Published Application/Species/Sample/Dilution | Reference |
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- flow cytometry; human; loading ...; fig 3b
| Ingelfinger F, Krishnarajah S, Kramer M, Utz S, Galli E, Lutz M, et al. Single-cell profiling of myasthenia gravis identifies a pathogenic T cell signature. Acta Neuropathol. 2021;141:901-915 pubmed publisher
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- flow cytometry; human; loading ...; fig ex4g
| Ardain A, Domingo Gonzalez R, Das S, Kazer S, Howard N, Singh A, et al. Group 3 innate lymphoid cells mediate early protective immunity against tuberculosis. Nature. 2019;: pubmed publisher
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- flow cytometry; human; loading ...; fig 5a, 5b
| Cooper G, Ostridge K, Khakoo S, Wilkinson T, Staples K. Human CD49a+ Lung Natural Killer Cell Cytotoxicity in Response to Influenza A Virus. Front Immunol. 2018;9:1671 pubmed publisher
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- flow cytometry; human; loading ...; fig 3d
| Hartana C, Ahlén Bergman E, Broome A, Berglund S, Johansson M, Alamdari F, et al. Tissue-resident memory T cells are epigenetically cytotoxic with signs of exhaustion in human urinary bladder cancer. Clin Exp Immunol. 2018;194:39-53 pubmed publisher
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- flow cytometry; human; loading ...; fig 1b
| Pizzolla A, Nguyen T, Sant S, Jaffar J, Loudovaris T, Mannering S, et al. Influenza-specific lung-resident memory T cells are proliferative and polyfunctional and maintain diverse TCR profiles. J Clin Invest. 2018;128:721-733 pubmed publisher
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- flow cytometry; human; loading ...; fig 5g
| Herndler Brandstetter D, Shan L, Yao Y, Stecher C, Plajer V, Lietzenmayer M, et al. Humanized mouse model supports development, function, and tissue residency of human natural killer cells. Proc Natl Acad Sci U S A. 2017;114:E9626-E9634 pubmed publisher
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- flow cytometry; human; loading ...; fig 4b
| Matos T, O Malley J, Lowry E, Hamm D, Kirsch I, Robins H, et al. Clinically resolved psoriatic lesions contain psoriasis-specific IL-17-producing ?? T cell clones. J Clin Invest. 2017;127:4031-4041 pubmed publisher
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| Booth J, Toapanta F, Salerno Goncalves R, Patil S, Kader H, Safta A, et al. Characterization and functional properties of gastric tissue-resident memory T cells from children, adults, and the elderly. Front Immunol. 2014;5:294 pubmed publisher
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| Muthuswamy R, McGray A, Battaglia S, He W, Miliotto A, Eppolito C, et al. CXCR6 by increasing retention of memory CD8+ T cells in the ovarian tumor microenvironment promotes immunosurveillance and control of ovarian cancer. J Immunother Cancer. 2021;9: pubmed publisher
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| Pattekar A, Mayer L, Lau C, Liu C, Palko O, Bewtra M, et al. Norovirus-Specific CD8+ T Cell Responses in Human Blood and Tissues. Cell Mol Gastroenterol Hepatol. 2021;11:1267-1289 pubmed publisher
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| Dijkgraaf F, Toebes M, Hoogenboezem M, Mertz M, Vredevoogd D, Matos T, et al. Labeling and tracking of immune cells in ex vivo human skin. Nat Protoc. 2021;16:791-811 pubmed publisher
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| Weisberg S, Carpenter D, Chait M, Dogra P, Gartrell Corrado R, Chen A, et al. Tissue-Resident Memory T Cells Mediate Immune Homeostasis in the Human Pancreas through the PD-1/PD-L1 Pathway. Cell Rep. 2019;29:3916-3932.e5 pubmed publisher
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| Pascutti M, Geerman S, Collins N, Brasser G, Nota B, Stark R, et al. Peripheral and systemic antigens elicit an expandable pool of resident memory CD8+ T cells in the bone marrow. Eur J Immunol. 2019;49:853-872 pubmed publisher
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| Duggal N, Pollock R, Lazarus N, Harridge S, Lord J. Major features of immunesenescence, including reduced thymic output, are ameliorated by high levels of physical activity in adulthood. Aging Cell. 2018;17: pubmed publisher
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| Kiniry B, Hunt P, Hecht F, Somsouk M, Deeks S, Shacklett B. Differential Expression of CD8+ T Cell Cytotoxic Effector Molecules in Blood and Gastrointestinal Mucosa in HIV-1 Infection. J Immunol. 2018;200:1876-1888 pubmed publisher
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| Gee M, Han A, Lofgren S, Beausang J, Mendoza J, Birnbaum M, et al. Antigen Identification for Orphan T Cell Receptors Expressed on Tumor-Infiltrating Lymphocytes. Cell. 2018;172:549-563.e16 pubmed publisher
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