179 results on '"Michaëlsson, Jakob"'
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2. Targeted plasma proteomics reveals signatures discriminating COVID-19 from sepsis with pneumonia
3. High-dimensional profiling reveals phenotypic heterogeneity and disease-specific alterations of granulocytes in COVID-19
4. Expansions of adaptive-like NK cells with a tissue-resident phenotype in human lung and blood
5. Accumulation of tissue-resident natural killer cells, innate lymphoid cells, and CD8 + T cells towards the center of human lung tumors
6. A Signal Peptide Derived from hsp60 Binds HLA-E and Interferes with CD94/NKG2A Recognition
7. A topographic atlas defines developmental origins of cell heterogeneity in the human embryonic lung
8. Unique transcriptional and protein-expression signature in human lung tissue-resident NK cells
9. NK cell responses to cytomegalovirus infection lead to stable imprints in the human KIR repertoire and involve activating KIRs
10. CD49a Expression Defines Tissue-Resident CD8+ T Cells Poised for Cytotoxic Function in Human Skin
11. Comparison of Lung-Homing Receptor Expression and Activation Profiles on NK Cell and T Cell Subsets in COVID-19 and Influenza
12. SARS-CoV-2 Nsp13 encodes for an HLA-E-stabilizing peptide that abrogates inhibition of NKG2A-expressing NK cells
13. Fetal and Adult Hematopoietic Stem Cells Give Rise to Distinct T Cell Lineages in Humans
14. Immune Reconstitution of $CD56^{dim}$ NK Cells in Individuals with Primary HIV-1 Infection Treated with Interleukin-2
15. High-dimensional profiling reveals phenotypic heterogeneity and disease-specific alterations of granulocytes in COVID-19
16. Accumulation of tissue-resident natural killer cells, innate lymphoid cells, and CD8+ T cells towards the center of human lung tumors.
17. Expression patterns of NKG2A, KIR, and CD57 define a process of CD56dim NK-cell differentiation uncoupled from NK-cell education
18. Education of human natural killer cells by activating killer cell immunoglobulin-like receptors
19. CD5 Surface Expression Marks Intravascular Human Innate Lymphoid Cells That Have a Distinct Ontogeny and Migrate to the Lung
20. Functionally distinct subsets of human NK cells and monocyte/DC-like cells identified by coexpression of CD56, CD7, and CD4
21. Identification of a Human Natural Killer Cell Lineage-Restricted Progenitor in Fetal and Adult Tissues
22. In Vitro Study of Human Immune Responses to Hyaluronic Acid Hydrogels, Recombinant Spidroins and Human Neural Progenitor Cells of Relevance to Spinal Cord Injury Repair
23. Distinct developmental pathways from blood monocytes generate human lung macrophage diversity
24. A biliary immune landscape map of primary sclerosing cholangitis reveals a dominant network of neutrophils and tissue-resident T cells
25. Divergent clonal differentiation trajectories establish CD8+ memory T cell heterogeneity during acute viral infections in humans
26. High-dimensional analysis reveals a distinct population of adaptive-like tissue-resident NK cells in human lung
27. Distinct developmental pathways from blood monocytes generate human lung macrophage diversity
28. Differentiation and functional regulation of human fetal NK cells
29. Killer Cell Immunoglobulin-like Receptor Workshop: Insights into Evolution, Genetics, Function, and Translation
30. CD4+CD25high Regulatory T Cells in the Developing Human Immune System: Implications for Pediatric HIV Infection
31. Maternal Alloantigens Promote the Development of Tolerogenic Fetal Regulatory T Cells in Utero
32. Activating and inhibitory receptors on synovial fluid natural killer cells of arthritis patients: role of CD94/NKG2A in control of cytokine secretion
33. Cell generation dynamics underlying naive T-cell homeostasis in adult humans
34. Influenza A Virus Infection Induces Hyperresponsiveness in Human Lung Tissue-Resident and Peripheral Blood NK Cells
35. The frequency of CD127low expressing CD4+CD25high T regulatory cells is inversely correlated with human T lymphotrophic virus type-1 (HTLV-1) proviral load in HTLV-1-infection and HTLV-1-associated myelopathy/tropical spastic paraparesis
36. Cell-Mediated Immune Responses and Immunopathogenesis of Human Tick-Borne Encephalitis Virus-Infection
37. Breadth and Dynamics of HLA-A2– and HLA-B7–Restricted CD8+ T Cell Responses against Nonstructural Viral Proteins in Acute Human Tick-Borne Encephalitis Virus Infection
38. CD49a Expression Defines Tissue-Resident CD8 + T Cells Poised for Cytotoxic Function in Human Skin
39. Accumulation of tissue-resident natural killer cells, innate lymphoid cells, and CD8+T cells towards the center of human lung tumors
40. NK cells and CD1d-restricted NKT cells respond in different ways with divergent kinetics to IL-2 treatment in primary HIV-1 infection
41. Specificity and Dynamics of Effector and Memory CD8 T Cell Responses in Human Tick-Borne Encephalitis Virus Infection
42. T-bet and Eomes Are Differentially Linked to the Exhausted Phenotype of CD8+ T Cells in HIV Infection.
43. Natural Killer Cells in Perinatally HIV-1-Infected Children Exhibit Less Degranulation Compared to HIV-1-Exposed Uninfected Children and Their Expression of KIR2DL3, NKG2C, and NKp46 Correlates with Disease Severity1
44. T-bet and Eomes Are Differentially Linked to the Exhausted Phenotype of CD8+ T Cells in HIV Infection
45. Rapid expansion and long-term persistence of elevated NK cell numbers in humans infected with hantavirus
46. Rapid expansion and long-term persistence of elevated NK cell numbers in humans infected with hantavirus
47. Decoding NK cell receptor specificity : functional and structural studies of MHC class 1 subcomponents
48. The frequency of CD127low expressing CD4+CD25high T regulatory cells is inversely correlated with human T lymphotrophic virus type-1 (HTLV-1) proviral load in HTLV-1-infection and HTLV-1-associated myelopathy/tropical spastic paraparesis
49. Immune Reconstitution of CD56dimNK Cells in Individuals with Primary HIV‐1 Infection Treated with Interleukin‐2
50. Human Immunodeficiency Virus Type 1 (HIV-1)-Specific CD8 + T EMRA Cells in Early Infection Are Linked to Control of HIV-1 Viremia and Predict the Subsequent Viral Load Set Point
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