Published Application/Species/Sample/Dilution | Reference |
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- flow cytometry; mouse; 1:100; loading ...; fig e8a
| Jacome Galarza C, Percin G, Muller J, Mass E, Lazarov T, Eitler J, et al. Developmental origin, functional maintenance and genetic rescue of osteoclasts. Nature. 2019;568:541-545 pubmed publisher
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- flow cytometry; mouse; fig 3c
| Amôr N, de Oliveira C, Gasparoto T, Vilas Boas V, Perri G, Kaneno R, et al. ST2/IL-33 signaling promotes malignant development of experimental squamous cell carcinoma by decreasing NK cells cytotoxicity and modulating the intratumoral cell infiltrate. Oncotarget. 2018;9:30894-30904 pubmed publisher
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- flow cytometry; mouse; loading ...; fig 2c
| Stefani F, Eberstål S, Vergani S, Kristiansen T, Bengzon J. Low-dose irradiated mesenchymal stromal cells break tumor defensive properties in vivo. Int J Cancer. 2018;143:2200-2212 pubmed publisher
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- flow cytometry; mouse; loading ...; fig 3d
| Briercheck E, Trotta R, Chen L, Hartlage A, Cole J, Cole T, et al. PTEN is a negative regulator of NK cell cytolytic function. J Immunol. 2015;194:1832-40 pubmed publisher
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| Dang V, Tanabe K, Tanaka Y, Tokumoto N, Misumi T, Saeki Y, et al. Fasting enhances TRAIL-mediated liver natural killer cell activity via HSP70 upregulation. PLoS ONE. 2014;9:e110748 pubmed publisher
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| Wei H, Nash W, Makrigiannis A, Brown M. Impaired NK-cell education diminishes resistance to murine CMV infection. Eur J Immunol. 2014;44:3273-82 pubmed publisher
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- flow cytometry; mouse; fig 4
| Jayaraman A, Jackson D, Message S, Pearson R, Aniscenko J, Caramori G, et al. IL-15 complexes induce NK- and T-cell responses independent of type I IFN signaling during rhinovirus infection. Mucosal Immunol. 2014;7:1151-64 pubmed publisher
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| Chan I, Jain R, Tessmer M, Gorman D, Mangadu R, Sathe M, et al. Interleukin-23 is sufficient to induce rapid de novo gut tumorigenesis, independent of carcinogens, through activation of innate lymphoid cells. Mucosal Immunol. 2014;7:842-56 pubmed publisher
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| Pierini R, Perret M, Djebali S, Juruj C, Michallet M, Forster I, et al. ASC controls IFN-? levels in an IL-18-dependent manner in caspase-1-deficient mice infected with Francisella novicida. J Immunol. 2013;191:3847-57 pubmed publisher
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| Brockwell N, Rautela J, Owen K, Gearing L, Deb S, Harvey K, et al. Tumor inherent interferon regulators as biomarkers of long-term chemotherapeutic response in TNBC. NPJ Precis Oncol. 2019;3:21 pubmed publisher
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| Fausther Bovendo H, Qiu X, He S, Bello A, Audet J, Ippolito G, et al. NK Cells Accumulate in Infected Tissues and Contribute to Pathogenicity of Ebola Virus in Mice. J Virol. 2019;93: pubmed publisher
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| Otxoa de Amezaga A, Miro Mur F, Pedragosa J, Gallizioli M, Justicia C, Gaja Capdevila N, et al. Microglial cell loss after ischemic stroke favors brain neutrophil accumulation. Acta Neuropathol. 2019;137:321-341 pubmed publisher
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| Andre P, Denis C, Soulas C, Bourbon Caillet C, Lopez J, Arnoux T, et al. Anti-NKG2A mAb Is a Checkpoint Inhibitor that Promotes Anti-tumor Immunity by Unleashing Both T and NK Cells. Cell. 2018;175:1731-1743.e13 pubmed publisher
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| Burton O, Tamayo J, Stranks A, Koleoglou K, Oettgen H. Allergen-specific IgG antibody signaling through FcγRIIb promotes food tolerance. J Allergy Clin Immunol. 2018;141:189-201.e3 pubmed publisher
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| Quatrini L, Wieduwild E, Guia S, Bernat C, Glaichenhaus N, Vivier E, et al. Host resistance to endotoxic shock requires the neuroendocrine regulation of group 1 innate lymphoid cells. J Exp Med. 2017;214:3531-3541 pubmed publisher
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| Hosomi S, Grootjans J, Tschurtschenthaler M, Krupka N, Matute J, Flak M, et al. Intestinal epithelial cell endoplasmic reticulum stress promotes MULT1 up-regulation and NKG2D-mediated inflammation. J Exp Med. 2017;214:2985-2997 pubmed publisher
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| Savage A, Liang H, Locksley R. The Development of Steady-State Activation Hubs between Adult LTi ILC3s and Primed Macrophages in Small Intestine. J Immunol. 2017;199:1912-1922 pubmed publisher
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| Srivatsa S, Paul M, Cardone C, Holcmann M, Amberg N, Pathria P, et al. EGFR in Tumor-Associated Myeloid Cells Promotes Development of Colorectal Cancer in Mice and Associates With Outcomes of Patients. Gastroenterology. 2017;153:178-190.e10 pubmed publisher
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