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Published on: December 31, 2017
Evaluation of mailed pediatric buccal cytobrushes for use in a case-control study of birth defects
Margaret L Gallagher1, Cynthia Sturchio, Ashley Smith
1National Center for Environmental Health, Centers for Disease Control and Prevention, Atlanta, Georgia, USA. MGallagher1@cdc.gov
Insights
Air-drying buccal swabs significantly improves DNA yield and quality in infants. This method enhances DNA collection for pediatric studies, ensuring reliable genotyping even with strict quality controls.
Area of Science:
- Pediatric genetics
- Molecular biology
- Epidemiology
Background:
- Buccal cell collection is a convenient DNA source.
- Limited research exists on pediatric DNA quality from buccal swabs.
- Infant DNA quality is crucial for population-based studies.
Purpose of the Study:
- To evaluate the impact of a modified cytobrush method on infant buccal DNA yield and quality.
- To compare standard versus air-drying collection protocols.
- To assess DNA suitability for genotyping in pediatric populations.
Main Methods:
- Collected buccal cytobrushes from infants, mothers, and fathers using standard and air-drying methods.
- Assessed DNA yield via quantitative PCR.
- Evaluated DNA quality using short tandem repeat (STR) genotyping and single nucleotide polymorphism (SNP) analysis.
Main Results:
- Air-dried infant samples yielded significantly more DNA (1300 ng vs. 60 ng) and had higher STR completion rates (99.5% vs. 59.5%).
- Both methods produced high genotype completion rates (99-100%) when quality controls were met.
- Whole genome amplification showed over twofold higher DNA yield for air-dried specimens.
Conclusions:
- Incorporating air-drying into buccal cell collection enhances infant DNA yield and quality.
- Both standard and air-dried methods yield suitable DNA for genotyping with stringent quality control.
- Findings support improved DNA collection for pediatric birth defect and adverse outcome studies.
Background:
Buccal cell collection is a convenient DNA collection method; however, little attention has been given to the quality of DNA obtained from pediatric populations. The purpose of this study was to determine the effect of a modified cytobrush collection method on the yield and quality of infant buccal DNA collected as part of a population-based case-control study of birth defects. METHODS Cytobrushes were collected from infants, mothers, and fathers using a standard collection method in 1997 to 2003 and a modified protocol that allows air-drying of the cytobrushes after collection from 2003 to the present. Yield and quality of DNA from 1057 cytobrushes was assessed by quantitative PCR and short tandem repeat (STR) genotyping, respectively. RESULTS Air-dried cytobrushes from infants had higher median DNA yields (1300 ng) and STR completion rates (99.5%) than standard collection method cytobrushes (60 ng and 59.5%, respectively). A subset of DNA aliquots was genotyped for six single nucleotide polymorphisms (SNPs). Aliquots from both collection methods that passed the quality protocol (DNA concentration >1 ng/μl, and successful amplification of ≥1 STR) had high genotype completion rates (99-100%). The median DNA yield following whole genome amplification was more than twofold higher for air-dried than standard collection specimens (p < 0.001). CONCLUSION Yield and quality of buccal DNA collected from infants are improved by using a method that incorporates air-drying; however, DNA collected by both methods is suitable for genotyping if stringent quality control procedures are instituted. These findings may be helpful for future epidemiologic studies of birth defects and other adverse pediatric outcomes.
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