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1
Activation and trafficking of CD8 T cells during viral skin infection: immunological lessons learned from vaccinia virus.
Curr Opin Virol. 2018 Feb;28:12-19. doi: 10.1016/j.coviro.2017.10.001. Epub 2017 Oct 25.
2
Skin infection generates non-migratory memory CD8+ T(RM) cells providing global skin immunity.
Nature. 2012 Feb 29;483(7388):227-31. doi: 10.1038/nature10851.
4
Central memory CD8+ T cells become CD69+ tissue-residents during viral skin infection independent of CD62L-mediated lymph node surveillance.
PLoS Pathog. 2019 Mar 15;15(3):e1007633. doi: 10.1371/journal.ppat.1007633. eCollection 2019 Mar.
5
IL-1R Type 1-Deficient Mice Demonstrate an Impaired Host Immune Response against Cutaneous Vaccinia Virus Infection.
J Immunol. 2017 Jun 1;198(11):4341-4351. doi: 10.4049/jimmunol.1500106. Epub 2017 May 3.
6
Local antigen in nonlymphoid tissue promotes resident memory CD8+ T cell formation during viral infection.
J Exp Med. 2016 May 30;213(6):951-66. doi: 10.1084/jem.20151855. Epub 2016 May 23.
8
Survival of tissue-resident memory T cells requires exogenous lipid uptake and metabolism.
Nature. 2017 Mar 9;543(7644):252-256. doi: 10.1038/nature21379. Epub 2017 Feb 20.

引用本文的文献

5
T Cell Immunity and the Quest for Protective Vaccines against Infection.
Microorganisms. 2020 Dec 6;8(12):1936. doi: 10.3390/microorganisms8121936.
6
Vaccinia Virus Vectors Targeting Peptides for MHC Class II Presentation to CD4 T Cells.
Immunohorizons. 2020 Jan 2;4(1):1-13. doi: 10.4049/immunohorizons.1900070.
7
Central memory CD8+ T cells become CD69+ tissue-residents during viral skin infection independent of CD62L-mediated lymph node surveillance.
PLoS Pathog. 2019 Mar 15;15(3):e1007633. doi: 10.1371/journal.ppat.1007633. eCollection 2019 Mar.
8
Incomplete Memories: The Natural Suppression of Tissue-Resident Memory CD8 T Cells in the Lung.
Front Immunol. 2018 Jan 22;9:17. doi: 10.3389/fimmu.2018.00017. eCollection 2018.

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2
Lymphatic Vessels Balance Viral Dissemination and Immune Activation following Cutaneous Viral Infection.
Cell Rep. 2017 Sep 26;20(13):3176-3187. doi: 10.1016/j.celrep.2017.09.006.
3
Chemokine Receptor-Dependent Control of Skin Tissue-Resident Memory T Cell Formation.
J Immunol. 2017 Oct 1;199(7):2451-2459. doi: 10.4049/jimmunol.1700571. Epub 2017 Aug 30.
5
Regulation of T Cell Trafficking by Enzymatic Synthesis of O-Glycans.
Front Immunol. 2017 May 24;8:600. doi: 10.3389/fimmu.2017.00600. eCollection 2017.
6
Survival of tissue-resident memory T cells requires exogenous lipid uptake and metabolism.
Nature. 2017 Mar 9;543(7644):252-256. doi: 10.1038/nature21379. Epub 2017 Feb 20.
7
Cutting Edge: Tissue-Resident Memory T Cells Generated by Multiple Immunizations or Localized Deposition Provide Enhanced Immunity.
J Immunol. 2017 Mar 15;198(6):2233-2237. doi: 10.4049/jimmunol.1601367. Epub 2017 Feb 3.
8
Antigen-dependent competition shapes the local repertoire of tissue-resident memory CD8+ T cells.
J Exp Med. 2016 Dec 12;213(13):3075-3086. doi: 10.1084/jem.20160888. Epub 2016 Nov 29.
9
Imprinting of Skin/Inflammation Homing in CD4+ T Cells Is Controlled by DNA Methylation within the Fucosyltransferase 7 Gene.
J Immunol. 2016 Oct 15;197(8):3406-3414. doi: 10.4049/jimmunol.1502434. Epub 2016 Sep 2.
10
Local antigen in nonlymphoid tissue promotes resident memory CD8+ T cell formation during viral infection.
J Exp Med. 2016 May 30;213(6):951-66. doi: 10.1084/jem.20151855. Epub 2016 May 23.

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