Influence of phospholipid-containing additives on the functional condition of organs and systems of mice

Author:

Gryshchenko V.,

Publisher

National University of Life and Environmental Sciences of Ukraine

Reference18 articles.

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3. 3. Colombo, S., Melo, T., Martinez-Lopez, M., Carrasco, M. J., Domingues, P., Pérez-Sala, D., & Domingues, R. (2018). P-150 - Phospholipidome of endothelial cells shows a different adaptation response upon oxidative, glycative or carbonyl stress. Free Radical Biology and Medicine, 120(1):S90. doi: 10.1016/j.freeradbiomed.2018.04.297, https://doi.org/10.1016/j.freeradbiomed.2018.04.297

4. 4. Gariani, K., Ryu, D., Menzies, K. J., Yi, H.-S., Stein, S., Zhang, H., Perino, A., Lemos, V., Katsyuba, E., Jha, P., Vijgen, S., Rubbia-Brandt, L., Kim, Y. K., Kim, J. T., Kim, K. S., Shong, M., Schoonjans, K., & Auwerx1, J. (2017). Inhibiting poly ADP-ribosylation increases fatty acid oxidation and protects against fatty liver disease. Journal of Hepatology, 66(1):132-141., https://doi.org/10.1016/j.jhep.2016.08.024

5. 5. Gryshchenko, V. A. (2019). Blood and acid composition of blood and biles in calves at enteropatology and application of milk phospholipides. Ukrainian Journal of Veterinary Sciences, 10(4): 36-42, doi: 10.31548/ujvs2019.04.005 (in Ukrainian)., https://doi.org/10.31548/ujvs2019.04.005

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