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NCT Number: NCT07313878

Evaluation of Acute and Chronic Nephrotoxicity in Acute Lymphatic Leukemia Patients Using Ultrasound Localization Microscopy

With increasing survival rates in pediatric oncology, reports of long-term side effects persisting decades after treatment are also rising. Clinically evident nephropathies occur in about 5.5% of survivors more than five years after therapy. Chemotherapeutic agents such as ifosfamide, cisplatin, and carboplatin, as well as kidney-directed treatments like radiation, surgery, or stem cell transplantation, increase this risk. Acute kidney injury has also been described in association with cyclophosphamide and high-dose methotrexate, which are used in the treatment of acute lymphoblastic leukemia (ALL). Studies show a high prevalence of albuminuria (around 14.5% of childhood cancer survivors), an early marker of kidney damage, while standard parameters like creatinine often become abnormal only at later stages.

Leukemia survivors suffer from vascular late effects caused by persistent endothelial damage triggered by cancer therapies such as anthracyclines, cyclophosphamide, and asparaginase, which increase inflammation and thrombosis risk. These vascular changes may also contribute to kidney injury.

ULM is a high-resolution ultrasound technique that uses microbubbles to visualize the microvasculature and resolve dynamic blood flow changes with a resolution beyond the diffraction limit. ULM is independent of kidney or liver function, has been applied in various organs, and was recently used for the first time to visualize glomeruli-the smallest functional units of the kidney-in humans. This method enables early detection of glomerular injury as a consequence of vascular damage, even before albuminuria appears, potentially allowing earlier adaptation of follow-up and initiation of treatment.

This pilot project focuses on survivors of ALL, as they are the largest and best studied pediatric cancer patient group also regarding late effects and, therefore, a sufficient number of individuals can be expected for his monocentric approach. Vascular functional impairment of the kidney could be detected at an early stage and the follow-up structures and measures such as the early use of nephroprotective drugs could be adapted.

Recruiting

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Key information

Age range

3 year–17 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Department of Pediatrics and Adolescent Medicine

Erlangen, Baveria, 91054, Germany

Location status: Recruiting

Location contact

Alexander Dierl, MD

CONTACT

[email protected]

+4991318533118

Alexander Dierl, MD

PRINCIPAL_INVESTIGATOR

Axel Karow, MD

CONTACT

[email protected]

+49 9131 8533118

Axel Karow, MD

PRINCIPAL_INVESTIGATOR

Eva-Maria Wild, MD

PRINCIPAL_INVESTIGATOR

Henriette Grieshaber Bouyer Mandelbaum, MD

PRINCIPAL_INVESTIGATOR

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Diagnosed acute lymphatic leukemia
  • From 3 years to < 18 years
  • completed oncological treatment or treatment day < 50 according to therapy protocol and no administration of CPM before first examination.

Exclusion criteria

  • Known allergic disposition to SonoVue / other contrast agents
  • Tattoo in the area of the examination field
  • Pregnancy
  • Breastfeeding mothers
  • Contraindication for the use of Sonovue
  • Critical condition
  • Known clinically evident renal impairment

Treatment and study plan

Ultrasound Localization Microscopy (ULM)

Diagnostic Test

Single Examination: ULM of the kidney after application of a contrast medium (SonoVue®, intravenous).

Blood sample

Diagnostic Test

Blood draw (including BB, Diff, Glucose, Na, K, Cl, Ca, LDH, Crea, Cystatin C, Uric Acid, CRP, Albumin, Ferritin, Total Protein) through venous access.

Urinanalysis

Diagnostic Test

Examination of urine for erythrocytes, leukocytes, pH value, nitrite, protein, blood, and electrolytes.

Renal sonography

Diagnostic Test

Renal sonography including resistance index (RI), Doppler signal, flow velocity, and others.

Primary outcomes

  1. CEUS Measurement 1

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Peak enhancement (PE)

  2. CEUS Measurement 2

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Wash-in area under the curve (WIAUC)

  3. CEUS Measurement 3

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Wash-in perfusion index (WiPI)

  4. CEUS Measurement 4

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Wash-in rate (WIR)

  5. CEUS Measurement 5

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Wash-out under the curve (WoAUC)

  6. CEUS Measurement 6

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Wash-in and wash-out under the curve (WiWoAUC)

  7. CEUS Measurement 7

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Wash-out rate (WoR)

  8. CEUS Measurement 8

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Time to peak (TTP)

  9. CEUS Measurement 9

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Rise time (RT)

  10. CEUS Measurement 10

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Mean transit time (local) (mTTI)

  11. CEUS Measurement 11

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Fall time (FT)

  12. CEUS Measurement 12

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Peak enhancement (PE)

Secondary outcomes

  1. Blood Count

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Complete blood count with number of red and white blood cells and platelets per µl

  2. Urine status

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Measurement of proteinuria in mg/l with protein differentiation

  3. RI

    Time frame: Measurement of proteinuria with protein differentiation

    Resistance index (Sonography)

  4. Flow velocity

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Flow velocity in Doppler Signal (Sonography)

  5. Weigth

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Weigth of the participant in kilograms

  6. Height

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Height of the participant in meters

  7. BP

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Measurement of systolic, diastolic and mean blood pressure in mmHg

  8. Electrolytes

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Concentration of serum electrolytes (Na, K, Cl, Mg, P) in mmol/L.

  9. Creatinin and urea level

    Time frame: Study arm early therapeutic effects: Baseline before day 50 of the therapy and follow up after completion of intensive chemotherapy Study arm late therapeutic effects: Baseline at a single-time point in oncological follow-up care

    Serum Creatinin and urea level in mg/dl

Study contacts

Contact information is provided by the study sponsor or research team.

Alexander Dierl, MD

CONTACT

[email protected]

+4991318533118

Axel Karow, MD

CONTACT

[email protected]

+4991318533118

Sponsors and collaborators

Lead sponsor

University of Erlangen-Nürnberg Medical School

Other

Registry information

Acronym: HEALED

Important dates

Study start
2025
Primary completion
2026
Study completion
2026
First posted
Jan 2, 2026
Registry last updated
Jan 2, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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