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Items: 1 to 20 of 24

1.

Comparative metabolic expressions of fermented soybeans according to different microbial starters.

Park MK, Kim YS.

Food Chem. 2019 Sep 4;305:125461. doi: 10.1016/j.foodchem.2019.125461. [Epub ahead of print]

PMID:
31505412
2.

Cell metabolomics to study the cytotoxicity of carbon black nanoparticles on A549 cells using UHPLC-Q/TOF-MS and multivariate data analysis.

Hou L, Guan S, Jin Y, Sun W, Wang Q, Du Y, Zhang R.

Sci Total Environ. 2019 Aug 26;698:134122. doi: 10.1016/j.scitotenv.2019.134122. [Epub ahead of print]

PMID:
31505349
3.

Daphnia magna metabolic profiling as a promising water quality parameter for the biological early warning system.

Jeong TY, Simpson MJ.

Water Res. 2019 Aug 31;166:115033. doi: 10.1016/j.watres.2019.115033. [Epub ahead of print]

PMID:
31505309
4.

MitoPark Transgenic Mouse Model Recapitulates the Gastrointestinal Dysfunction and Gut-Microbiome Changes of Parkinson's Disease.

Ghaisas S, Langley MR, Palanisamy BN, Dutta S, Narayanaswamy K, Plummer PJ, Sarkar S, Ay M, Jin H, Anantharam V, Kanthasamy A, Kanthasamy AG.

Neurotoxicology. 2019 Sep 7. pii: S0161-813X(19)30088-9. doi: 10.1016/j.neuro.2019.09.004. [Epub ahead of print]

PMID:
31505196
5.

Distinct metabolic pathways drive monoterpenoid biosynthesis in a natural population of Pelargonium graveolens (rose scented geranium).

Bergman ME, Chavez A, Ferrer A, Phillips MA.

J Exp Bot. 2019 Aug 31. pii: erz397. doi: 10.1093/jxb/erz397. [Epub ahead of print]

PMID:
31504760
6.

PLIN2 Functions as a Novel Link between Progesterone Signaling and Metabolism in Uterine Leiomyoma Cells.

Okeigwe I, Bulun S, Liu S, Rademaker AW, Coon V JS, Kujawa S, Robins J, Yin P.

J Clin Endocrinol Metab. 2019 Jul 23. pii: jc.2019-00762. doi: 10.1210/jc.2019-00762. [Epub ahead of print]

PMID:
31504629
7.

Quantitative assessment of betainized compounds and associations with dietary and metabolic biomarkers in the randomized study of the healthy Nordic diet (SYSDIET).

Tuomainen M, Kärkkäinen O, Leppänen J, Auriola S, Lehtonen M, Savolainen MJ, Hermansen K, Risérus U, Åkesson B, Thorsdottir I, Kolehmainen M, Uusitupa M, Poutanen K, Schwab U, Hanhineva K.

Am J Clin Nutr. 2019 Aug 28. pii: nqz179. doi: 10.1093/ajcn/nqz179. [Epub ahead of print]

PMID:
31504116
8.

Tryptophan, glutamine, leucine, and micronutrient supplementation improves environmental enteropathy in Zambian adults: a randomized controlled trial.

Louis-Auguste J, Besa E, Zyambo K, Munkombwe D, Banda R, Banda T, Watson A, Mayneris-Perxachs J, Swann J, Kelly P.

Am J Clin Nutr. 2019 Aug 28. pii: nqz189. doi: 10.1093/ajcn/nqz189. [Epub ahead of print]

PMID:
31504110
9.

Purine Metabolites and Carnitine Biosynthesis Intermediates Are Biomarkers for Incident Type 2 Diabetes.

Ottosson F, Smith E, Gallo W, Fernandez C, Melander O.

J Clin Endocrinol Metab. 2019 Oct 1;104(10):4921-4930. doi: 10.1210/jc.2019-00822.

PMID:
31502646
10.

Genome-Scale Characterization of Toxicity-Induced Metabolic Alterations in Primary Hepatocytes.

Rawls KD, Blais EM, Dougherty BV, Vinnakota KC, Pannala VR, Wallqvist A, Kolling GL, Papin JA.

Toxicol Sci. 2019 Sep 10. pii: kfz197. doi: 10.1093/toxsci/kfz197. [Epub ahead of print]

PMID:
31501904
11.

Stress-glucocorticoid-TSC22D3 axis compromises therapy-induced antitumor immunity.

Yang H, Xia L, Chen J, Zhang S, Martin V, Li Q, Lin S, Chen J, Calmette J, Lu M, Fu L, Yang J, Pan Z, Yu K, He J, Morand E, Schlecht-Louf G, Krzysiek R, Zitvogel L, Kang B, Zhang Z, Leader A, Zhou P, Lanfumey L, Shi M, Kroemer G, Ma Y.

Nat Med. 2019 Sep;25(9):1428-1441. doi: 10.1038/s41591-019-0566-4. Epub 2019 Sep 9.

PMID:
31501614
12.

COSY catalyses trans-cis isomerization and lactonization in the biosynthesis of coumarins.

Vanholme R, Sundin L, Seetso KC, Kim H, Liu X, Li J, De Meester B, Hoengenaert L, Goeminne G, Morreel K, Haustraete J, Tsai HH, Schmidt W, Vanholme B, Ralph J, Boerjan W.

Nat Plants. 2019 Sep 9. doi: 10.1038/s41477-019-0510-0. [Epub ahead of print]

PMID:
31501530
13.

Mode-of-action profiling reveals glutamine synthetase as a collateral metabolic vulnerability of M. tuberculosis to bedaquiline.

Wang Z, Soni V, Marriner G, Kaneko T, Boshoff HIM, Barry CE 3rd, Rhee KY.

Proc Natl Acad Sci U S A. 2019 Sep 9. pii: 201907946. doi: 10.1073/pnas.1907946116. [Epub ahead of print]

PMID:
31501323
14.

Remodeling of Chlamydomonas metabolism using synthetic inducers results in lipid storage during growth.

Wase N, Tu B, Rasineni GK, Cerny R, Grove R, Adamec J, Black PN, DiRusso CC.

Plant Physiol. 2019 Sep 9. pii: pp.00758.2019. doi: 10.1104/pp.19.00758. [Epub ahead of print]

15.

Cancer-associated adipocytes: key players in breast cancer progression.

Wu Q, Li B, Li Z, Li J, Sun S, Sun S.

J Hematol Oncol. 2019 Sep 10;12(1):95. doi: 10.1186/s13045-019-0778-6. Review.

16.

Pharmacometabolomics of Bronchodilator Response in Asthma and the Role of Age-Metabolite Interactions.

Kelly RS, Sordillo JE, Lutz SM, Avila L, Soto-Quiros M, Celedón JC, McGeachie MJ, Dahlin A, Tantisira K, Huang M, Clish CB, Weiss ST, Lasky-Su J, Wu AC.

Metabolites. 2019 Sep 7;9(9). pii: E179. doi: 10.3390/metabo9090179.

17.

Panoptic View of Prognostic Models for Personalized Breast Cancer Management.

Saini G, Mittal K, Rida P, Janssen EAM, Gogineni K, Aneja R.

Cancers (Basel). 2019 Sep 7;11(9). pii: E1325. doi: 10.3390/cancers11091325. Review.

18.

Tracking Photodynamic- and Chemotherapy-Induced Redox-State Perturbations in 3D Culture Models of Pancreatic Cancer: A Tool for Identifying Therapy-Induced Metabolic Changes.

Broekgaarden M, Bulin AL, Frederick J, Mai Z, Hasan T.

J Clin Med. 2019 Sep 6;8(9). pii: E1399. doi: 10.3390/jcm8091399.

19.

Multiplatform Urinary Metabolomics Profiling to Discriminate Cachectic from Non-Cachectic Colorectal Cancer Patients: Pilot Results from the ColoCare Study.

Ose J, Gigic B, Lin T, Liesenfeld DB, Böhm J, Nattenmüller J, Scherer D, Zielske L, Schrotz-King P, Habermann N, Ochs-Balcom HM, Peoples AR, Hardikar S, Li CI, Shibata D, Figueiredo J, Toriola AT, Siegel EM, Schmit S, Schneider M, Ulrich A, Kauczor HU, Ulrich CM.

Metabolites. 2019 Sep 6;9(9). pii: E178. doi: 10.3390/metabo9090178.

20.

Comparative Metabolomic Sampling of Upper and Lower Airways by Four Different Methods to Identify Biochemicals That May Support Bacterial Growth.

Farne H, Groves HT, Gill SK, Stokes I, McCulloch S, Karoly E, Trujillo-Torralbo MB, Johnston SL, Mallia P, Tregoning JS.

Front Cell Infect Microbiol. 2018 Dec 18;8:432. doi: 10.3389/fcimb.2018.00432. eCollection 2018.

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