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Zheljazkov VD, Semerdjieva IB, Borisova D, Yankova-Tsvetkova E, Koleva-Valkova LH, Petrova G, Dincheva I, Stevens F, Wu W, Astatkie T et al..  2023.  Phytochemical and biological investigations on Centranthus kellereri (Stoj., Stef. & T. Georgiev) Stoj. & Stef. and C. ruber (L.) DC. and their potential as new medicinal and ornamental plants.. PLoS One. 18(11):e0293877.
Santana-Rios G, Orner GA, Amantana A, Provost C, Wu SY, Dashwood RH.  2001.  Potent antimutagenic activity of white tea in comparison with green tea in the Salmonella assay.. Mutat Res. 495(1-2):61-74.
Carr AC, Zhu BZ, Frei B.  2000.  Potential antiatherogenic mechanisms of ascorbate (vitamin C) and alpha-tocopherol (vitamin E).. Circ Res. 87(5):349-54.
Jump DB, Depner CM, Tripathy S, Lytle KA.  2015.  Potential for dietary ω-3 fatty acids to prevent nonalcoholic fatty liver disease and reduce the risk of primary liver cancer.. Adv Nutr. 6(6):694-702.
Jump DB, Depner CM, Tripathy S, Lytle KA.  2015.  Potential for dietary ω-3 fatty acids to prevent nonalcoholic fatty liver disease and reduce the risk of primary liver cancer.. Adv Nutr. 6(6):694-702.
Qu Y, Fadden AN, Traber MG, Bobe G.  2014.  Potential risk indicators of retained placenta and other diseases in multiparous cows.. J Dairy Sci. 97(7):4151-65.
Leung PY, Tsao CS.  1992.  Preparation of an optimum mobile phase for the simultaneous determination of neurochemicals in mouse brain tissues by high-performance liquid chromatography with electrochemical detection.. J Chromatogr. 576(2):245-54.
Yang L, Choi J, Maier CS, Stevens JF.  2024.  Profiling of Oxylipins as Markers of Oxidative Stress in Biological Samples.. Curr Protoc. 4(3):e992.
Yang L, Choi J, Maier CS, Stevens JF.  2024.  Profiling of Oxylipins as Markers of Oxidative Stress in Biological Samples.. Curr Protoc. 4(3):e992.
Li L, Frei B.  2009.  Prolonged exposure to LPS increases iron, heme, and p22phox levels and NADPH oxidase activity in human aortic endothelial cells: inhibition by desferrioxamine.. Arterioscler Thromb Vasc Biol. 29(5):732-8.
Zhu B-Z, Carr AC, Frei B.  2002.  Pyrrolidine dithiocarbamate is a potent antioxidant against hypochlorous acid-induced protein damage.. FEBS Lett. 532(1-2):80-4.
Zhu B-Z, Carr AC, Frei B.  2002.  Pyrrolidine dithiocarbamate is a potent antioxidant against hypochlorous acid-induced protein damage.. FEBS Lett. 532(1-2):80-4.
Zhu B-Z, Carr AC, Frei B.  2002.  Pyrrolidine dithiocarbamate is a potent antioxidant against hypochlorous acid-induced protein damage.. FEBS Lett. 532(1-2):80-4.

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