Published Application/Species/Sample/Dilution | Reference |
---|
- flow cytometry; human; loading ...; fig 3a
| Szabo P, Dogra P, Gray J, Wells S, Connors T, Weisberg S, et al. Longitudinal profiling of respiratory and systemic immune responses reveals myeloid cell-driven lung inflammation in severe COVID-19. Immunity. 2021;54:797-814.e6 pubmed publisher
|
- flow cytometry; human; loading ...; fig 9a
| Jegaskanda S, Mason R, Andrews S, Wheatley A, Zhang R, Reynoso G, et al. Intranasal Live Influenza Vaccine Priming Elicits Localized B Cell Responses in Mediastinal Lymph Nodes. J Virol. 2018;92: pubmed publisher
|
- flow cytometry; human; loading ...; fig 1e
| Ju X, Silveira P, Hsu W, Elgundi Z, Alingcastre R, Verma N, et al. The Analysis of CD83 Expression on Human Immune Cells Identifies a Unique CD83+-Activated T Cell Population. J Immunol. 2016;197:4613-4625 pubmed
|
- flow cytometry; African green monkey; loading ...; fig 2b
| Neumann B, Shi T, Gan L, Klippert A, Daskalaki M, Stolte Leeb N, et al. Comprehensive panel of cross-reacting monoclonal antibodies for analysis of different immune cells and their distribution in the common marmoset (Callithrix jacchus). J Med Primatol. 2016;45:139-46 pubmed publisher
|
- flow cytometry; rhesus macaque; loading ...; fig 5c
| Javed A, Leuchte N, Neumann B, Sopper S, Sauermann U. Noncytolytic CD8+ Cell Mediated Antiviral Response Represents a Strong Element in the Immune Response of Simian Immunodeficiency Virus-Infected Long-Term Non-Progressing Rhesus Macaques. PLoS ONE. 2015;10:e0142086 pubmed publisher
|
- flow cytometry; human; fig 6
| Lewis M, Vyse S, Shields A, Boeltz S, Gordon P, Spector T, et al. UBE2L3 polymorphism amplifies NF-κB activation and promotes plasma cell development, linking linear ubiquitination to multiple autoimmune diseases. Am J Hum Genet. 2015;96:221-34 pubmed publisher
|
| Japp A, Meng W, Rosenfeld A, Perry D, Thirawatananond P, Bacher R, et al. TCR+/BCR+ dual-expressing cells and their associated public BCR clonotype are not enriched in type 1 diabetes. Cell. 2021;184:827-839.e14 pubmed publisher
|
| Buggert M, Vella L, Nguyen S, Wu V, Chen Z, Sekine T, et al. The Identity of Human Tissue-Emigrant CD8+ T Cells. Cell. 2020;183:1946-1961.e15 pubmed publisher
|
| McBrien J, Mavigner M, Franchitti L, Smith S, White E, Tharp G, et al. Robust and persistent reactivation of SIV and HIV by N-803 and depletion of CD8+ cells. Nature. 2020;578:154-159 pubmed publisher
|
| Pardons M, Fromentin R, Pagliuzza A, Routy J, Chomont N. Latency-Reversing Agents Induce Differential Responses in Distinct Memory CD4 T Cell Subsets in Individuals on Antiretroviral Therapy. Cell Rep. 2019;29:2783-2795.e5 pubmed publisher
|
| Jegaskanda S, Andrews S, Wheatley A, Yewdell J, McDermott A, Subbarao K. Hemagglutinin head-specific responses dominate over stem-specific responses following prime boost with mismatched vaccines. JCI Insight. 2019;4: pubmed publisher
|
| Pinto D, Fenwick C, Caillat C, Silacci C, Guseva S, Dehez F, et al. Structural Basis for Broad HIV-1 Neutralization by the MPER-Specific Human Broadly Neutralizing Antibody LN01. Cell Host Microbe. 2019;26:623-637.e8 pubmed publisher
|
| Fajgenbaum D, Langan R, Japp A, Partridge H, Pierson S, Singh A, et al. Identifying and targeting pathogenic PI3K/AKT/mTOR signaling in IL-6-blockade-refractory idiopathic multicentric Castleman disease. J Clin Invest. 2019;129:4451-4463 pubmed publisher
|
| Burel J, Pomaznoy M, Lindestam Arlehamn C, Weiskopf D, da Silva Antunes R, Jung Y, et al. Circulating T cell-monocyte complexes are markers of immune perturbations. elife. 2019;8: pubmed publisher
|
| Fromentin R, DaFonseca S, Costiniuk C, El Far M, Procopio F, Hecht F, et al. PD-1 blockade potentiates HIV latency reversal ex vivo in CD4+ T cells from ART-suppressed individuals. Nat Commun. 2019;10:814 pubmed publisher
|
| 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
|
| McCracken M, Gromowski G, Friberg H, Lin X, Abbink P, De La Barrera R, et al. Impact of prior flavivirus immunity on Zika virus infection in rhesus macaques. PLoS Pathog. 2017;13:e1006487 pubmed publisher
|
| Aliota M, Dudley D, Newman C, Mohr E, Gellerup D, Breitbach M, et al. Heterologous Protection against Asian Zika Virus Challenge in Rhesus Macaques. PLoS Negl Trop Dis. 2016;10:e0005168 pubmed publisher
|
| Kiniry B, Ganesh A, Critchfield J, Hunt P, Hecht F, Somsouk M, et al. Predominance of weakly cytotoxic, T-betLowEomesNeg CD8+ T-cells in human gastrointestinal mucosa: implications for HIV infection. Mucosal Immunol. 2017;10:1008-1020 pubmed publisher
|
| Fromentin R, Bakeman W, Lawani M, Khoury G, Hartogensis W, DaFonseca S, et al. CD4+ T Cells Expressing PD-1, TIGIT and LAG-3 Contribute to HIV Persistence during ART. PLoS Pathog. 2016;12:e1005761 pubmed publisher
|
| Dudley D, Aliota M, Mohr E, Weiler A, Lehrer Brey G, Weisgrau K, et al. A rhesus macaque model of Asian-lineage Zika virus infection. Nat Commun. 2016;7:12204 pubmed publisher
|
| Woodham A, Yan L, Skeate J, van der Veen D, Brand H, Wong M, et al. T cell ignorance is bliss: T cells are not tolerized by Langerhans cells presenting human papillomavirus antigens in the absence of costimulation. Papillomavirus Res. 2016;2:21-30 pubmed
|
| Ravimohan S, Tamuhla N, Nfanyana K, Steenhoff A, Letlhogile R, Frank I, et al. Robust Reconstitution of Tuberculosis-Specific Polyfunctional CD4+ T-Cell Responses and Rising Systemic Interleukin 6 in Paradoxical Tuberculosis-Associated Immune Reconstitution Inflammatory Syndrome. Clin Infect Dis. 2016;62:795-803 pubmed publisher
|
| Pombo C, Wherry E, Gostick E, Price D, Betts M. Elevated Expression of CD160 and 2B4 Defines a Cytolytic HIV-Specific CD8+ T-Cell Population in Elite Controllers. J Infect Dis. 2015;212:1376-86 pubmed publisher
|
| Correia D, Fogli M, Hudspeth K, da Silva M, Mavilio D, Silva Santos B. Differentiation of human peripheral blood V?1+ T cells expressing the natural cytotoxicity receptor NKp30 for recognition of lymphoid leukemia cells. Blood. 2011;118:992-1001 pubmed publisher
|