Nephrotic Syndrome Study Network
Start Date
4/1/2010
Completion Date
12/31/2030
Summary
Minimal change disease (MCD), focal segmental glomerulosclerosis (FSGS), and Membranous nephropathy (MN), generate an enormous individual and societal financial burden, accounting for approximately 12% of prevalent end stage renal disease (ESRD) cases (2005) at an annual cost in the US of more than $3 billion. However, the clinical classification of these diseases is widely believed to be inadequate by the scientific community. Given the poor understanding of MCD/FSGS and MN biology, it is not surprising that the available therapies are imperfect. The therapies lack a clear biological basis, and as many families have experienced, they are often not beneficial, and in fact may be significantly toxic. Given these observations, it is essential that research be conducted that address these serious obstacles to effectively caring for patients. In response to a request for applications by the National Institutes of Health, Office of Rare Diseases (NIH, ORD) for the creation of Rare Disease Clinical Research Consortia, a number of affiliated universities joined together with The NephCure Foundation the NIDDK, the ORDR, and the University of Michigan in collaboration towards the establishment of a Nephrotic Syndrome (NS) Rare Diseases Clinical Research Consortium. Through this consortium the investigators hope to understand the fundamental biology of these rare diseases and aim to bank long-term observational data and corresponding biological specimens for researchers to access and further enrich.
Detailed Description
Idiopathic Nephrotic Syndrome (NS) is a rare disease syndrome responsible for approximately 12% of all causes of end-stage kidney disease (ESRD) and up to 20% of ESRD in children. Treatment strategies for Focal and Segmental Glomerulosclerosis (FSGS), Minimal Change Disease (MCD) and Membranous Nephropathy (MN), the major causes of NS, include high dose prolonged steroid therapy, cyclophosphamide, cyclosporine A, tacrolimus, mycophenolate mofetil and other immunosuppressive agents, which all carry significant side effects. Failure to obtain remission using the current treatment approaches frequently results in progression to ESRD with its associated costs, morbidities, and mortality. In the North American Pediatric Renal Trials and Collaborative Studies (NAPRTCS) registry, half of the pediatric patients with Steroid Resistant Nephrotic Syndrome required renal replacement therapy within two years of being enrolled in the disease registry. FSGS also has a high recurrence rate following kidney transplantation (30-40%) and is the most common recurrent disease leading to allograft loss. The prevailing classification of Nephrotic Syndrome categorizes patients into FSGS, MCD, and MN, if in the absence of other underlying causes, glomerular histology shows a specific histological pattern. This classification does not adequately predict the heterogeneous natural history of patients with FSGS, MCD, and MN. Major advances in understanding the pathogenesis of FSGS and MCD have come over the last ten years from the identification of several mutated genes responsible for causing Steroid Resistant Nephrotic Syndrome (SRNS) presenting with FSGS or MCD histopathology in humans and model organisms. These functionally distinct genetic disorders can present with indistinguishable FSGS lesions on histology confirming the presence of heterogeneous pathogenic mechanisms under the current histological diagnoses. The limited understanding of FSGS, MCD, and MN biology in humans has necessitated a descriptive classification system in which heterogeneous disorders are grouped together. This invariably consigns these heterogeneous patients to the same therapeutic approaches, which use blunt immunosuppressive drugs that lack a clear biological basis, are often not beneficial, and are complicated by significant toxicity. The foregoing shortcomings make a strong case that concerted and innovative investigational strategies combining basic science, translational, and clinical methods should be employed to study FSGS, MCD, and MN. It is for these reasons that the Nephrotic Syndrome Study Network is established to conduct clinical and translational research in patients with FSGS/MCD and MN.
Eligibility Criteria
Age Range: No minimum to 80 years
Interventions
Kidney Biopsy
Conditions
Locations
University of Southern California-Children's Hospital
Los Angeles, California 90227
United States
Stanford University School of Medicine
Palo Alto, California 94304
United States
University of California San Francisco Benioff Children's Hospitals
San Francisco, California 94158
United States
Lundquist Biomedical Research Institute at Harbor UCLA Medical Center
Torrance, California 90502
United States
Children's Hospital Colorado
Aurora, Colorado 80045
United States
University of Colorado Anschutz School of Medicine
Aurora, Colorado 80045
United States
University of Miami Miller School of Medicine
Miami, Florida 33136
United States
Emory University and Children's Healthcare of Atlanta
Atlanta, Georgia 30322
United States
John Stroger Cook County Hospital
Chicago, Illinois 60680
United States
University of Kansas Medical Center
Kansas City, Kansas 66160
United States
Johns Hopkins Medical Institute
Baltimore, Maryland 21287
United States
Kidney Disease Section, NIDDK, NIH
Bethesda, Maryland 20892
United States
CS Mott Children's Hospital, University of Michigan
Ann Arbor, Michigan 48109
United States
University of Michigan Medical Center
Ann Arbor, Michigan 48109
United States
Mayo Clinic
Rochester, Minnesota 55905
United States
Children's Mercy Hospital
Kansas City, Missouri 64108
United States
Washington University - St Louis
St Louis, Missouri 63110
United States
Cohen Children's Hospital
New Hyde Park, New York 11040
United States
New York University Medical Center
New York, New York 10010
United States
Bellevue Hospital
New York, New York 10016
United States
New York University Veterans Administration
New York, New York 10016
United States
Columbia University Medical Center
New York, New York 10032
United States
Montefiore Medical Center
The Bronx, New York 11040
United States
University of North Carolina at Chapel Hill
Chapel Hill, North Carolina 27599
United States
Atrium Health Levine Children's Hospital
Charlotte, North Carolina 28203
United States
Wake Forest School of Medicine
Winston-Salem, North Carolina 27157
United States
University Hospital Rainbow Babies & Children's Hospital
Cleveland, Ohio 44106
United States
MetroHealth Hospital at Case Western Medical Center
Cleveland, Ohio 44109
United States
Cleveland Clinic
Cleveland, Ohio 44195
United States
The Ohio State University Wexner Medical Center
Columbus, Ohio 43210
United States
Children's Hospital of Philadelphia
Philadelphia, Pennsylvania 19104
United States
University of Pennsylvania
Philadelphia, Pennsylvania 19104
United States
Temple University
Philadelphia, Pennsylvania 19140
United States
Medical University of South Carolina
Charleston, South Carolina 29425
United States
University of Texas-Southwestern
Dallas, Texas 75390
United States
Texas Children's Hospital - Baylor College of Medicine
Houston, Texas 77030
United States
Seattle Children's Hospital
Seattle, Washington 98145
United States
University of Washington
Seattle, Washington 98195
United States
Providence Medical Research Center
Spokane, Washington 99204
United States
York Central Hospital
Richmond Hill, Ontario L4C 4Z3
Canada
Scarborough Hospital
Scarborough Village, Ontario M1H 3G4
Canada
Credit Valley Hospital
Toronto, Ontario L5M 2N1
Canada
Sunnybrook Hospital
Toronto, Ontario M4N 3M5
Canada
University Health Network
Toronto, Ontario M5G2C4
Canada