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J Ozga

Showing results (1-10 of 11) with videos related to

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Immunity|April 11, 2021
Chemokines and the immune response to cancerAleksandra J Ozga, Melvyn T Chow, Andrew D Luster
Cell Reports|May 28, 2020
Targeting Lymph Node Niches Enhances Type 1 Immune Responses to ImmunizationJeffrey Lian, Aleksandra J Ozga, Caroline L Sokol, et al.
Computational and Mathematical Methods in Medicine|October 11, 2012
Quantitative measurements in 3-dimensional datasets of mouse lymph nodes resolve organ-wide functional dependenciesJürgen Mayer, Jim Swoger, Aleksandra J Ozga, et al.
Journal of Immunological Methods|February 5, 2016
Light sheet fluorescence microscopy for in situ cell interaction analysis in mouse lymph nodesJun Abe, Aleksandra J Ozga, Jim Swoger, et al.
Cellular Immunology|April 4, 2017
A minimum number of autoimmune T cells to induce autoimmunity?Angela J T Bosch, Beatrice Bolinger, Simone Keck, et al.
The Journal of Experimental Medicine|November 2, 2016
pMHC affinity controls duration of CD8+ T cell-DC interactions and imprints timing of effector differentiation versus expansionAleksandra J Ozga, Federica Moalli, Jun Abe, et al.
JCI Insight|April 20, 2018
CXCL10 stabilizes T cell-brain endothelial cell adhesion leading to the induction of cerebral malariaElizabeth W Sorensen, Jeffrey Lian, Aleksandra J Ozga, et al.
Immunity|November 30, 2021
CXCL10 chemokine regulates heterogeneity of the CD8<sup>+</sup> T cell response and viral set point during chronic infectionAleksandra J Ozga, Melvyn T Chow, Mateus E Lopes, et al.
Immunity|May 18, 2019
Intratumoral Activity of the CXCR3 Chemokine System Is Required for the Efficacy of Anti-PD-1 TherapyMelvyn T Chow, Aleksandra J Ozga, Rachel L Servis, et al.
Cell|June 22, 2021
Expansion of tumor-associated Treg cells upon disruption of a CTLA-4-dependent feedback loopFrancesco Marangoni, Ademi Zhakyp, Michela Corsini, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Immunity|April 11, 2021
Chemokines and the immune response to cancerAleksandra J Ozga, Melvyn T Chow, Andrew D Luster
Cell Reports|May 28, 2020
Targeting Lymph Node Niches Enhances Type 1 Immune Responses to ImmunizationJeffrey Lian, Aleksandra J Ozga, Caroline L Sokol, et al.
Computational and Mathematical Methods in Medicine|October 11, 2012
Quantitative measurements in 3-dimensional datasets of mouse lymph nodes resolve organ-wide functional dependenciesJürgen Mayer, Jim Swoger, Aleksandra J Ozga, et al.
Journal of Immunological Methods|February 5, 2016
Light sheet fluorescence microscopy for in situ cell interaction analysis in mouse lymph nodesJun Abe, Aleksandra J Ozga, Jim Swoger, et al.
Cellular Immunology|April 4, 2017
A minimum number of autoimmune T cells to induce autoimmunity?Angela J T Bosch, Beatrice Bolinger, Simone Keck, et al.
The Journal of Experimental Medicine|November 2, 2016
pMHC affinity controls duration of CD8+ T cell-DC interactions and imprints timing of effector differentiation versus expansionAleksandra J Ozga, Federica Moalli, Jun Abe, et al.
JCI Insight|April 20, 2018
CXCL10 stabilizes T cell-brain endothelial cell adhesion leading to the induction of cerebral malariaElizabeth W Sorensen, Jeffrey Lian, Aleksandra J Ozga, et al.
Immunity|November 30, 2021
CXCL10 chemokine regulates heterogeneity of the CD8<sup>+</sup> T cell response and viral set point during chronic infectionAleksandra J Ozga, Melvyn T Chow, Mateus E Lopes, et al.
Immunity|May 18, 2019
Intratumoral Activity of the CXCR3 Chemokine System Is Required for the Efficacy of Anti-PD-1 TherapyMelvyn T Chow, Aleksandra J Ozga, Rachel L Servis, et al.
Cell|June 22, 2021
Expansion of tumor-associated Treg cells upon disruption of a CTLA-4-dependent feedback loopFrancesco Marangoni, Ademi Zhakyp, Michela Corsini, et al.
Pageof 2