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1.
Int J Obes (Lond) ; 42(3): 384-390, 2018 03.
Artigo em Inglês | MEDLINE | ID: mdl-29381148

RESUMO

OBJECTIVE: Body mass index (BMI) is commonly used to assess obesity, which is associated with numerous diseases and negative health outcomes. BMI has been shown to be a heritable, polygenic trait, with close to 100 loci previously identified and replicated in multiple populations. We aim to replicate known BMI loci and identify novel associations in a trans-ethnic study population. SUBJECTS: Using eligible participants from the Population Architecture using Genomics and Epidemiology consortium, we conducted a trans-ethnic meta-analysis of 102 514 African Americans, Hispanics, Asian/Native Hawaiian, Native Americans and European Americans. Participants were genotyped on over 200 000 SNPs on the Illumina Metabochip custom array, or imputed into the 1000 Genomes Project (Phase I). Linear regression of the natural log of BMI, adjusting for age, sex, study site (if applicable), and ancestry principal components, was conducted for each race/ethnicity within each study cohort. Race/ethnicity-specific, and combined meta-analyses used fixed-effects models. RESULTS: We replicated 15 of 21 BMI loci included on the Metabochip, and identified two novel BMI loci at 1q41 (rs2820436) and 2q31.1 (rs10930502) at the Metabochip-wide significance threshold (P<2.5 × 10-7). Bioinformatic functional investigation of SNPs at these loci suggests a possible impact on pathways that regulate metabolism and adipose tissue. CONCLUSION: Conducting studies in genetically diverse populations continues to be a valuable strategy for replicating known loci and uncovering novel BMI associations.


Assuntos
Índice de Massa Corporal , Grupos Raciais/genética , Grupos Raciais/estatística & dados numéricos , Estudo de Associação Genômica Ampla , Genômica , Humanos , Polimorfismo de Nucleotídeo Único/genética
2.
Clin Pharmacol Ther ; 92(1): 87-95, 2012 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-22588608

RESUMO

The promise of "personalized medicine" guided by an understanding of each individual's genome has been fostered by increasingly powerful and economical methods to acquire clinically relevant information. We describe the operational implementation of prospective genotyping linked to an advanced clinical decision-support system to guide individualized health care in a large academic health center. This approach to personalized medicine entails engagement between patient and health-care provider, identification of relevant genetic variations for implementation, assay reliability, point-of-care decision support, and necessary institutional investments. In one year, approximately 3,000 patients, most of whom were scheduled for cardiac catheterization, were genotyped on a multiplexed platform that included genotyping for CYP2C19 variants that modulate response to the widely used antiplatelet drug clopidogrel. These data are deposited into the electronic medical record (EMR), and point-of-care decision support is deployed when clopidogrel is prescribed for those with variant genotypes. The establishment of programs such as this is a first step toward implementing and evaluating strategies for personalized medicine.


Assuntos
Hidrocarboneto de Aril Hidroxilases/genética , Cateterismo Cardíaco/efeitos dos fármacos , Farmacogenética , Medicina de Precisão , Ticlopidina/análogos & derivados , Cateterismo Cardíaco/métodos , Clopidogrel , Desenho Assistido por Computador , Citocromo P-450 CYP2C19 , Sistemas de Apoio a Decisões Clínicas , Variação Genética , Técnicas de Genotipagem/métodos , Humanos , Seleção de Pacientes , Farmacogenética/métodos , Farmacogenética/tendências , Inibidores da Agregação Plaquetária/uso terapêutico , Medicina de Precisão/métodos , Medicina de Precisão/tendências , Ticlopidina/uso terapêutico
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