Immunity, Innate

Displaying 1 - 11 of 11CSV
Ma, B., Kamle, S., Sadanaga, T., Lee, C.-M., Lee, J. H., Yee, D. C., Zhu, Z., Silverman, E. K., DeMeo, D. L., Choi, A. M. K., Lee, C. G., & Elias, J. A. (2024). Chitinase 3–like-1 Inhibits Innate Antitumor and Tissue Remodeling Immune Responses by Regulating CD47-SIRPα– and CD24-Siglec10–Mediated Phagocytosis. The Journal of Immunology, 213(9), 1279–1291. https://doi.org/10.4049/jimmunol.2400035
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Araujo, L. P., Edwards, M., Irie, K., Huang, Y., Kawano, Y., Tran, A., De Michele, S., Bhagat, G., Wang, H. H., & Ivanov, I. I. (2024). Context-dependent role of group 3 innate lymphoid cells in mucosal protection. Science Immunology, 9(98). https://doi.org/10.1126/sciimmunol.ade7530
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Bhushan, G., Castano, V., Wong Fok Lung, T., Chandler, C., McConville, T. H., Ernst, R. K., Prince, A. S., & Ahn, D. (2024). Lipid A modification of colistin-resistant Klebsiella pneumoniae does not alter innate immune response in a mouse model of pneumonia. Infection and Immunity, 92(6). https://doi.org/10.1128/iai.00016-24
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Leuzzi, G., Vasciaveo, A., Taglialatela, A., Chen, X., Firestone, T. M., Hickman, A. R., Mao, W., Thakar, T., Vaitsiankova, A., Huang, J.-W., Cuella-Martin, R., Hayward, S. B., Kesner, J. S., Ghasemzadeh, A., Nambiar, T. S., Ho, P., Rialdi, A., Hebrard, M., Li, Y., … Ciccia, A. (2024). SMARCAL1 is a dual regulator of innate immune signaling and PD-L1 expression that promotes tumor immune evasion. Cell, 187(4), 861-881.e32. https://doi.org/10.1016/j.cell.2024.01.008
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Tamari, M., Del Bel, K. L., Ver Heul, A. M., Zamidar, L., Orimo, K., Hoshi, M., Trier, A. M., Yano, H., Yang, T.-L., Biggs, C. M., Motomura, K., Shibuya, R., Yu, C. D., Xie, Z., Iriki, H., Wang, Z., Auyeung, K., Damle, G., Demircioglu, D., … Kim, B. S. (2024). Sensory neurons promote immune homeostasis in the lung. Cell, 187(1), 44-61.e17. https://doi.org/10.1016/j.cell.2023.11.027
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Qin, Y., Mace, E. M., & Barton, J. P. (2023). An inference model gives insights into innate immune adaptation and repertoire diversity. Proceedings of the National Academy of Sciences, 120(38). https://doi.org/10.1073/pnas.2305859120
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Steers, N. J., & Barasch, J. (2023). Their last will and testament: dying immune cells protect the urinary system with extracellular DNA traps. Kidney International, 104(2), 236–238. https://doi.org/10.1016/j.kint.2023.05.021
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Soldatenko, A., Hoyt, L. R., Xu, L., Calabro, S., Lewis, S. M., Gallman, A. E., Hudson, K. E., Stowell, S. R., Luckey, C. J., Zimring, J. C., Liu, D., Santhanakrishnan, M., Hendrickson, J. E., & Eisenbarth, S. C. (2022). Innate and Adaptive Immunity to Transfused Allogeneic RBCs in Mice Requires MyD88. The Journal of Immunology, 208(4), 991–997. https://doi.org/10.4049/jimmunol.2100784
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