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参考文献:
Arachchige, A.S.P.M. (2021) Human NK cells: From development to effector functions. Innate Immunity 27(3): 212-229.
Sivori, S., et al. (2019) Human NK cells: surface receptors, inhibitory checkpoints, and translational applications. Cellular & Molecular Immunology 16: 430-441.
Kumar, V., McNerney, M. A new self: MHC-class-I-independent Natural-killer-cell self-tolerance. Nat Rev Immunol 5, 363–374 (2005). https://doi.org/10.1038/nri1603
Björkström, N.K., et al. (2022) Natural killer cells in antiviral immunity. Nature Reviews Immunology 22: 112-123.
Cooper, M.A., et al. (2001) The biology of human natural killer-cell subsets. Trends Immunol. 22(11): 633-640.
Ghaedrahmati, F., et al. (2023) Targeting immune checkpoints: how to use natural killer cells for fighting against solid tumors. Cancer Commun. 43(2): 177-213
Stannard, K.A., et al. (2019) Human peripheral blood DNAM-1neg NK cells are a terminally differentiated subset with limited effector functions. Blood Adv. 3(11): 1681-1694.
Lopez-Vergès, S., et al. (2010) CD57 defines a functionally distinct population of mature NK cells in the human CD56dimCD16+ NK cell subset. Blood 116(19): 3865-3874.
Martinet, L.A., et al. (2015) DNAM-1 expression marks an alternative program of NK cell maturation. Cell Rep. 11: 85-97.
Kurioka, A., et al. (2018) CD161 Defines a functionally distinct subset of pro-inflammatory natural killer cells. Front. Immunol. 9: 486
Björkström, Niklas K., Hans-Gustaf Ljunggren, and Johan K. Sandberg. "CD56 negative NK cells: origin, function, and role in chronic viral disease." Trends in immunology 31.11 (2010): 401-406.
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