AbstractIncreases in throughput and decreases in costs have facilitated large scale metabolomics studies, the simultaneous measurement of large numbers of biochemical components in biological samples. Initial large scale studies focused on biomarker discovery for disease or disease progression and helped to understand biochemical pathways underlying disease. The first population-based studies that combined metabolomics and genome wide association studies (mGWAS) have increased our understanding of the (genetic) regulation of biochemical conversions. Measurements of metabolites as intermediate phenotypes are a potentially very powerful approach to uncover how genetic variation affects disease susceptibility and progression. However, we still...
Transcriptomics data have been integrated with genome-wide association studies (GWASs) to help under...
Circulating metabolite levels may reflect the state of the human organism in health and disease, how...
Garrod’s concept of ‘chemical individuality’ has contributed to comprehension of the molecular origi...
AbstractIncreases in throughput and decreases in costs have facilitated large scale metabolomics stu...
The rapidly evolving field of metabolomics aims at a comprehensive measurement of ideally all endoge...
The rapidly evolving field of metabolomics aims at a comprehensive measurement of ideally all endoge...
Genome-wide association studies with metabolomics (mGWAS) identify genetically influenced metabotype...
Genome-wide association studies with metabolomics (mGWAS) identify genetically influenced metabotype...
Genome-wide association studies (GWAS) reveal links between genetic variance and predisposition to d...
The rapidly evolving field of metabolomics aims at a comprehensive measurement of ideally all endoge...
ABSTRACT: Genome-wide association studies (GWAS) analyze the genetic component of a phenotype or the...
Metabolites are small molecules involved in cellular metabolism, which can be detected in biological...
Background: Genome-wide association studies (GWAS) have identified many common single nucleotide pol...
Serum metabolite concentrations provide a direct readout of biological processes in the human body, ...
Transcriptomics data have been integrated with genome-wide association studies (GWASs) to help under...
Circulating metabolite levels may reflect the state of the human organism in health and disease, how...
Garrod’s concept of ‘chemical individuality’ has contributed to comprehension of the molecular origi...
AbstractIncreases in throughput and decreases in costs have facilitated large scale metabolomics stu...
The rapidly evolving field of metabolomics aims at a comprehensive measurement of ideally all endoge...
The rapidly evolving field of metabolomics aims at a comprehensive measurement of ideally all endoge...
Genome-wide association studies with metabolomics (mGWAS) identify genetically influenced metabotype...
Genome-wide association studies with metabolomics (mGWAS) identify genetically influenced metabotype...
Genome-wide association studies (GWAS) reveal links between genetic variance and predisposition to d...
The rapidly evolving field of metabolomics aims at a comprehensive measurement of ideally all endoge...
ABSTRACT: Genome-wide association studies (GWAS) analyze the genetic component of a phenotype or the...
Metabolites are small molecules involved in cellular metabolism, which can be detected in biological...
Background: Genome-wide association studies (GWAS) have identified many common single nucleotide pol...
Serum metabolite concentrations provide a direct readout of biological processes in the human body, ...
Transcriptomics data have been integrated with genome-wide association studies (GWASs) to help under...
Circulating metabolite levels may reflect the state of the human organism in health and disease, how...
Garrod’s concept of ‘chemical individuality’ has contributed to comprehension of the molecular origi...