RADIANT is a network of 14 clinical sites and several laboratories dedicated to the study of atypical diabetes. The objective of this study is to define new forms of diabetes and the unique mechanisms underlying these forms of atypical diabetes. The specific aims are to: 1. Identify and enroll individuals and families with undiagnosed rare and atypical forms of diabetes. 2. Determine the etiologic basis of the metabolic disorder among individuals and families with novel forms of rare and atypical diabetes. 3. Understand the pathophysiology of individuals and families with novel forms of rare and atypical forms of diabetes.
RADIANT has three distinct stages. Stage 1: Stage 1 participants will complete a consent form and a questionnaire to determine the potential for having atypical forms of diabetes. Participants identified as potentially atypical based on questionnaire responses will be asked to provide a blood sample to test for islet autoantibodies and complete additional questionnaires. The RADIANT Adjudication Committee, which is comprised of a team of experts in diabetes, will assess the data collected in Stage 1 and select and prioritize participants to proceed to Stage 2 and 3 for Whole Genome Sequencing (WGS) and other testing. Stage 2: Stage 2 of the study includes genetic screening for known forms of monogenic diabetes. Participants will consent for this stage of the study, complete a family history questionnaire, and have blood collected for DNA and RNA extraction, storage, and analysis. WGS will be performed on all DNA samples. If no pathogenic/likely pathogenic variant in a known monogenic diabetes gene that is thought to explain the participant's diabetes is identified by WGS, RNA Sequencing will be performed at Baylor College of Medicine. Stage 3: Stage 3 of the study includes deeper phenotyping. All participants who proceed to Stage 3 will visit a study clinic to consent and complete Stage 3 Standard procedures which include: an Oral Glucose Tolerance Test (OGTT), additional blood collection, a detailed physical exam, and additional questionnaires. Discovery Team Review: The work of the Discovery Team is expected to be an iterative process analyzing all data collected up to this point in the study to understand the significance of novel variants. In some instances, the Discovery Team may determine that enrollment of the Proband's family members is necessary. Family members with suspected atypical diabetes will follow the same study procedures as described above. Affected and unaffected family members may also be enrolled for Sanger Sequencing. The Discovery Team may also recommend additional optional procedures to better characterize the participant's form of diabetes.
Study Type
OBSERVATIONAL
Enrollment
2,000
University of Colorado- Denver
Aurora, Colorado, United States
RECRUITINGUniversity of Chicago
Chicago, Illinois, United States
RECRUITINGIndiana University
Indianapolis, Indiana, United States
RECRUITINGUniversity of Maryland
Baltimore, Maryland, United States
RECRUITINGMassachusetts General Hospital (MGH)
Boston, Massachusetts, United States
RECRUITINGUniversity of Michigan
Ann Arbor, Michigan, United States
RECRUITINGWashington University in St. Louis
St Louis, Missouri, United States
RECRUITINGSUNY Downstate Health Sciences University
Brooklyn, New York, United States
RECRUITINGColumbia University
New York, New York, United States
RECRUITINGUniversity of North Carolina at Chapel Hill
Chapel Hill, North Carolina, United States
RECRUITING...and 3 more locations
Phenotypic and genotypic characterization of previously unknown forms of diabetes using Whole Genome Sequencing (WGS), and deeper phenotyping methods
Deeper phenotyping methods include both clinical and laboratory assessments. Clinical data includes anthropometric and biometric data, medical histories, and standard questionnaires (ASA24, PROMIS, environmental exposures depression and anxiety). Laboratory data includes WGS, transcriptomics, metabolomics, mitochondrial sequencing, Oral Glucose Tolerance Test (OGTT), and Islet autoantibodies. Clustering methods will be used to define cohorts of similar diabetes genotypes and phenotypes based on this data.
Time frame: Through study completion, an average of 3 years.
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