Genome-wide association studies of chronic kidney disease: what have we learned?
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Genetic and epigenetic factors influencing chronic kidney diseaseA mouse model of early-onset renal failure due to a xanthine dehydrogenase nonsense mutationInsights into kidney diseases from genome-wide association studies.Systems Biology in Kidney Transplantation: The Application of Multi-Omics to a Complex Model.Common noncoding UMOD gene variants induce salt-sensitive hypertension and kidney damage by increasing uromodulin expressionGenetic variants in nicotinic acetylcholine receptor genes jointly contribute to kidney function in American Indians: the Strong Heart Family Study.Investigation of known estimated glomerular filtration rate loci in patients with type 2 diabetes.Genome-wide association study of kidney function decline in individuals of European descentFamilial risks of kidney failure in Sweden: a nationwide family studyShroom3 contributes to the maintenance of the glomerular filtration barrier integrityIntegrative Biology of Diabetic Kidney DiseaseGenomics in CKD: Is This the Path Forward?Understanding multicellular function and disease with human tissue-specific networks.SORCS1 contributes to the development of renal disease in rats and humans.From -omics to personalized medicine in nephrology: integration is the key.How can genetics and epigenetics help the nephrologist improve the diagnosis and treatment of chronic kidney disease patients?Make Precision Medicine Work for Chronic Kidney Disease.Improved detection of genetic loci in estimated glomerular filtration rate and type 2 diabetes using a pleiotropic cFDR method.A whole-genome simulator capable of modeling high-order epistasis for complex disease.SLC22A2 is associated with tubular creatinine secretion and bias of estimated GFR in renal transplantation.Effect of UMOD genotype on long-term graft survival after kidney transplantation in patients treated with cyclosporine-based therapy.The UMOD Locus: Insights into the Pathogenesis and Prognosis of Kidney Disease.Genome-wide association studies of albuminuria: towards genetic stratification in diabetes?Genome-Wide Analysis Studies and Chronic Kidney Disease.Susceptibility to Hypertensive Renal Disease in the Spontaneously Hypertensive Rat Is Influenced by 2 Loci Affecting Blood Pressure and Immunoglobulin Repertoire.An African perspective on the genetic risk of chronic kidney disease: a systematic review
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P2860
Genome-wide association studies of chronic kidney disease: what have we learned?
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2011 nî lūn-bûn
@nan
2011 թուականի Դեկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2011 թվականի դեկտեմբերին հրատարակված գիտական հոդված
@hy
2011年の論文
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2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Genome-wide association studies of chronic kidney disease: what have we learned?
@ast
Genome-wide association studies of chronic kidney disease: what have we learned?
@en
Genome-wide association studies of chronic kidney disease: what have we learned?
@nl
type
label
Genome-wide association studies of chronic kidney disease: what have we learned?
@ast
Genome-wide association studies of chronic kidney disease: what have we learned?
@en
Genome-wide association studies of chronic kidney disease: what have we learned?
@nl
prefLabel
Genome-wide association studies of chronic kidney disease: what have we learned?
@ast
Genome-wide association studies of chronic kidney disease: what have we learned?
@en
Genome-wide association studies of chronic kidney disease: what have we learned?
@nl
P2860
P356
P1476
Genome-wide association studies of chronic kidney disease: what have we learned?
@en
P2093
Caroline S. Fox
Conall M. O'Seaghdha
P2860
P2888
P356
10.1038/NRNEPH.2011.189
P407
P577
2011-12-06T00:00:00Z
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P6179
1013589289