Faculty Publications

As of August 2017, this database is no longer being updated. For the most current publications from the faculty, students, and staff of the Touro College & University System, please check our institutional repository, Touro Scholar, and email any questions or publication submissions to Scholarly Communications Librarian Donneer Missouri.

Total number of publications: 7,082

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  • Hafko, R., Villapol, S., Nostramo, R., Symes, A., Sabban, E. L., Inagami, T., & Saavedra, J. M. (2013). Commercially available angiotensin II At-2 receptor antibodies are nonspecific. PLoS One, 8(7) [Article e69234]. doi:10.1371/journal.pone.0069234

  • Hallen, A., & Cooper, A. J. (2015). Letter to the editor: Mu-crystallin/CRYM functions as a ketimine-reducing enzyme and plays a role in thyroid hormone bioavailability due to strong inhibition/regulation by thyroid hormones. The Journal of Clinical Endocrinology and Metabolism, 100(1), L15-L16. doi:10.1210/jc.2014-3963

  • Hallen, A., Cooper, A. J., Jamie, J. F., & Karuso, P. (2015). Insights into enzyme catalysis and thyroid hormone regulation of cerebral ketimine reductase/mu-crystallin under physiological conditions. Neurochemical Research, 40(6), 1252-1266. doi:10.1007/s11064-015-1590-5

  • Hallen, A., Cooper, A. +., Smith, J. R., Jamie, J. F., & Karuso, P. (2015). Ketimine reductase/CRYM catalyzes reductive alkylamination of alpha-keto acids, confirming its function as an imine reductase. Amino Acids, 47(11), 2457-2461. doi:10.1007/s00726-015-2044-8

  • Hallen, A., Jamie, J. F., & Cooper, A. J. (2014). Imine reductases: A comparison of glutamate dehydrogenase to ketimine reductases in the brain. Neurochemical Research, 39(3), 527-541. doi:10.1007/s11064-012-0964-1

  • Hallen, A., Jamie, J. F., & Cooper, A. J. L. (2013). Lysine metabolism in mammalian brain: An update on the importance of recent discoveries. Amino Acids, 45(6), 1249-1272. doi:10.1007/s00726-013-1590-1

  • Hallen, A., Jamie, J. F., & Cooper, A. J. L. (2014). Imine reductases: A comparison of glutamate dehydrogenase to ketimine reductases in the brain. Neurochemical Research, 39(3), 527-541. doi:10.1007/s11064-012-0964-1

  • Hallen, A, Jamie, J. F., & Cooper, A. J. L. (2014). Imine reductases: A comparison of glutamate dehydrogenase to ketimine reductases in the brain. Neurochemical Research, 39(3), 527-541. doi:10.1007/s11064-012-0964-1

  • Hsieh, T. C., & Wu, J. M. (2013). Regulation of cell cycle transition and induction of apoptosis in HL-60 leukemia cells by the combination of Coriolus versicolor and Ganoderma lucidum. International Journal of Molecular Medicine, 32(1), 251-257. doi:10.3892/ijmm.2013.1378

  • Hsieh, T. C., Bennett, D. J., Lee, Y. S., Wu, E., & Wu, J. M. (2013). In silico and biochemical analyses identify quinone reductase 2 as a target of piceatannol. Current Medicinal Chemistry, 20(33), 4195-4202. This material can be found here.

  • Hsieh, T. C., Lin, C. Y., Bennett, D. J., Wu, E., & Wu, J. M. (2014). Biochemical and cellular evidence demonstrating AKT-1 as a binding partner for resveratrol targeting protein NQO2. PLoS One, 9(6), e101070. doi:10.1371/journal.pone.0101070

  • Hsieh, T. C., Wu, S. T., Bennett, D. J., Doonan, B. B., Wu, E., & Wu, J. M. (2016). Functional/activity network (FAN) analysis of gene-phenotype connectivity liaised by grape polyphenol resveratrol. Oncotarget, 7(25), 38670-38680. doi:10.18632/oncotarget.9578

  • Huang, A., Pinto, J. T., Froogh, G., Kandhi, S., Wolin, M. S., Hintze, T. H., . . . Sun, D. (2015). Role of homocysteinylation of ACE in endothelial dysfunction of arteries. American Journal of Physiology. Heart and Circulatory Physiology, 308(2), H92-H100. doi:10.1152/ajpheart.00577.2014

  • Hughes, E. E., Stevens, C. F., Saavedra-Matiz, C. A., Tavakoli, N. P., Krein, L. M., Parker, A., . . . Dozor, A. J. (2016). Clinical sensitivity of cystic fibrosis mutation panels in a diverse population. Human Mutation, 37(2), 201-208. doi:10.1002/humu.22927

  • Jeitner, T. M., & Cooper, A. J. (2014). Inhibition of human glutamine synthetase by L-methionine-S,R-sulfoximine-relevance to the treatment of neurological diseases. Metabolic Brain Disease, 29(4), 983-989. doi:10.1007/s11011-013-9439-6

  • Jeitner, T. M., Battaile, K., & Cooper, A. J. (2015). Critical evaluation of the changes in glutamine synthetase activity in models of cerebral stroke. Neurochemical Research, 40(12), 2544-2556. doi:10.1007/s11064-015-1667-1

  • Jeitner, T. M., Battaile, K., & Cooper, A. J. L. (2013). γ-Glutamylamines and neurodegenerative diseases. Amino Acids, 44(1), 129-142. doi:10.1007/s00726-011-1209-3

  • Jeitner, T. M., Kalogiannis, M., Krasnikov, B. F., Gomlin, I., Peltier, M. R., & Moran, G. R. (2016). Linking inflammation and Parkinson disease: Hypochlorous acid generates Parkinsonian poisons. Toxicological Sciences, 151(2), 388-402. doi:10.1093/toxsci/kfw052

  • Jeitner, T. M., Kalogiannis, M., Patrick, P. A., Gomolin, I., Palaia, T., Ragolia, L., . . . Delikatny, E. J. (2015). Inflaming the diseased brain: A role for tainted melanins. Biochimica et Biophysica Acta - Molecular Basis of Disease, 1852(5), 937-950. doi:10.1016/j.bbadis.2015.01.004

  • Jeitner, T. M., Kristoferson, E., Azcona, J. A., Pinto, J. T., Stalnecker, C., Erickson, J. W., . . . Cooper, A. J. L. (2016). Fluorination at the 4 position alters the substrate behavior of l-glutamine and l-glutamate: Implications for positron emission tomography of neoplasias. Journal of Fluorine Chemistry, 192(Part A), 58-67. doi:10.1016/j.jfluchem.2016.10.008

  • Kalogiannis, M., Delikatny, E. J., & Jeitner, T. M. (2015). Serotonin as a putative scavenger of hypohalous acid in the brain. Biochimica et Biophysica Acta, 1862(4), 651-661. doi:10.1016/j.bbadis.2015.12.012

  • Kalogiannis, M., Delikatny, E. J., & Jeitner, T. M. (2016). Serotonin as a putative scavenger of hypohalous acid in the brain. Biochimica et Biophysica Acta, 1862(4), 651-661. doi:10.1016/j.bbadis.2015.12.012

  • Kang, Y., Nian, H., Rajendran, P., Kim, E., Dashwood, W. M., Pinto, J. T., . . . Dashwood, R. H. (2014). HDAC8 and STAT3 repress BMF gene activity in colon cancer cells. Cell Death & Disease, 5, e1476. doi:10.1038/cddis.2014.422

  • Laukova, M., Alaluf, L. G., Serova, L. I., Arango, V., & Sabban, E. L. (2014). Early intervention with intranasal NPY prevents single prolonged stress-triggered impairments in hypothalamus and ventral hippocampus in male rats. Endocrinology, 155(10), 3920-3933. doi:10.1210/en.2014-1192

  • Lee, M. Y., Zhang, S., Lin, S. H., Wang, X., Darzynkiewicz, Z., Zhang, Z., & Lee, E. Y. (2014). The tail that wags the dog: p12, the smallest subunit of DNA polymerase δ is degraded by ubiquitin ligases in response to DNA damage and during cell cycle progression. Cell Cycle, 13(1), 23-31. doi:10.4161/cc.27407

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