CClinicalTrials.gg
CompletedNCT00002611Updated Feb 25, 2021

Combination Chemotherapy Alone or With Radiation Therapy in Treating Children With Kidney Cancer

A Phase 3 interventional study of dactinomycin and filgrastim in Kidney Cancer, sponsored by Children's Oncology Group. Completed at 235 sites in 7 countries. Open to participants aged 0 Years to 15 Years. Per ClinicalTrials.gov, last updated 2021-02-25.

Sponsored by Children's Oncology Group · Phase 3, Interventional, and Treatment

Phase
Phase 3
Study type
Interventional
Enrollment
3,031
Ages
0 Years to 15 Years
Sex
All
01

Study summary

RATIONALE: Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Radiation therapy uses high energy x-rays to damage tumor cells. It is not yet known whether combination chemotherapy alone or combination chemotherapy plus radiation therapy is more effective for childhood kidney cancer.

PURPOSE: Phase III trial to compare the effectiveness of combination chemotherapy with or without radiation therapy in treating children who have kidney cancer.

Read the detailed description

OBJECTIVES:

  • Increase survival rate of children with favorable histology (FH) Wilms' tumor and other childhood renal tumors.
  • Determine whether loss of heterozygosity for chromosome 16q or 1p in tumor tissue is associated with a poorer prognosis in children with FH Wilms' tumor.
  • Determine whether increased DNA content in tumor cells is associated with a poorer prognosis in children with FH Wilms' tumor.
  • Decrease the acute and long-term morbidity in children with Wilms' tumor by limiting initial therapy and consistently using the same regimen (protocol NWTS-5/R) for patients who relapse following initial treatment.
  • Improve overall and disease-free survival of patients with renal tumors of unfavorable histology, including Wilms' tumor with diffuse anaplasia and clear cell sarcoma of the kidney, using a new treatment regimen that includes etoposide (VP-16) and cyclophosphamide (CTX).
  • Improve overall and disease-free survival in patients with malignant rhabdoid tumor of the kidney using a new treatment regimen that includes carboplatin, VP-16, and CTX. (The rhabdoid tumor stratum closed to accrual effective 07/13/2001)
  • Provide data regarding loss of heterozygosity for chromosomes 11p15, 16q, and 1p, age at diagnosis, precursor lesions (perilobar, intralobar, nephroblastomatosis), bilaterality, and presence of congenital anomalies required for the completion of protocol A0026 (a case-control study of risk factors for Wilms' tumor).

OUTLINE: This is a multicenter study. Patients are assigned to one of nine strata based on tumor histology, stage, tumor weight, and age.

  • Stratum 1 (stage I favorable histology (FH) Wilms' tumor, under 24 months of age, and tumor weight less than 550 g): After nephrectomy, patients receive regimen EE-4A comprising dactinomycin (DACT) IV weekly on weeks 0, 3, 6, 9, 12, 15, and 18 and vincristine (VCR) IV weekly on weeks 1-10, 12, 15, and 18.
  • Stratum 2 (stage I FH Wilms' tumor and age 24 months and over or tumor weight at least 550 g; stage I focal anaplastic (FA) or diffuse anaplastic (DA) Wilms' tumor): Patients receive therapy as in stratum 1.
  • Stratum 3 (stage II FH Wilms' tumor): Patients receive therapy as in stratum 1.
  • Stratum 4 (stage III FH Wilms' tumor; stage II or III FA Wilms' tumor): After nephrectomy, patients receive regimen DD-4A comprising DACT IV weekly on weeks 0, 6, 12, 18, and 24; doxorubicin IV weekly on weeks 3, 9, 15, and 21; and VCR IV weekly on weeks 1-10, 12, 15, 18, 21, and 24. Patients also undergo abdominal radiotherapy.
  • Stratum 5 (stage IV FH or FA Wilms' tumor): Patients receive chemotherapy as in stratum 4, abdominal radiotherapy, and whole lung radiotherapy (at the discretion of the investigator).
  • Stratum 6 (stage V FH, FA, or DA Wilms' tumor ): After bilateral biopsy, patients with FH receive chemotherapy as in stratum 1 or 4. Patients with FA or DA receive chemotherapy as in stratum 7.
  • Stratum 7 (stages I-IV clear cell sarcoma): After nephrectomy, patients receive VCR IV weekly on weeks 1, 2, 4-8, 10-13, 18, and 24; cyclophosphamide (CTX) IV over 1 hour on days 1-3 of weeks 6, 12, 18, and 24 and on days 1-5 of weeks 3, 9, 15, and 21; doxorubicin IV (beginning after CTX infusion) weekly on weeks 0, 6, 12, 18, and 24; and etoposide (VP-16) IV over 1 hour (beginning after CTX infusion) on days 1-5 of weeks 3, 9, 15, and 21. Filgrastim (G-CSF) is administered subcutaneously (SC) beginning 24 hours after completion of chemotherapy and continuing until blood counts recover. Patients also undergo abdominal radiotherapy and whole lung radiotherapy (if pulmonary metastases are present).
  • Stratum 8 (stages II-IV DA Wilms' tumor): Patients receive treatment as in stratum 7.
  • Stratum 9 (stages I-IV rhabdoid tumor): After nephrectomy, patients receive carboplatin IV on days 1-2 and VP-16 IV over 1 hour (beginning after carboplatin infusion) on days 1-3 of weeks 0, 3, 9, 12, 18, and 21 and CTX IV over 1 hour on days 1-5 of weeks 6, 15, and 24. G-CSF is administered as in stratum 7. Patients also undergo radiotherapy. (The rhabdoid tumor stratum closed to accrual effective 07/13/2001.) After completion of chemotherapy, patients undergo second-look laparotomy and partial nephrectomy or wedge excision (if feasible). After second-look surgery, patients without persistent or residual disease resume chemotherapy.

Patients are followed every 3 months for 5 years, every 6 months for 2 years, and then annually for 3 years.

PROJECTED ACCRUAL: A total of 207 patients will be accrued for the treatment portion of this study. (The rhabdoid tumor stratum closed to accrual effective 07/13/2001.)

02

Conditions studied

  • Kidney Cancer

Keywords

  • stage I Wilms tumor
  • stage II Wilms tumor
  • stage III Wilms tumor
  • stage IV Wilms tumor
  • stage V Wilms tumor
  • clear cell sarcoma of the kidney
03

In context

Kidney Neoplasms

956 studies on the registry are indexed under Kidney Neoplasms; 210 are open to participants now.

This study's enrollment of 3,031 is above the median of 43 across 650 interventional studies indexed under Kidney Neoplasms.

Browse Kidney Neoplasms studies →

Lead sponsor

Children's Oncology Group is the lead sponsor of 436 studies on the registry; 34 are open to participants now.

Of its 12 completed or terminated interventional studies of FDA-regulated products, 11 (92%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
0 Years to 15 Years
Sexes eligible
All
Accepts healthy volunteers
No

Eligibility criteria

DISEASE CHARACTERISTICS:

  • Histologically confirmed stage I-V kidney cancer of one of the following histologies:

    • Wilms' tumor, favorable histology
    • Wilms' tumor, focal or diffuse anaplastic
    • Clear cell sarcoma
    • Rhabdoid tumor

      • (The rhabdoid tumor stratum closed to accrual effective 07/13/2001)
  • Prior nephrectomy or biopsy required

    • Prior bilateral biopsy (preferably open) with bilateral staging and pathologic evaluation required for bilateral tumor
  • Must begin study therapy within 5 days after nephrectomy (unless medically contraindicated)

PATIENT CHARACTERISTICS:

Age:

  • Under 16

Performance status:

  • Not specified

Life expectancy:

  • Not specified

Hematopoietic:

  • Not specified

Hepatic:

  • Not specified

Renal:

  • Not specified

Other:

  • Not pregnant
  • Fertile patients must use effective contraception

PRIOR CONCURRENT THERAPY:

Biologic therapy:

  • Not specified

Chemotherapy:

  • No prior chemotherapy

Endocrine therapy:

  • Not specified

Radiotherapy:

  • No prior radiotherapy

Surgery:

  • See Disease Characteristics
05

Study design

Phase
Phase 3
Primary purpose
Treatment
Enrollment
3,031 participants (actual)

Study arms

  • Active comparator
    Stratum 1

    Stage I favorable histology (FH) Wilms' tumor, under 24 months of age, and tumor weight less than 550 g: After conventional surgery (nephrectomy), patients receive regimen EE-4A comprising dactinomycin (DACT) IV weekly on weeks 0, 3, 6, 9, 12, 15, and 18 and vincristine sulfate (VCR) IV weekly on weeks 1-10, 12, 15, and 18.

    Biological: dactinomycin · Drug: vincristine sulfate · Procedure: conventional surgery

  • Active comparator
    Stratum 2

    Stage I FH Wilms' tumor and age 24 months and over or tumor weight at least 550 g; stage I focal anaplastic (FA) or diffuse anaplastic (DA) Wilms' tumor: Patients receive regimen EE-4A comprising dactinomycin (DACT) IV weekly on weeks 0, 3, 6, 9, 12, 15, and 18 and vincristine sulfate (VCR) IV weekly on weeks 1-10, 12, 15, and 18.

    Biological: dactinomycin · Drug: vincristine sulfate

  • Active comparator
    Stratum 3

    Stage II FH Wilms' tumor: Patients receive regimen EE-4A comprising dactinomycin (DACT) IV weekly on weeks 0, 3, 6, 9, 12, 15, and 18 and vincristine sulfate (VCR) IV weekly on weeks 1-10, 12, 15, and 18.

    Biological: dactinomycin · Drug: vincristine sulfate

  • Active comparator
    Stratum 4

    Stage III FH Wilms' tumor; stage II or III FA Wilms' tumor: After conventional surgery (nephrectomy), patients receive regimen DD-4A comprising dactinomycin DACT IV weekly on weeks 0, 6, 12, 18, and 24; doxorubicin hydrochloride IV weekly on weeks 3, 9, 15, and 21; and vincristine sulfate VCR IV weekly on weeks 1-10, 12, 15, 18, 21, and 24. Patients also undergo abdominal radiation therapy.

    Biological: dactinomycin · Drug: doxorubicin hydrochloride · Drug: vincristine sulfate · Procedure: conventional surgery · Radiation: radiation therapy

  • Active comparator
    Stratum 5

    Stage IV FH or FA Wilms' tumor: patients receive regimen DD-4A comprising dactinomycin DACT IV weekly on weeks 0, 6, 12, 18, and 24; doxorubicin hydrochloride IV weekly on weeks 3, 9, 15, and 21; and vincristine sulfate VCR IV weekly on weeks 1-10, 12, 15, 18, 21, and 24. Patients also undergo abdominal radiation therapy, and whole lung radiation therapy (at the discretion of the investigator).

    Biological: dactinomycin · Drug: doxorubicin hydrochloride · Drug: vincristine sulfate

  • Active comparator
    Stratum 6

    Stage V FH, FA, or DA Wilms' tumor: After bilateral conventional surgery (biopsy), patients with FH receive chemotherapy as in stratum 1 (dactinomycin IV weeks 0, 3, 6, 9, 12, 15, and 18 and vincristine sulfate IV weeks 1-10, 12, 15, and 18) or 4 (dactinomycin IV weeks 0, 6, 12, 18, and 24; doxorubicin hydrochloride IV weeks 3, 9, 15, and 21; and vincristine sulfate VCR IV weeks 1-10, 12, 15, 18, 21, and 24). Patients with FA or DA receive chemotherapy as in stratum 7 (vincristine sulfate VCR IV weeks 1, 2, 4-8, 10-13, 18, and 24; cyclophosphamide sulfate (CTX) IV over 1 hour on days 1-3 of weeks 6, 12, 18, and 24 and on days 1-5 of weeks 3, 9, 15, and 21; doxorubicin hydrochloride IV (beginning after CTX infusion) weeks 0, 6, 12, 18, and 24; and etoposide (VP-16) IV over 1 hour (beginning after CTX infusion) on days 1-5 of weeks 3, 9, 15, and 21. Filgrastim (G-CSF) is administered subcutaneously (SC) beginning 24 hours after completion of chemotherapy.

    Biological: dactinomycin · Biological: filgrastim · Drug: cyclophosphamide · Drug: doxorubicin hydrochloride · Drug: etoposide · Drug: vincristine sulfate · Procedure: conventional surgery

  • Active comparator
    Stratum 7

    Stages I-IV clear cell sarcoma): After conventional surgery (nephrectomy), patients receive vincristine sulfate VCR IV weekly on weeks 1, 2, 4-8, 10-13, 18, and 24; cyclophosphamide sulfate (CTX) IV over 1 hour on days 1-3 of weeks 6, 12, 18, and 24 and on days 1-5 of weeks 3, 9, 15, and 21; doxorubicin hydrochloride IV (beginning after CTX infusion) weekly on weeks 0, 6, 12, 18, and 24; and etoposide (VP-16) IV over 1 hour (beginning after CTX infusion) on days 1-5 of weeks 3, 9, 15, and 21. Filgrastim (G-CSF) is administered subcutaneously (SC) beginning 24 hours after completion of chemotherapy and continuing until blood counts recover. Patients also undergo abdominal radiotherapy and whole lung radiotherapy (if pulmonary metastases are present).

    Biological: filgrastim · Drug: doxorubicin hydrochloride · Drug: etoposide · Procedure: conventional surgery · Radiation: radiation therapy

  • Active comparator
    Stratum 8

    Stages II-IV DA Wilms' tumor: After conventional surgery (nephrectomy), Patients receive treatment as in stratum 7 (patients receive vincristine sulfate VCR IV weekly on weeks 1, 2, 4-8, 10-13, 18, and 24; cyclophosphamide sulfate (CTX) IV over 1 hour on days 1-3 of weeks 6, 12, 18, and 24 and on days 1-5 of weeks 3, 9, 15, and 21; doxorubicin hydrochloride IV (beginning after CTX infusion) weekly on weeks 0, 6, 12, 18, and 24; and etoposide (VP-16) IV over 1 hour (beginning after CTX infusion) on days 1-5 of weeks 3, 9, 15, and 21. Filgrastim (G-CSF) is administered subcutaneously (SC) beginning 24 hours after completion of chemotherapy and continuing until blood counts recover. Patients also undergo abdominal radiotherapy and whole lung radiotherapy (if pulmonary metastases are present).

    Biological: filgrastim · Drug: cyclophosphamide · Drug: doxorubicin hydrochloride · Drug: etoposide · Drug: vincristine sulfate · Procedure: conventional surgery · Radiation: radiation therapy

  • Active comparator
    Stratum 9

    Stages I-IV rhabdoid tumor: After conventional surgery (nephrectomy), patients receive carboplatin IV on days 1-2 and VP-16 IV over 1 hour (beginning after carboplatin infusion) on days 1-3 of weeks 0, 3, 9, 12, 18, and 21 and CTX IV over 1 hour on days 1-5 of weeks 6, 15, and 24. Filgrastim G-CSF is administered as on stratum 7. Patients also undergo radiation therapy. After completion of chemotherapy, patients undergo second-look conventional surgery (laparotomy) and conventional surgery (partial nephrectomy or wedge excision if feasible). After conventional surgery (second-look surgery), patients without persistent or residual disease resume chemotherapy.

    Biological: filgrastim · Drug: etoposide · Procedure: conventional surgery · Radiation: radiation therapy

Interventions

  • Biologicaldactinomycin
  • Biologicalfilgrastim
  • Drugcyclophosphamide
  • Drugdoxorubicin hydrochloride

    Source and Pharmacology: An anthracycline antibiotic isolated from cultures of Streptomyces peucetius. Binds to DNA and inhibits nucleic acid synthesis, with its major lethal effect occurring during the S phase of the cell cycle. Has some topoisomerase II inhibitory activity. Since it is primarily excreted by the liver, any liver impairment may enhance toxicity. 40% to 50% is excreted in the bile; \<5% in the urine. The drug has a very short initial t½ of \<20 minutes and a terminal t½ of 17 hours. Animal studies indicate cytotoxic levels persist in tissue for as long as 24 hours.

    Also known as: NSC #123127, (Adriamycin)

  • Drugetoposide
  • Drugvincristine sulfate
  • Procedureconventional surgery
  • Radiationradiation therapy
06

What researchers measure

Primary outcomes

  1. Progression free survival

07

Study locations

235 sites
  • University of Alabama at Birmingham Comprehensive Cancer Center
    Birmingham, Alabama 35233, United States
  • University of South Alabama Medical Center
    Mobile, Alabama 36604, United States
  • Phoenix Children's Hospital
    Phoenix, Arizona 85016-7710, United States
  • Arizona Cancer Center
    Tucson, Arizona 85724, United States
  • University of Arkansas for Medical Sciences
    Little Rock, Arkansas 72205, United States
  • Southern California Permanente Medical Group
    Downey, California 90242, United States
  • City of Hope Comprehensive Cancer Center
    Duarte, California 91010-3000, United States
  • Rebecca and John Moores UCSD Cancer Center
    La Jolla, California 92093-0658, United States
  • Loma Linda University Medical Center
    Loma Linda, California 92354, United States
  • Jonathan Jaques Children's Cancer Center
    Long Beach, California 90801-1428, United States
  • Children's Hospital Los Angeles
    Los Angeles, California 90027-0700, United States
  • Cedars-Sinai Medical Center
    Los Angeles, California 90048, United States
  • Jonsson Comprehensive Cancer Center, UCLA
    Los Angeles, California 90095-1781, United States
  • Children's Hospital Central California
    Madera, California 93638-8762, United States
  • Children's Hospital of Oakland
    Oakland, California 94609-1809, United States
  • Chao Family Comprehensive Cancer Center
    Orange, California 92868, United States
  • Children's Hospital of Orange County
    Orange, California 92868, United States
  • Lucile Packard Children's Hospital at Stanford
    Palo Alto, California 94304, United States
  • Sutter Cancer Center
    Sacramento, California 95816, United States
  • University of California Davis Medical Center
    Sacramento, California 95817, United States
  • Kaiser Permanente Medical Center/Kaiser Foundation Hospital - San Diego
    San Diego, California 92120, United States
  • Children's Hospital San Diego
    San Diego, California 92123-4282, United States
  • Kaiser Permanente Medical Center - San Francisco Geary Campus
    San Francisco, California 94115, United States
  • UCSF Comprehensive Cancer Center
    San Francisco, California 94143-0128, United States
  • Santa Barbara Cottage Hospital
    Santa Barbara, California 93102, United States
  • Kaiser Permanente Medical Center - Santa Clara
    Santa Clara, California 95051-5386, United States
  • David Grant Medical Center
    Travis Air Force Base, California 94535, United States
  • Children's Hospital of Denver
    Denver, Colorado 80218-1088, United States
  • Childhood Hematology/Oncology Associates
    Denver, Colorado 80218, United States
  • Presbyterian-St Luke's Medical Center
    Denver, Colorado 80218, United States
  • University of Connecticut Health Center
    Farmington, Connecticut 06360-7106, United States
  • Yale Comprehensive Cancer Center
    New Haven, Connecticut 06520-8028, United States
  • Alfred I. Dupont Institute
    Wilmington, Delaware 19899, United States
  • Lombardi Cancer Center
    Washington, District of Columbia 20007, United States
  • Children's National Medical Center
    Washington, District of Columbia 20010-2970, United States
  • Walter Reed Army Medical Center
    Washington, District of Columbia 20307-5000, United States
  • Broward General Medical Center
    Fort Lauderdale, Florida 33316, United States
  • Children's Hospital of Southwest Florida
    Fort Myers, Florida 33908, United States
  • Shands Hospital and Clinics, University of Florida
    Gainesville, Florida 32610-100277, United States
  • Joe DiMaggio Children's Hospital at Memorial
    Hollywood, Florida 33021, United States
  • Nemours Children's Clinic
    Jacksonville, Florida 32207, United States
  • University of Miami-Jackson Memorial Hospital
    Miami, Florida 33136, United States
  • Miami Children's Hospital
    Miami, Florida 33155-4069, United States
  • Baptist Hospital of Miami
    Miami, Florida 33176-2197, United States
  • Florida Hospital Cancer Institute
    Orlando, Florida 32803, United States
  • Nemours Children's Clinic-Orlando
    Orlando, Florida 32806, United States
  • Sacred Heart Children's Hospital
    Pensacola, Florida 32504, United States
  • All Children's Hospital
    Saint Petersburg, Florida 33701, United States
  • Tampa Children's Hospital
    Tampa, Florida 33677-4227, United States
  • St. Mary's Hospital
    West Palm Beach, Florida 33407, United States
  • Emory University Hospital - Atlanta
    Atlanta, Georgia 30322, United States
  • Children's Healthcare of Atlanta - Scottish Rite
    Atlanta, Georgia 30342, United States
  • Medical College of Georgia Comprehensive Cancer Center
    Augusta, Georgia 30912-4000, United States
  • Medical Center of Central Georgia
    Macon, Georgia 31201, United States
  • Memorial Health University Medical Center, Inc.
    Savannah, Georgia 31403-3089, United States
  • Cancer Research Center of Hawaii
    Honolulu, Hawaii 96813, United States
  • MBCCOP - Hawaii
    Honolulu, Hawaii 96813, United States
  • Tripler Army Medical Center
    Honolulu, Hawaii 96859-5000, United States
  • Mountain States Tumor Institute
    Boise, Idaho 83712, United States
  • University of Chicago Cancer Research Center
    Chicago, Illinois 60601, United States
  • Rush-Presbyterian-St. Luke's Medical Center
    Chicago, Illinois 60612, United States
  • University of Illinois at Chicago
    Chicago, Illinois 60612, United States
  • Children's Memorial Hospital - Chicago
    Chicago, Illinois 60614, United States
  • Hope Children's Hospital
    Oak Lawn, Illinois 60453, United States
  • Lutheran General Hospital
    Park Ridge, Illinois 60068-1174, United States
  • Saint Jude Midwest Affiliate
    Peoria, Illinois 61637, United States
  • Southern Illinois University School of Medicine
    Springfield, Illinois 62794-9658, United States
  • Indiana University Cancer Center
    Indianapolis, Indiana 46202-5289, United States
  • St. Vincent Hospital and Health Care Center
    Indianapolis, Indiana 46260, United States
  • Raymond Blank Memorial Hospital for Children
    Des Moines, Iowa 50308, United States
  • John Stoddard Cancer Center
    Des Moines, Iowa 50309, United States
  • Holden Comprehensive Cancer Center
    Iowa City, Iowa 52242-1009, United States
  • Wesley Medical Center
    Wichita, Kansas 67214, United States
  • Albert B. Chandler Medical Center, University of Kentucky
    Lexington, Kentucky 40536-0284, United States
  • Kosair Children's Hospital
    Louisville, Kentucky 40202-3830, United States
  • Tulane University School of Medicine
    New Orleans, Louisiana 70112, United States
  • Children's Hospital of New Orleans
    New Orleans, Louisiana 70118, United States
  • Ochsner Clinic
    New Orleans, Louisiana 70121, United States
  • Eastern Maine Medical Center
    Bangor, Maine 04401, United States
  • Maine Children's Cancer Program
    Scarborough, Maine 04074, United States
  • Marlene and Stewart Greenebaum Cancer Center, University of Maryland
    Baltimore, Maryland 21201-1595, United States
  • Sinai Hospital of Baltimore
    Baltimore, Maryland 21225, United States
  • Sidney Kimmel Comprehensive Cancer Center at Johns Hopkins
    Baltimore, Maryland 21231-2410, United States
  • Floating Hospital for Children
    Boston, Massachusetts 02111, United States
  • Dana-Farber Cancer Institute
    Boston, Massachusetts 02115, United States
  • Baystate Medical Center
    Springfield, Massachusetts 01107, United States
  • University of Massachusetts Memorial Medical Center - University Campus
    Worcester, Massachusetts 01655, United States
  • Mott Children's Hospital
    Ann Arbor, Michigan 48109-0914, United States
  • Children's Hospital of Michigan
    Detroit, Michigan 48201, United States
  • Henry Ford Hospital
    Detroit, Michigan 48202, United States
  • St. John Hospital and Medical Center
    Detroit, Michigan 48236, United States
  • Michigan State University
    East Lansing, Michigan 48824, United States
  • Hurley Medical Center
    Flint, Michigan 48503, United States
  • Spectrum Health and DeVos Children's Hospital
    Grand Rapids, Michigan 49503, United States
  • Bronson Methodist Hospital
    Kalamazoo, Michigan 49007, United States
  • CCOP - Beaumont
    Royal Oak, Michigan 48073-6769, United States
  • William Beaumont Hospital
    Royal Oak, Michigan 48073-6769, United States
  • St. Mary's/Duluth Clinic Cancer Center
    Duluth, Minnesota 55805-1983, United States
  • Children's Hospitals and Clinics - Minneapolis
    Minneapolis, Minnesota 55404, United States
  • Mayo Clinic Cancer Center
    Rochester, Minnesota 55905, United States

Showing the first 100 of 235 sites across 7 countries.

08

References and documents

Publications

  • Grundy PE, Green DM, Dirks AC, Berendt AE, Breslow NE, Anderson JR, Dome JS. Clinical significance of pulmonary nodules detected by CT and Not CXR in patients treated for favorable histology Wilms tumor on national Wilms tumor studies-4 and -5: a report from the Children's Oncology Group. Pediatr Blood Cancer. 2012 Oct;59(4):631-5. doi: 10.1002/pbc.24123. Epub 2012 Mar 15. PubMed 22422736 ↗
  • Kieran K, Anderson JR, Dome JS, Ehrlich PF, Ritchey ML, Shamberger RC, Perlman EJ, Green DM, Davidoff AM. Lymph node involvement in Wilms tumor: results from National Wilms Tumor Studies 4 and 5. J Pediatr Surg. 2012 Apr;47(4):700-6. doi: 10.1016/j.jpedsurg.2011.08.017. PubMed 22498384 ↗
  • Lange J, Peterson SM, Takashima JR, Grigoriev Y, Ritchey ML, Shamberger RC, Beckwith JB, Perlman E, Green DM, Breslow NE. Risk factors for end stage renal disease in non-WT1-syndromic Wilms tumor. J Urol. 2011 Aug;186(2):378-86. doi: 10.1016/j.juro.2011.03.110. Epub 2011 Jun 17. PubMed 21683387 ↗
  • Kalapurakal JA, Green DM, Haase G, Anderson JR, Dome JS, Grundy PE. Outcomes of children with favorable histology wilms tumor and peritoneal implants treated in National Wilms Tumor Studies-4 and -5. Int J Radiat Oncol Biol Phys. 2010 Jun 1;77(2):554-8. doi: 10.1016/j.ijrobp.2009.04.081. PubMed 20457352 ↗
  • Ehrlich PF, Ferrer FA, Ritchey ML, Anderson JR, Green DM, Grundy PE, Dome JS, Kalapurakal JA, Perlman EJ, Shamberger RC. Hepatic metastasis at diagnosis in patients with Wilms tumor is not an independent adverse prognostic factor for stage IV Wilms tumor: a report from the Children's Oncology Group/National Wilms Tumor Study Group. Ann Surg. 2009 Oct;250(4):642-8. doi: 10.1097/SLA.0b013e3181b76f20. PubMed 19730241 ↗
  • Ritchey M, Daley S, Shamberger RC, Ehrlich P, Hamilton T, Haase G, Sawin R; National Wilms' Tumor Study Group. Ureteral extension in Wilms' tumor: a report from the National Wilms' Tumor Study Group (NWTSG). J Pediatr Surg. 2008 Sep;43(9):1625-9. doi: 10.1016/j.jpedsurg.2008.01.067. PubMed 18778996 ↗
  • van den Heuvel-Eibrink MM, Grundy P, Graf N, Pritchard-Jones K, Bergeron C, Patte C, van Tinteren H, Rey A, Langford C, Anderson JR, de Kraker J. Characteristics and survival of 750 children diagnosed with a renal tumor in the first seven months of life: A collaborative study by the SIOP/GPOH/SFOP, NWTSG, and UKCCSG Wilms tumor study groups. Pediatr Blood Cancer. 2008 Jun;50(6):1130-4. doi: 10.1002/pbc.21389. PubMed 18095319 ↗
  • Breslow NE, Beckwith JB, Perlman EJ, Reeve AE. Age distributions, birth weights, nephrogenic rests, and heterogeneity in the pathogenesis of Wilms tumor. Pediatr Blood Cancer. 2006 Sep;47(3):260-7. doi: 10.1002/pbc.20891. PubMed 16700047 ↗
  • Kalapurakal JA, Nan B, Norkool P, Coppes M, Perlman E, Beckwith B, Ritchey M, Breslow N, Grundy P, D'angio GJ, Green DM, Thomas PR. Treatment outcomes in adults with favorable histologic type Wilms tumor-an update from the National Wilms Tumor Study Group. Int J Radiat Oncol Biol Phys. 2004 Dec 1;60(5):1379-84. doi: 10.1016/j.ijrobp.2004.05.057. PubMed 15590168 ↗
  • Gadd S, Huff V, Huang CC, Ruteshouser EC, Dome JS, Grundy PE, Breslow N, Jennings L, Green DM, Beckwith JB, Perlman EJ. Clinically relevant subsets identified by gene expression patterns support a revised ontogenic model of Wilms tumor: a Children's Oncology Group Study. Neoplasia. 2012 Aug;14(8):742-56. doi: 10.1593/neo.12714. PubMed 22952427 ↗
  • Perlman EJ, Grundy PE, Anderson JR, Jennings LJ, Green DM, Dome JS, Shamberger RC, Ruteshouser EC, Huff V. WT1 mutation and 11P15 loss of heterozygosity predict relapse in very low-risk wilms tumors treated with surgery alone: a children's oncology group study. J Clin Oncol. 2011 Feb 20;29(6):698-703. doi: 10.1200/JCO.2010.31.5192. Epub 2010 Dec 28. PubMed 21189373 ↗
  • Fernandez CV, Anderson J, Breslow NE, Dome JS, Grundy PE, Perlman EJ, Green DM; National Wilms Tumor Study Group/Children's Oncology Group. Anthropomorphic measurements and event-free survival in patients with favorable histology Wilms tumor: a report from the Children's Oncology Group. Pediatr Blood Cancer. 2009 Feb;52(2):254-8. doi: 10.1002/pbc.21809. PubMed 18989885 ↗
  • Huang CC, Gadd S, Breslow N, Cutcliffe C, Sredni ST, Helenowski IB, Dome JS, Grundy PE, Green DM, Fritsch MK, Perlman EJ. Predicting relapse in favorable histology Wilms tumor using gene expression analysis: a report from the Renal Tumor Committee of the Children's Oncology Group. Clin Cancer Res. 2009 Mar 1;15(5):1770-8. doi: 10.1158/1078-0432.CCR-08-1030. Epub 2009 Feb 10. PubMed 19208794 ↗
  • Malogolowkin M, Cotton CA, Green DM, Breslow NE, Perlman E, Miser J, Ritchey ML, Thomas PR, Grundy PE, D'Angio GJ, Beckwith JB, Shamberger RC, Haase GM, Donaldson M, Weetman R, Coppes MJ, Shearer P, Coccia P, Kletzel M, Macklis R, Tomlinson G, Huff V, Newbury R, Weeks D; National Wilms Tumor Study Group. Treatment of Wilms tumor relapsing after initial treatment with vincristine, actinomycin D, and doxorubicin. A report from the National Wilms Tumor Study Group. Pediatr Blood Cancer. 2008 Feb;50(2):236-41. doi: 10.1002/pbc.21267. PubMed 17539021 ↗
  • Dome JS, Cotton CA, Perlman EJ, Breslow NE, Kalapurakal JA, Ritchey ML, Grundy PE, Malogolowkin M, Beckwith JB, Shamberger RC, Haase GM, Coppes MJ, Coccia P, Kletzel M, Weetman RM, Donaldson M, Macklis RM, Green DM. Treatment of anaplastic histology Wilms' tumor: results from the fifth National Wilms' Tumor Study. J Clin Oncol. 2006 May 20;24(15):2352-8. doi: 10.1200/JCO.2005.04.7852. PubMed 16710034 ↗
  • Ehrlich PF, Hamilton TE, Grundy P, Ritchey M, Haase G, Shamberger RC; National Wilms' Tumor Study Group (National Wilms' Tumor Study 5). The value of surgery in directing therapy for patients with Wilms' tumor with pulmonary disease. A report from the National Wilms' Tumor Study Group (National Wilms' Tumor Study 5). J Pediatr Surg. 2006 Jan;41(1):162-7; discussion 162-7. doi: 10.1016/j.jpedsurg.2005.10.020. PubMed 16410127 ↗
  • Seibel NL, Sun J, Anderson JR, et al.: Outcome of clear cell sarcoma of the kidney (CCSK) treated on the National Wilms Tumor Study-5 (NWTS). [Abstract] J Clin Oncol 24 (Suppl 18): A-9000, 502s, 2006.
  • Dome JS, Bockhold CA, Li SM, Baker SD, Green DM, Perlman EJ, Hill DA, Breslow NE. High telomerase RNA expression level is an adverse prognostic factor for favorable-histology Wilms' tumor. J Clin Oncol. 2005 Dec 20;23(36):9138-45. doi: 10.1200/JCO.2005.00.562. Epub 2005 Sep 19. PubMed 16172460 ↗
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  • Grundy PE, Breslow NE, Li S, Perlman E, Beckwith JB, Ritchey ML, Shamberger RC, Haase GM, D'Angio GJ, Donaldson M, Coppes MJ, Malogolowkin M, Shearer P, Thomas PR, Macklis R, Tomlinson G, Huff V, Green DM; National Wilms Tumor Study Group. Loss of heterozygosity for chromosomes 1p and 16q is an adverse prognostic factor in favorable-histology Wilms tumor: a report from the National Wilms Tumor Study Group. J Clin Oncol. 2005 Oct 10;23(29):7312-21. doi: 10.1200/JCO.2005.01.2799. Epub 2005 Aug 29. PubMed 16129848 ↗
  • Miller MA, Karacay B, Breslow NE, Li S, O'Dorisio MS, Grundy PE, Sandler AD. Prognostic value of quantifying apoptosis factor expression in favorable histology wilms tumors. J Pediatr Hematol Oncol. 2005 Jan;27(1):11-4. doi: 10.1097/01.mph.0000149961.71266.27. PubMed 15654272 ↗
09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Feb 25, 2021, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
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Registry details

Key details

Study ID
NCT00002611
Lead sponsor
Children's Oncology Group
Collaborators
National Cancer Institute (NCI)
Responsible party
Sponsor
First posted
Jan 27, 2003
Start date
Jul 1995
Primary completion
Jun 2002
Completion
Aug 2003
Last update
Feb 25, 2021

Study contacts

Daniel M. Green, MD
study chair · Roswell Park Cancer Institute

Oversight

Data monitoring committee
Yes
View the source record on ClinicalTrials.gov ↗

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