss of kidney function.
Conclusion
Ureteral endometriosis is a potentially serious condition that may lead to hydronephrosis and irreversible renal damage if not diagnosed early. Because clinical manifestations can be variable or even asymptomatic, early detection through appropriate imaging, including renal ultrasonography, is essential. Conservative hormonal therapy with GnRH agonists may reduce nodule size and relieve symptoms in patients who decline surgery; however, persistent hydronephrosis indicates ongoing risk to renal function. Therefore, while hormonal therapy can serve as a temporary strategy, definitive surgical management remains crucial to prevent permanent ureteral obstruction and preserve long-term renal function.
Discussion
The present case describes a 41-year-old nulliparous woman with deep infiltrating endometriosis (DIE) involving the ureter, manifesting as a 2.65×1.56 cm nodule with associated hydroureter and grade IV hydronephrosis. This presentation aligns with prior reports of ureteral endometriosis where silent progression led to significant renal compromise before diagnosis. 3 In a similar case, medical therapy with the GnRH agonist goserelin achieved complete resolution of ureteral dilation and hydronephrosis within three months, followed by maintenance with dienogest and levonorgestrel intrauterine system, preserving renal function and fertility potential. 6 Unlike those reports where hydronephrosis fully reversed, our patient experienced only partial nodule reduction (to 1.91×1.33 cm) and pain improvement (VAS 9 to 5) after three monthly leuprolide acetate injections, likely reflecting the intrinsic fibrotic component of DIE adjacent to the ureter that may limit rapid lesion regression. 7
This case highlights that ureteral endometriosis is a potentially serious condition which can lead to severe complications, particularly hydronephrosis, which may result in irreversible renal damage if not diagnosed and treated in a timely manner. 3 , 7 , 8 Obstructive uropathy caused by ureteral involvement often progresses silently, and in many cases, renal impairment is detected only after significant functional loss has already occurred. 9 Therefore, early diagnosis of ureteral endometriosis is crucial to prevent progressive and permanent renal damage.
The clinical manifestations of ureteral endometriosis are highly variable. Patients may present with cyclical flank pain associated with menstruation, chronic pelvic pain, dysuria, or nonspecific abdominal discomfort, while others may remain entirely asymptomatic despite advanced obstruction. 3 As summarized in Table 1 , previously reported cases of ureteral endometriosis demonstrate considerable variability in clinical presentation, treatment approach, duration of management, and patient outcomes. This variability underscores the importance of maintaining a high index of suspicion, particularly in women with known deep infiltrating endometriosis (DIE). In this context, renal ultrasonography should be considered as part of routine evaluation in selected patients with DIE, as it represents a simple, non-invasive, and accessible modality for early detection of silent hydronephrosis. 7
Table 1 Summary of Published Case Reports on Ureteral Endometriosis No Reference (Link) Age Main Symptoms Treatment Modality Follow Up Complication Outcome 1 Case report of ureteral endometriosis with severe hydronephrosis 10 51 Asymptomatic Ureteral balloon dilation and double-J stenting followed by ureterolysis, ureteral stenectomy, and end-to-end ureteral anastomosis 6 months Hydronephrosis Hydronephrosis resolved after surgery 2 Deep infiltrating ureteral endometriosis with catamenial hydroureteronephrosis 8 44 Cyclical flank pain during menstruation Laparoscopic ureterolysis, resection of right uterosacral ligament, double-J stent insertion, and GnRH agonist therapy Not reported Hydroureteronephrosis Symptom-free 3 Ureteral Endometriosis Presenting as Recurrent Hydronephrosis 11 35 Flank pain, hematuria Repeated double-J stenting, nephrostomy, ureteral reimplantation using Lich-Gregoir technique, postoperative hormonal therapy Not reported Hydronephrosis Renal function improved; symptom-free 4 Bilateral Ureteral Involvement in Endometriosis – Case Report 12 48 Bilateral flank, abdominal and groin pain; weakness; fatigue; pollakiuria Exploratory laparotomy, bilateral ureteral segment resection, bilateral ureteroneocystostomy with Boari-flap and psoas-hitch technique, bilateral double-J stenting 8 months Hydronephrosis Symptom-free 5 Severe Ureteral Endometriosis Complicated with Hydronephrosis 13 42 Asymptomatic Right ureteral mass resection, ureteral stump end-to-end anastomosis, postoperative GnRH agonist therapy followed by LNG-IUS insertion 1 year Hydronephrosis Symptom-free 6 Endoscopic management of a ureteral obstruction caused by endometriosis 14 49 Asymptomatic; history of endometrioma cystectomy Ureteroscopy with cold-cup biopsy and endoscopic resection of distal ureteral lesion; retrograde double-J stent insertion; subsequent total hysterectomy with bilateral salpingo-oophorectomy (TH-BSO) Not reported Hydronephrosis Residual right hydronephrosis 7 Endometriosis presenting with right-sided hydroureteronephrosis only 15 30 Right flank pain, dysuria, suprapubic pain Initial diagnostic ureterorenoscopy and retrograde pyelography with double-J stent insertion, followed 6 weeks later by open partial ureterectomy and ureteroneocystostomy with Boari flap; postoperative double-J stent placement 2 years Hydronephrosis Hydronephrosis resolved after surgery 8 Ureteral Endometriosis with Obstructive Uropathy 9 42 Progressive right flank pain and backache Right nephroureterectomy and transurethral resection of bladder tumor Not reported Hydronephrosis Symptom-free
Summary of Published Case Reports on Ureteral Endometriosis
Refusal of surgical intervention in our patient echoes the choice of conservative management described in several case series. One report detailed intrinsic ureteral endometriosis managed with progestin therapy and ureteral stenting, resulting in symptomatic relief and stabilization of renal function over 24 months without surgery. The decision to postpone immediate surgery underscores the significance of patient autonomy and highlights the necessity of comprehensive, multidisciplinary counseling. Such counseling should carefully weigh the risk of progressive renal deterioration against the patient’s reproductive goals, as well as the potential adverse effects associated with long-term hormonal therapy. Patients should also be counseled regarding warning symptoms that warrant urgent reassessment, including worsening flank pain, fever, dysuria, gross hematuria, decreased urine output, or recurrent severe pelvic pain, as these may indicate progressive obstruction, urinary tract infection, or further renal compromise. The partial anatomical improvement suggests that leuprolide acetate, while effective in suppressing endometrial activity, may require longer duration or adjunctive treatments—such as add-back progestins or intrauterine systems—to achieve outcomes comparable to GnRH agonist protocols reported elsewhere. 6
Comparative analysis of hormonal regimens for ureteral endometriosis reveals variable efficacy based on agent, duration, and lesion characteristics. While goserelin achieved complete anatomical resolution in moderate hydronephrosis, progestin monotherapy with dienogest has demonstrated durable symptom control and quality-of-life improvements in bowel and urinary DIE, despite residual imaging findings. 3 , 6 , 16 Leuprolide acetate shares the mechanism of hypoestrogenism but may induce more profound hypoestrogenic symptoms, potentially limiting long-term adherence. 7 In our patient, moderate lesion shrinkage and pain relief indicate that leuprolide acetate is a viable initial conservative strategy; however, literature suggests that combining GnRH agonist therapy with progestin add-back or switching to dienogest could enhance lesion regression and sustain symptom remission while mitigating hypoestrogenic sequelae. 16
The pathophysiology of ureteral DIE involves both intrinsic invasion of ureteral muscularis and extrinsic compression from adjacent parametrial lesions. 7 Surgical ureterolysis with or without segmental resection remains the definitive treatment to restore ureteral patency, as demonstrated in cases where medical therapy alone failed to reverse obstruction or preserve renal function over long-term follow-up. 15 Our patient’s ongoing monitoring is crucial given her grade IV hydronephrosis and only partial response to leuprolide acetate. The literature supports that early surgical intervention, particularly when hydronephrosis is advanced, may prevent irreversible renal damage despite patient preference for conservative management. Thus, close imaging surveillance and shared decision-making are imperative to balance the benefits and limitations of hormonal therapy against the potential need for elective surgery should lesion progression or renal impairment recur. 7 , 17 During follow-up, periodic imaging evaluation and renal function assessment remain essential to detect disease progression at an early stage and to reassess the indication for definitive surgical management if conservative therapy fails.
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