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1.
Mack, S.* et al.: Evaluating the causal relation of ApoA-IV with disease-related traits - A bidirectional two-sample mendelian randomization study. Sci. Rep. 7:8734 (2017)
2.
Mack, S.* et al.: A genome-wide association meta-analysis on lipoprotein (a) concentrations adjusted for apolipoprotein (a) isoforms. J. Lipid Res. 58, 1834-1844 (2017)
3.
Lamina, C.* et al.: A genome-wide association meta-analysis on apolipoprotein A-IV concentrations. Hum. Mol. Genet. 25, 3635-3646 (2016)
4.
Yousri, N.A.* et al.: Diagnostic and prognostic metabolites identified for joint symptoms in the KORA population. J. Proteome Res. 15, 554-562 (2016)
5.
Do, K.T. et al.: Network-based approach for analyzing intra- and interfluid metabolite associations in human blood, urine, and saliva. J. Proteome Res. 14, 1183-1194 (2015)
6.
Kumar, P.* et al.: MetaRNA-Seq: An interactive tool to browse and annotate metadata from RNA-Seq studies. Biomed Res. Int. 2015:318064 (2015)
7.
Yousri, N.A.* et al.: A systems view of type 2 diabetes-associated metabolic perturbations in saliva, blood and urine at different timescales of glycaemic control. Diabetologia 58, 1855-1867 (2015)
8.
Yousri, N.A.* et al.: Erratum to: A systems view of type 2 diabetes-associated metabolic perturbations in saliva, blood and urine at different timescales of glycaemic control. Diabetologia 58, 2199 (2015)
9.
Mook-Kanamori, D.O.* et al.: 1,5-anhydroglucitol in saliva is a noninvasive marker of short-term glycemic control. J. Clin. Endocrinol. Metab. 99, E479-E483 (2014)
10.
Yousri, N.A.* et al.: Long term conservation of human metabolic phenotypes and link to heritability. Catal. Lett. 10, 1005-1017 (2014)