Non-invasive Evaluation of Kidneys in Patient With Congenital Anomalies of the Kidney and Urinary Tract (CAKUT) Using Ultrasound Localization Microscopy
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 发起方
- 入组人数
- 20
- 试验地点
- 1
- 主要终点
- Visualization and quantification of kidney perfusion with CEUS
研究概览
简要总结
This clinical study aims to non-invasively visualize perfusion and microvascularization, as well as individual glomeruli, using Ultrasound Localization Microscopy (ULM) and CEUS in patients with congenital anomalies of the kidney and urinary tract (CAKUT).
详细描述
Congenital anomalies of the kidney and urinary tract (CAKUT) affect 0.5% of newborns and account for 20% of all congenital malformations. These conditions are associated with chronic kidney failure, a need for dialysis, and significantly increased mortality (30 times higher than healthy peers) and morbidity. Patients with CAKUT face substantial health and socioeconomic burdens due to lifelong therapy requirements. In Europe, CAKUT is the leading cause of dialysis-dependent chronic kidney failure.
All CAKUT disorders arise in utero, interfering with kidney development and leading to reduced nephron formation. Many congenital kidney anomalies are diagnosed via prenatal ultrasound. These anomalies include ureteropelvic junction obstruction, often presenting as unilateral hydronephrosis, and posterior urethral valves, which can be associated with megacystis and bilateral hydronephrosis. The resulting urinary obstruction can cause pressure damage to kidney tissue during fetal development, further reducing functional nephron mass. Postnatally, ongoing pressure damage can lead to renal remodeling. The decreased nephron mass and remodeling increase the long-term risk of kidney insufficiency, which is currently assessed only by serum creatinine levels-these are delayed and less sensitive in infants and young children. Reliable biomarkers for reduced nephron mass or renal remodeling to predict chronic kidney injury risk in CAKUT patients are currently lacking. Currently, the actual pressure impact of sonographically detectable urinary obstruction can only be assessed through urine flow patterns using MAG-3 scintigraphy. However, this method is dependent on kidney function, which can affect the uptake and excretion of the radiopharmaceutical and subsequently influence the evaluation of results.
The intravenous use of ultrasound contrast enhancers as an aid opens up the possibility of recording the tissue perfusion of the kidneys, including the smallest vessels, independent of the kidney function. This could provide significantly more information compared to conventional methods and expand our knowledge of the pathophysiology and individual status of tissue perfusion in patients.
In this clinical study, the new CEUS measurement and imaging technique will be used after the kidney scintigraphy. A contrast agent (SonoVue®) will be administered during the routine ultrasound examination and improved tissue visualization will be achieved. The aim is to gain new insights into kidney perfusion as part of the treatment and to better assess the extent of organ damage in the individual patient through more specific vascular imaging. Finally, the aim is to compare diagnostic and prognostic methods with the currently recommended measures. The CEUS is to be examined as a possible diagnostic imaging tool and possibly a supplement to existing diagnostic methods.
研究设计
- 研究类型
- Observational
- 观察模型
- Cohort
- 时间视角
- Prospective
入排标准
- 年龄范围
- 0 Months 至 6 Years(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Minimum Age 1 Month Maximum Age 6 Years Indication for MAG3 Scintigraphy of the Kidney Congenital Anomalies of the Kidney and Urinary Tract Obstruction Diagnosis Availability of the qualified examiner Consent of the parents/legal guardians
排除标准
- •Lack of consent of at least one parent
结局指标
主要结局
Visualization and quantification of kidney perfusion with CEUS
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
CEUS imaging for kidney perfusion in CAKUT
Visualization and quantification of kidney mikrovaskularisation with ULM
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
ULM imaging for kidney perfusion and mikrovaskularisation in CAKUT
Visualization and quantification of glomeruli in the kidney with ULM
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
ULM imaging for glomeruli in the kidney
CEUS Measurement1
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
PE (Peak-Enhancement)
CEUS Time intensity curves
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
All CEUS outcomes will be generated in order to achieve time intensity curves in contrast enhanced ultrasound analysis
CEUS Measurement2
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
WiAUC (Wash-in Area Under the Curve (AUC(TI: TTP)))
CEUS Measurement4
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
RT (Rise Time)
CEUS Measurement5
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
mTT (mean Transit Time local) (mTT-TI))
CEUS Measurement6
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
TTP (Time to Peak)
CEUS Measurement7
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
WiR (Wash-in-Rate )
CEUS Measurement8
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
WiPI (Wash-in Perfusion Index (WiAUC/RT))
CEUS Measurement11
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
FT (Fall Time - (TO-TTP))
CEUS Measurement9
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
WoAUC (Wash-out AUC (AUC(TTP:TO)))
CEUS Measurement10
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
WiWoAUC (Wash-in- und Wash-out-AUC (WiAUC+WoAUC))
CEUS Measurement12
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
WOR (Wash-out-Rate) QOF (Quality Of Fit between the echo-power signal and f(t)
CEUS Measurement13
时间窗: Baseline and follow up (1-31 days after routine surgery if indicated)
QOF (Quality Of Fit between the echo-power signal and f(t)
次要结局
- ULM and Ultrasound(Baseline and follow up (1-31 days after routine surgery if indicated))
- ULM and CEUS(Baseline and follow up (1-31 days after routine surgery if indicated))
- ULM and Biopsy(Baseline and follow up (1-31 days after routine surgery if indicated))
- ULM on affected and unaffected kidney(Baseline and follow up (1-31 days after routine surgery if indicated))
- ULM and Scintigraphy(Baseline and follow up (1-31 days after routine surgery if indicated))
- Pressure changes with CEUS(Baseline and follow up (1-31 days after routine surgery if indicated))
- Pressure changes with ULM(Baseline and follow up (1-31 days after routine surgery if indicated))
- Comparison of the kidney before and after intervention with ULM(Baseline and follow up (1-31 days after routine surgery if indicated))
- ULM on different diagnoses(Baseline and follow up (1-31 days after routine surgery if indicated))
- ULM on clinical outcomes(Baseline and follow up (1-31 days after routine surgery if indicated))
- Correlation between ULM and laboratory parameters(Baseline and follow up (1-31 days after routine surgery if indicated))
- Assessment of renal function GFR(Baseline and follow up (1-31 days after routine surgery if indicated))
- Assessment of renal function urea(Baseline and follow up (1-31 days after routine surgery if indicated))
- Assessment of renal function urinary status(Baseline and follow up (1-31 days after routine surgery if indicated))
- Assesment of renal function kreatininekinase(Baseline and follow up (1-31 days after routine surgery if indicated))
研究者
Ferdinand Knieling
PD Dr. med. Dr. rer. biol. hum. Ferdinand Knieling
University Hospital Erlangen
