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1.
Wuttke, M.* et al.: A catalog of genetic loci associated with kidney function from analyses of a million individuals. Nat. Genet. 51, 957-972 (2019)
2.
Zacharias, H.U. et al.: A novel metabolic signature to predict the requirement of dialysis or renal transplantation in patients with chronic kidney disease. J. Proteome Res. 18, 1796–1805 (2019)
3.
Köttgen, A.* ; Raffler, J. ; Sekula, P.* & Kastenmüller, G.: Genome-wide association studies of metabolite concentrations (mGWAS): Relevance for nephrology. Semin. Nephrol. 38, 151-174 (2018)
4.
Mahajan, A.* et al.: Refining the accuracy of validated target identification through coding variant fine-mapping in type 2 diabetes. Nat. Genet. 50, 559-571 (2018)
5.
Teumer, A.* et al.: Genome-wide analyses identify a role for SLC17A4 and AADAT in thyroid hormone regulation. Nat. Commun. 9:4455 (2018)
6.
Böger, C.A.* et al.: NFAT5 and SLC4A10 loci associate with plasma osmolality. J. Am. Soc. Nephrol. 28, 2311-2321 (2017)
7.
Gorski, M.* et al.: 1000 Genomes-based meta-analysis identifies 10 novel loci for kidney function. Sci. Rep. 7:45040 (2017)
8.
Sekula, P.* et al.: From discovery to translation: Characterization of c-mannosyltryptophan and pseudouridine as markers of kidney function. Sci. Rep. 7:17400 (2017)
9.
Budde, K.* et al.: Quality assurance in the pre-analytical phase of human urine samples by 1H-NMR spectroscopy. Arch. Biochem. Biophys. 589, 10-17 (2016)
10.
Keenan, T.* et al.: Causal assessment of serum urate levels in cardiometabolic diseases through a mendelian randomization study. J. Am. Coll. Cardiol. 67, 407-416 (2016)
11.
Pattaro, C.* et al.: Genetic associations at 53 loci highlight cell types and biological pathways relevant for kidney function. Nat. Commun. 7:10023 (2016)
12.
Sekula, P.* et al.: A metabolome-wide association study of kidney function and disease in the general population. J. Am. Soc. Nephrol. 27, 1175-1188 (2016)
13.
Teumer, A.* et al.: Genome-wide association studies identify genetic loci associated with albuminuria in diabetes. Diabetes 65, 803-817 (2016)
14.
Gorski, M.* et al.: Genome-wide association study of kidney function decline in individuals of European descent. Kidney Int. 87, 1017–1029 (2015)
15.
Huffman, J.E.* et al.: Modulation of genetic associations with serum urate levels by body-mass-index in humans. PLoS ONE 10:e0119752 (2015)
16.
Kühn, A. et al.: Feasibility and quality development of biomaterials in the pretest studies of the German National Cohort. Bundesgesundheitsbl.-Gesund. 57, 1255-1263 (2014)
17.
Goek, O.-N.* et al.: Metabolites associate with kidney function decline and incident chronic kidney disease in the general population. Nephrol. Dial. Transplant. 28, 2131-2138 (2013)
18.
Köttgen, A.* et al.: Genome-wide association analyses identify 18 new loci associated with serum urate concentrations. Nat. Genet. 45, 145-154 (2013)
19.
O'Seaghdha, C.M.* et al.: Meta-analysis of genome-wide association studies identifies six new Loci for serum calcium concentrations. PLoS Genet. 9:e1003796 (2013)
20.
Parsa, A.* et al.: Common variants in mendelian kidney disease genes and their association with renal function. J. Am. Soc. Nephrol. 24, 2105-2117 (2013)