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Data in Brief|January 23, 2023
Data on cardiac and vascular functionality in ex vivo and in vivo models following acute administration of trimethylamine N-oxideMelita Videja, Reinis Vilskersts, Eduards Sevostjanovs, et al.Organic Letters|March 30, 2023
Synthetic Access to FluorocyclopropylidenesRenate Melngaile, Melita Videja, Janis Kuka, et al.ACS Medicinal Chemistry Letters|November 20, 2020
trans-Fluorine Effect in Cyclopropane: Diastereoselective Synthesis of Fluorocyclopropyl Cabozantinib AnalogsJanis Veliks, Melita Videja, Artis Kinens, et al.Nutrients|March 10, 2022
Fasting-Mimicking Diet Reduces Trimethylamine N-Oxide Levels and Improves Serum Biochemical Parameters in Healthy VolunteersMelita Videja, Eduards Sevostjanovs, Sabine Upmale-Engela, et al.Frontiers in Cell and Developmental Biology|February 1, 2021
Microbiota-Derived Metabolite Trimethylamine N-Oxide Protects Mitochondrial Energy Metabolism and Cardiac Functionality in a Rat Model of Right Ventricle Heart FailureMelita Videja, Reinis Vilskersts, Stanislava Korzh, et al.Inflammopharmacology|April 13, 2020
Neuroprotective and anti-inflammatory activity of DAT inhibitor R-phenylpiracetam in experimental models of inflammation in male miceLiga Zvejniece, Baiba Zvejniece, Melita Videja, et al.Physiological Reports|November 18, 2020
Rats with congenital hydronephrosis show increased susceptibility to renal ischemia-reperfusion injuryReinis Vilskersts, Karlis Vilks, Melita Videja, et al.International Journal of Molecular Sciences|July 2, 2021
Long-Chain Acylcarnitines Decrease the Phosphorylation of the Insulin Receptor at Tyr1151 Through a PTP1B-Dependent MechanismKarlis Vilks, Melita Videja, Marina Makrecka-Kuka, et al.Cardiovascular Drugs and Therapy|May 20, 2020
Empagliflozin Protects Cardiac Mitochondrial Fatty Acid Metabolism in a Mouse Model of Diet-Induced Lipid OverloadMarina Makrecka-Kuka, Stanislava Korzh, Melita Videja, et al.Scientific Reports|September 5, 2020
Metformin decreases bacterial trimethylamine production and trimethylamine N-oxide levels in db/db miceJanis Kuka, Melita Videja, Marina Makrecka-Kuka, et al.Pageof 2