Biblio

Found 14 results
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M. Bionaz, Osorio, J. S., and Loor, J. J., TRIENNIAL LACTATION SYMPOSIUM: Nutrigenomics in dairy cows: Nutrients, transcription factors, and techniques., J Anim Sci, vol. 93, no. 12, pp. 5531-53, 2015.
M. Bionaz, Monaco, E., and Wheeler, M. B., Transcription Adaptation during In Vitro Adipogenesis and Osteogenesis of Porcine Mesenchymal Stem Cells: Dynamics of Pathways, Biological Processes, Up-Stream Regulators, and Gene Networks., PLoS One, vol. 10, no. 9, p. e0137644, 2015.
M. Bionaz, Hausman, G. J., Loor, J. J., and Mandard, S., Physiological and Nutritional Roles of PPAR across Species., PPAR Res, vol. 2013, p. 807156, 2013.
M. Bionaz, Chen, S., Khan, M. J., and Loor, J. J., Functional Role of PPARs in Ruminants: Potential Targets for Fine-Tuning Metabolism during Growth and Lactation., PPAR Res, vol. 2013, p. 684159, 2013.
M. Bionaz and Loor, J. J., Ruminant metabolic systems biology: reconstruction and integration of transcriptome dynamics underlying functional responses of tissues to nutrition and physiological state., Gene Regul Syst Bio, vol. 6, pp. 109-25, 2012.
M. Bionaz, Periasamy, K., Rodriguez-Zas, S. L., Hurley, W. L., and Loor, J. J., A novel dynamic impact approach (DIA) for functional analysis of time-course omics studies: validation using the bovine mammary transcriptome., PLoS One, vol. 7, no. 3, p. e32455, 2012.
M. Bionaz, Periasamy, K., Rodriguez-Zas, S. L., Everts, R. E., Lewin, H. A., Hurley, W. L., and Loor, J. J., Old and new stories: revelations from functional analysis of the bovine mammary transcriptome during the lactation cycle., PLoS One, vol. 7, no. 3, p. e33268, 2012.
M. Bionaz, Thering, B. J., and Loor, J. J., Fine metabolic regulation in ruminants via nutrient-gene interactions: saturated long-chain fatty acids increase expression of genes involved in lipid metabolism and immune response partly through PPAR-α activation., Br J Nutr, vol. 107, no. 2, pp. 179-91, 2012.
M. Bionaz and Loor, J. J., Gene networks driving bovine mammary protein synthesis during the lactation cycle., Bioinform Biol Insights, vol. 5, pp. 83-98, 2011.
M. Bionaz and Loor, J. J., Gene networks driving bovine milk fat synthesis during the lactation cycle., BMC Genomics, vol. 9, p. 366, 2008.
M. Bionaz, Baumrucker, C. R., Shirk, E., Heuvel, J. P. Vanden, Block, E., and Varga, G. A., Characterization of Madin-Darby bovine kidney cell line for peroxisome proliferator-activated receptors: temporal response and sensitivity to fatty acids., J Dairy Sci, vol. 91, no. 7, pp. 2808-13, 2008.
M. Bionaz and Loor, J. J., ACSL1, AGPAT6, FABP3, LPIN1, and SLC27A6 are the most abundant isoforms in bovine mammary tissue and their expression is affected by stage of lactation., J Nutr, vol. 138, no. 6, pp. 1019-24, 2008.
M. Bionaz, Trevisi, E., Calamari, L., Librandi, F., Ferrari, A., and Bertoni, G., Plasma paraoxonase, health, inflammatory conditions, and liver function in transition dairy cows., J Dairy Sci, vol. 90, no. 4, pp. 1740-50, 2007.
M. Bionaz and Loor, J. J., Identification of reference genes for quantitative real-time PCR in the bovine mammary gland during the lactation cycle., Physiol Genomics, vol. 29, no. 3, pp. 312-9, 2007.