2022, Number 2
Compuestos naturales, modelos murinos y su aplicación en el estudio del lupus eritematoso sistémico
Language: Spanish
References: 9
Page: 41-50
PDF size: 1113.44 Kb.
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No abstract.REFERENCES
Abrego-Peredo, A., Romero-Ramírez, H., Espinosa, E., López-Herrera,G., García-García, F., Flores-Muñoz, M., Sandoval-Montes, C., & Rodríguez-Alba, J. C. (2020). Naringenin mitigates autoimmune features inlupus-prone mice by modulation of T-cell subsets and cytokines profile.PLoS ONE, 15(5). https://doi.org/10.1371/journal.pone.0233138
Castro, C. N., Barcala Tabarrozzi, A. E., Winnewisser, J., Gimeno, M. L.,Antunica Noguerol, M., Liberman, A. C., Paz, D. A., Dewey, R. A., & Perone,M. J. (2014). Curcumin ameliorates autoimmune diabetes. Evidencein accelerated murine models of type 1 diabetes. Clinical and ExperimentalImmunology, 177(1), 149–160. https://doi.org/10.1111/cei.12322.
Domínguez-Pantoja M, López-Herrera G, Romero-Ramírez H, Santos-Argumedo L, Chávez-Rueda AK, Hernández-Cueto Á, Flores-MuñozM, Rodríguez-Alba JC. (2018). CD38 protein deficiency inducesautoimmune characteristics and its activation enhances IL-10 productionby regulatory B cells. Scand J Immunol;87(6):e12664. https://onlinelibrary.wiley.com/doi/10.1111/sji.12664.
Handono, K., Pratama, M. Z., Endharti, A. T., & Kalim, H. (2015). Treatmentof low doses curcumin could modulate Th17/Treg balancespecifically on CD4+ T cell cultures of systemic lupus erythematosuspatients. Central European Journal of Immunology, 40(4), 461–469.https://doi.org/10.5114/ceji.2015.56970
Nusbaum, J. S., Mirza, I., Shum, J., Freilich, R. W., Cohen, R. E., Pillinger,M. H., Izmirly, P. M., & Buyon, J. P. (2020). Sex Differences in SystemicLupus Erythematosus: Epidemiology, Clinical Considerations, and DiseasePathogenesis. In Mayo Clinic Proceedings (Vol. 95, Issue 2, pp. 384–394). Elsevier Ltd. https://doi.org/10.1016/j.mayocp.2019.09.012