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Published on: May 14, 2012
The Greater Cincinnati Pediatric Clinic Repository: A Novel Framework for Childhood Asthma and Allergy Research
Insights
The Greater Cincinnati Pediatric Clinic Repository (GCPCR) was created to study diverse allergic diseases in children. This biorepository collects clinical data and biospecimens to enable research into childhood allergies.
Area of Science:
- Pediatric Allergy and Immunology
- Clinical Research Infrastructure
- Biorepository Science
Background:
- Allergic disorders pose a significant global health challenge.
- Heterogeneity in presentation and natural history complicates allergy research.
- A lack of comprehensive biorepositories hinders subphenotype delineation.
Purpose of the Study:
- To establish a biorepository linking clinical and epidemiologic data with biospecimens for allergic disease research.
- To accurately define subphenotypes of allergic diseases in a pediatric population.
- To facilitate longitudinal studies of childhood allergic conditions.
Main Methods:
- The Greater Cincinnati Pediatric Clinic Repository (GCPCR) was developed, integrating clinical data and biospecimens.
- Longitudinal data collection from children with allergic disorders and healthy controls.
- Collection of DNA from all participants and additional biospecimens from a subset.
Main Results:
- The GCPCR includes 6,317 participants, primarily Caucasian and African American.
- 93% of participants have banked DNA, supporting large-scale genetic studies.
- The repository facilitates adequately powered studies on childhood allergic diseases.
Conclusions:
- The GCPCR is a valuable, continuously refined resource for rigorous clinical and biological data.
- The development of similar disease-specific repositories is crucial for multi-population studies.
- Standardized data elements are essential for comprehensive patient phenotyping across repositories.
Abstract:
BACKGROUND: Allergic disorders, including asthma, allergic rhinitis, atopic dermatitis, eosinophilic esophagitis, and food allergy, are a major global health burden. The study and management of allergic disorders is complicated by the considerable heterogeneity in both the presentation and natural history of these disorders. Biorepositories serve as an excellent source of data and biospecimens for delineating subphenotypes of allergic disorders, but such resources are lacking. METHODS: In order to define subphenotypes of allergic disease accurately, we established an infrastructure to link and efficiently utilize clinical and epidemiologic data with biospecimens into a single biorepository called the Greater Cincinnati Pediatric Clinic Repository (GCPCR). Children with allergic disorders as well as healthy controls are followed longitudinally at hospital clinic, emergency department, and inpatient visits. Subjects' asthma, allergy, and skin symptoms; past medical, family, social, diet, and environmental histories; physical activity; medication adherence; perceived quality of life; and demographics are ascertained. DNA is collected from all participants, and other biospecimens such as blood, hair, and nasal epithelial cells are collected on a subset. RESULTS: To date, the GCPCR has 6,317 predominantly Caucasian and African American participants, and 93% have banked DNA. This large sample size supports adequately powered genetic, epidemiologic, environmental, and health disparities studies of childhood allergic diseases. CONCLUSIONS: The GCPCR is a unique biorepository that is continuously evaluated and refined to achieve and maintain rigorous clinical phenotype and biological data. Development of similar disease-specific repositories using common data elements is necessary to enable studies across multiple populations of comprehensively phenotyped patients.
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