Lymph Nodes

Displaying 1 - 5 of 5CSV
Topper, M. J., Guarnieri, J. W., Haltom, J. A., Chadburn, A., Cope, H., Frere, J., An, J., Borczuk, A., Sinha, S., Kim, J., Park, J., Butler, D., Meydan, C., Foox, J., Bram, Y., Richard, S. A., Epsi, N. J., Agan, B., Chenoweth, J. G., … Baylin, S. B. (2024). Lethal COVID-19 associates with RAAS-induced inflammation for multiple organ damage including mediastinal lymph nodes. Proceedings of the National Academy of Sciences, 121(49). https://doi.org/10.1073/pnas.2401968121
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Nanaware, P. P., Khan, Z. N., Clement, C. C., Shetty, M., Mota, I., Seltzer, E. S., Dzieciatkowska, M., Gamboni, F., D’Alessandro, A., Ng, C., Nagayama, M., Lichti, C. F., Soni, R. K., Jacob B. Geri, Matei, I., Lyden, D., Longman, R., Lu, T. T., Wan, X., … Santambrogio, L. (2024). Role of the afferent lymph as an immunological conduit to analyze tissue antigenic and inflammatory load. Cell Reports, 43(6), 114311. https://doi.org/10.1016/j.celrep.2024.114311
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Ural, B. B., Caron, D. P., Dogra, P., Wells, S. B., Szabo, P. A., Granot, T., Senda, T., Poon, M. M. L., Lam, N., Thapa, P., Lee, Y. S., Kubota, M., Matsumoto, R., & Farber, D. L. (2022). Inhaled particulate accumulation with age impairs immune function and architecture in human lung lymph nodes. Nature Medicine, 28(12), 2622–2632. https://doi.org/10.1038/s41591-022-02073-x
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Vecchione, A., Jofra, T., Gerosa, J., Shankwitz, K., Di Fonte, R., Galvani, G., Ippolito, E., Cicalese, M. P., Schultz, A. R., Seay, H. R., Favellato, M., Milardi, G., Stabilini, A., Ragogna, F., Grogan, P., Bianconi, E., Laurenzi, A., Caretto, A., Nano, R., … Fousteri, G. (2021). Reduced Follicular Regulatory T Cells in Spleen and Pancreatic Lymph Nodes of Patients With Type 1 Diabetes. Diabetes, 70(12), 2892–2902. https://doi.org/10.2337/db21-0091
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Castellanos, C. A., Ren, X., Gonzalez, S. L., Li, H. K., Schroeder, A. W., Liang, H.-E., Laidlaw, B. J., Hu, D., Mak, A. C. Y., Eng, C., Rodríguez-Santana, J. R., LeNoir, M., Yan, Q., Celedón, J. C., Burchard, E. G., Zamvil, S. S., Ishido, S., Locksley, R. M., Cyster, J. G., … Shin, J.-S. (2021). Lymph node–resident dendritic cells drive TH2 cell development involving MARCH1. Science Immunology, 6(64). https://doi.org/10.1126/sciimmunol.abh0707
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