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Biomedical subjects

Lisa J Martin

Publications and source records attributed to Lisa J Martin.

2 recordsLinked to original sources

Genetic variation in SLCO1B1 is associated with methotrexate intolerance symptoms in juvenile idiopathic arthritis patients.

Methotrexate (MTX) treatment of juvenile idiopathic arthritis (JIA) is complicated by severe intolerance in approximately 30% of patients. MTX intolerance typically presents as nausea (anticipatory and postdose), vomiting, and behavioral symptoms. Although genetic variants in SLCO1B1 have been associated with MTX toxicity in retrospective studies of inflammatory bowel disease, prospective evaluation of this relationship in JIA patients is lacking. This study examined SLCO1B1-MTX intolerance associations accounting for clinical covariates in a prospective observational cohort of patients receiving standard weekly MTX doses (5-25&#x2005;mg/m2). We performed a zero-inflated Poisson analysis using forward stepwise inclusion of clinical covariates followed by SLCO1B1 alleles. Among 217 JIA patients who completed the MTX Intolerance Severity Score (MISS) survey at 6&#x2005;&#xb1;&#x2005;2 months post-MTX initiation, the cohort was predominantly female (69.1%), White (76.5%), and received supplementation with folic acid (70.5%). Over 30% of patients met the threshold for MTX intolerance (MISS&#x2005;&#x2265;&#x2005;6), and 62.7% of patients reported any MTX intolerance symptoms (MISS&#x2005;>&#x2005;0). The SLCO1B1*37 allele was associated with lower odds of MISS&#x2005;>&#x2005;0 (odds ratio&#x2005;=&#x2005;0.60, P&#x2005;=&#x2005;0.046) and a lower reported MISS score (incidence rate ratio&#x2005;=&#x2005;0.74, P&#x2005;<&#x2005;0.001) among individuals with non-zero intolerance, suggesting protection from MTX intolerance symptoms. These associations were consistent in sensitivity analyses stratified by folic acid supplementation. Further validation of these findings is needed to support future pharmacogenetic-guided MTX dosing strategies, including evaluation of other SLCO1B1 alleles.

individualized medicine

Sequencing and health data resource of children of African ancestry.

PURPOSE: Individuals who self-report as Black or African American are historically underrepresented in genome-wide studies of disease risk, a disparity particularly evident in pediatric disease research. To address this gap, Cincinnati Children's Hospital Medical Center (CCHMC) established a biorepository and developed a comprehensive DNA sequencing resource including 15,684 individuals who self-identified as African American or Black and received care at CCHMC. METHODS: Participants were enrolled through the CCHMC Discover Together Biobank and sequenced. Admixture analyses confirmed the genetic ancestry of the cohort, which was then linked to electronic medical records. RESULTS: Genome-wide genotypes from common variants accompanied by medical record-sourced data are available through the Genomic Information Commons. This data set performs well in genetic studies. Specifically, we replicated known associations in sickle-cell disorder (HBB, HGNC:4827, P = 4.05 &#xd7; 10-148), anxiety (PLAAT3, HGNC:17825, P = 6.93 &#xd7; 10-9), and asthma (PCDH15, HGNC:14674, P = 5.6 &#xd7; 10-10), while also identifying novel loci associated with anxiety, asthma, and asthma severity. CONCLUSION: We present the acquisition and quality of genetic and disease-associated data and present an analytical framework for using this resource. In partnership with a community advisory council, we have codeveloped a valuable framework for data use and future research.

Adolescent