Published Application/Species/Sample/Dilution | Reference |
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- flow cytometry; human; loading ...; fig s16
| Poletto E, Colella P, Pimentel Vera L, Khan S, Tomatsu S, Baldo G, et al. Improved engraftment and therapeutic efficacy by human genome-edited hematopoietic stem cells with Busulfan-based myeloablation. Mol Ther Methods Clin Dev. 2022;25:392-409 pubmed publisher
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- other; human; loading ...; fig s3
| Lejeune M, Duray E, Peipp M, Clémenceau B, Baron F, Beguin Y, et al. Balancing the CD38 Expression on Effector and Target Cells in Daratumumab-Mediated NK Cell ADCC against Multiple Myeloma. Cancers (Basel). 2021;13: pubmed publisher
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- flow cytometry; human; loading ...
| Bohannon C, Ende Z, Cao W, Mboko W, Ranjan P, Kumar A, et al. Influenza Virus Infects and Depletes Activated Adaptive Immune Responders. Adv Sci (Weinh). 2021;8:e2100693 pubmed publisher
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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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| Chiou S, Tseng D, Reuben A, Mallajosyula V, Molina I, Conley S, et al. Global analysis of shared T cell specificities in human non-small cell lung cancer enables HLA inference and antigen discovery. Immunity. 2021;54:586-602.e8 pubmed publisher
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- flow cytometry; human; loading ...; fig 3a
| Gregorova M, Morse D, Brignoli T, Steventon J, Hamilton F, Albur M, et al. Post-acute COVID-19 associated with evidence of bystander T-cell activation and a recurring antibiotic-resistant bacterial pneumonia. elife. 2020;9: pubmed publisher
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- flow cytometry; human; loading ...; fig 4b
| Luo B, Zhan Y, Luo M, Dong H, Liu J, Lin Y, et al. Engineering of α-PD-1 antibody-expressing long-lived plasma cells by CRISPR/Cas9-mediated targeted gene integration. Cell Death Dis. 2020;11:973 pubmed publisher
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- flow cytometry; human; fig s5
| Nam A, Kim K, Chaligne R, Izzo F, Ang C, Taylor J, et al. Somatic mutations and cell identity linked by Genotyping of Transcriptomes. Nature. 2019;571:355-360 pubmed publisher
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- flow cytometry; human; fig s1a
| Montel Hagen A, Seet C, Li S, Chick B, Zhu Y, Chang P, et al. Organoid-Induced Differentiation of Conventional T Cells from Human Pluripotent Stem Cells. Cell Stem Cell. 2019;24:376-389.e8 pubmed publisher
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| Preglej T, Brinkmann M, Steiner G, Aletaha D, G xf6 schl L, Bonelli M. Advanced immunophenotyping: A powerful tool for immune profiling, drug screening, and a personalized treatment approach. Front Immunol. 2023;14:1096096 pubmed publisher
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| Labuz D, Lewis G, Fleming I, Thompson C, Zhai Y, Firpo M, et al. Targeted multi-omic analysis of human skin tissue identifies alterations of conventional and unconventional T cells associated with burn injury. elife. 2023;12: pubmed publisher
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| Xu Q, Milanez Almeida P, Martins A, Radtke A, Hoehn K, Oguz C, et al. Adaptive immune responses to SARS-CoV-2 persist in the pharyngeal lymphoid tissue of children. Nat Immunol. 2023;24:186-199 pubmed publisher
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| Sun P, Ramos I, Coelho C, Grifoni A, Balinsky C, Vangeti S, et al. Asymptomatic or symptomatic SARS-CoV-2 infection plus vaccination confers increased adaptive immunity to variants of concern. iScience. 2022;25:105202 pubmed publisher
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| Tarke A, Coelho C, Zhang Z, Dan J, Yu E, Methot N, et al. SARS-CoV-2 vaccination induces immunological T cell memory able to cross-recognize variants from Alpha to Omicron. Cell. 2022;185:847-859.e11 pubmed publisher
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| Lozano Rodríguez R, Valentín Quiroga J, Avendaño Ortiz J, Martín Quirós A, Pascual Iglesias A, Terrón Arcos V, et al. Cellular and humoral functional responses after BNT162b2 mRNA vaccination differ longitudinally between naive and subjects recovered from COVID-19. Cell Rep. 2022;38:110235 pubmed publisher
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| Yu C, Littleton S, Giroux N, Mathew R, Ding S, Kalnitsky J, et al. Mucosal-associated invariant T cell responses differ by sex in COVID-19. Med (N Y). 2021;2:755-772.e5 pubmed publisher
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| Reed J, Preston Hurlburt P, Philbrick W, Betancur G, Korah M, LUCAS C, et al. The receptor for advanced glycation endproducts (RAGE) modulates T cell signaling. PLoS ONE. 2020;15:e0236921 pubmed publisher
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