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1.
Duda, H.C.* et al.: Cathepsin S is more abundant in serum of Mycobacterium avium subsp. paratuberculosis-Infected dairy cows. Metabolites 14:215 (2024)
2.
Liu, X.* & Weigert, C.: State-of-the-art metabolomics and lipidomics in life sciences: Methods and applications. Metabolites 14:8 (2024)
3.
Peter, A. et al.: Accumulation of non-pathological liver fat is associated with the loss of glyoxalase I activity in humans. Metabolites 14:209 (2024)
4.
Yu, S. et al.: Prediction of myocardial infarction using a combined generative adversarial network model and feature-enhanced loss function. Metabolites 14:258 (2024)
5.
de Sá E Silva, D.M.* ; Thaitumu, M.* ; Theodoridis, G.* ; Witting, M. & Gika, H.*: Volumetric absorptive microsampling in the analysis of endogenous metabolites. Metabolites 13:24 (2023)
6.
Dong, Q. et al.: Metabolic signatures elucidate the effect of body mass index on type 2 diabetes. Metabolites 13:227 (2023)
7.
Stein, R. et al.: Single point insulin sensitivity estimator (SPISE) as a prognostic marker for emerging dysglycemia in children with overweight or obesity. Metabolites 13:12 (2023)
8.
Zahn, G.* et al.: Targeting longevity gene SLC13A5: A novel approach to prevent age-related bone fragility and osteoporosis. Metabolites 13:1186 (2023)
9.
Zheng, S.* et al.: A new biomarker profiling strategy for gut microbiome research: Valid association of metabolites to metabolism of microbiota detected by non-targeted metabolomics in human urine. Metabolites 13:12 (2023)
10.
Bauer, S.* et al.: Identification of the transcription factor ATF3 as a direct and indirect regulator of the LDLR. Metabolites 12:840 (2022)
11.
Bliziotis, N.G.* et al.: Preanalytical pitfalls in untargeted plasma nuclear magnetic resonance metabolomics of endocrine hypertension. Metabolites 12:679 (2022)
12.
Breuninger, T.A.* et al.: Fecal bile acids and neutral sterols are associated with latent microbial subgroups in the human gut. Metabolites 12:846 (2022)
13.
Fonseca, J.R. ; Lucio, M. ; Harir, M. & Schmitt-Kopplin, P.: Mining for active molecules in probiotic supernatant by combining non-targeted metabolomics and immunoregulation testing. Metabolites 12:35 (2022)
14.
Gehlert, S.* et al.: Effects of acute and chronic resistance exercise on the skeletal muscle metabolome. Metabolites 12:445 (2022)
15.
Heinzmann, S.S. ; Waldenberger, M. ; Peters, A. & Schmitt-Kopplin, P.: Cluster analysis statistical spectroscopy for the identification of metabolites in 1H NMR metabolomics. Metabolites 12:992 (2022)
16.
Hoene, M.* et al.: Exercise-induced N-lactoylphenylalanine predicts adipose tissue loss during endurance training in overweight and obese humans. Metabolites 13:15 (2022)
17.
Kleinwort, K.J.H.* et al.: Pudding proteomics: Cyclomaltodextrin glucanotransferase and microbial proteases can liquefy extended shelf life dairy products. Metabolites 12:254 (2022)
18.
Klöting, N. et al.: Intrinsic exercise capacity affects glycine and angiotensin-converting enzyme 2 (ACE2) levels in sedentary and exercise trained rats. Metabolites 12:548 (2022)
19.
Korbonits, L.* et al.: Mycobacterium avium subsp. paratuberculosis infected cows reveal divergent immune response in bovine peripheral blood derived lymphocyte proteome. Metabolites 12:924 (2022)
20.
Kosacka, J.* et al.: Ramipril reduces acylcarnitines and distinctly increases angiotensinconverting enzyme 2 expression in lungs of rats. Metabolites 12:293 (2022)