Manjarrez-Reyna, A.N.; Martínez-Reyes, C.P.; Aguayo-Guerrero, J.A.; Méndez-García, L.A.; Esquivel-Velázquez, M.; León-Cabrera, S.; Vargas-Alarcón, G.; Fragoso, J.M.; Carreón-Torres, E.; Pérez-Méndez, O.;
et al. Native Low-Density Lipoproteins Act in Synergy with Lipopolysaccharide to Alter the Balance of Human Monocyte Subsets and Their Ability to Produce IL-1 Beta, CCR2, and CX3CR1 In Vitro and In Vivo: Implications in Atherogenesis. Biomolecules 2021, 11, 1169.
https://doi.org/10.3390/biom11081169
AMA Style
Manjarrez-Reyna AN, Martínez-Reyes CP, Aguayo-Guerrero JA, Méndez-García LA, Esquivel-Velázquez M, León-Cabrera S, Vargas-Alarcón G, Fragoso JM, Carreón-Torres E, Pérez-Méndez O,
et al. Native Low-Density Lipoproteins Act in Synergy with Lipopolysaccharide to Alter the Balance of Human Monocyte Subsets and Their Ability to Produce IL-1 Beta, CCR2, and CX3CR1 In Vitro and In Vivo: Implications in Atherogenesis. Biomolecules. 2021; 11(8):1169.
https://doi.org/10.3390/biom11081169
Chicago/Turabian Style
Manjarrez-Reyna, Aarón N., Camilo P. Martínez-Reyes, José A. Aguayo-Guerrero, Lucia A. Méndez-García, Marcela Esquivel-Velázquez, Sonia León-Cabrera, Gilberto Vargas-Alarcón, José M. Fragoso, Elizabeth Carreón-Torres, Oscar Pérez-Méndez,
and et al. 2021. "Native Low-Density Lipoproteins Act in Synergy with Lipopolysaccharide to Alter the Balance of Human Monocyte Subsets and Their Ability to Produce IL-1 Beta, CCR2, and CX3CR1 In Vitro and In Vivo: Implications in Atherogenesis" Biomolecules 11, no. 8: 1169.
https://doi.org/10.3390/biom11081169
APA Style
Manjarrez-Reyna, A. N., Martínez-Reyes, C. P., Aguayo-Guerrero, J. A., Méndez-García, L. A., Esquivel-Velázquez, M., León-Cabrera, S., Vargas-Alarcón, G., Fragoso, J. M., Carreón-Torres, E., Pérez-Méndez, O., Prieto-Chávez, J. L., & Escobedo, G.
(2021). Native Low-Density Lipoproteins Act in Synergy with Lipopolysaccharide to Alter the Balance of Human Monocyte Subsets and Their Ability to Produce IL-1 Beta, CCR2, and CX3CR1 In Vitro and In Vivo: Implications in Atherogenesis. Biomolecules, 11(8), 1169.
https://doi.org/10.3390/biom11081169