Roy, S.; Kumaravel, S.; Banerjee, P.; White, T.K.; O’Brien, A.; Seelig, C.; Chauhan, R.; Ekser, B.; Bayless, K.J.; Alpini, G.;
et al. Tumor Lymphatic Interactions Induce CXCR2-CXCL5 Axis and Alter Cellular Metabolism and Lymphangiogenic Pathways to Promote Cholangiocarcinoma. Cells 2021, 10, 3093.
https://doi.org/10.3390/cells10113093
AMA Style
Roy S, Kumaravel S, Banerjee P, White TK, O’Brien A, Seelig C, Chauhan R, Ekser B, Bayless KJ, Alpini G,
et al. Tumor Lymphatic Interactions Induce CXCR2-CXCL5 Axis and Alter Cellular Metabolism and Lymphangiogenic Pathways to Promote Cholangiocarcinoma. Cells. 2021; 10(11):3093.
https://doi.org/10.3390/cells10113093
Chicago/Turabian Style
Roy, Sukanya, Subhashree Kumaravel, Priyanka Banerjee, Tori K. White, April O’Brien, Catherine Seelig, Rahul Chauhan, Burcin Ekser, Kayla J. Bayless, Gianfranco Alpini,
and et al. 2021. "Tumor Lymphatic Interactions Induce CXCR2-CXCL5 Axis and Alter Cellular Metabolism and Lymphangiogenic Pathways to Promote Cholangiocarcinoma" Cells 10, no. 11: 3093.
https://doi.org/10.3390/cells10113093
APA Style
Roy, S., Kumaravel, S., Banerjee, P., White, T. K., O’Brien, A., Seelig, C., Chauhan, R., Ekser, B., Bayless, K. J., Alpini, G., Glaser, S. S., & Chakraborty, S.
(2021). Tumor Lymphatic Interactions Induce CXCR2-CXCL5 Axis and Alter Cellular Metabolism and Lymphangiogenic Pathways to Promote Cholangiocarcinoma. Cells, 10(11), 3093.
https://doi.org/10.3390/cells10113093