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1. Adults with Plasmodium falciparum malaria have higher magnitude and quality of circulating T-follicular helper cells compared to children

2. Age-dependent changes in circulating Tfh cells influence development of functional malaria antibodies in children

3. Reduced circulating dendritic cells in acute Plasmodium knowlesi and Plasmodium falciparum malaria despite elevated plasma Flt3 ligand levels

4. Robust and prototypical immune responses toward influenza vaccines in the high-risk group of Indigenous Australians

5. Th2-like T Follicular Helper Cells Promote Functional Antibody Production during Plasmodium falciparum Infection

6. Loss of complement regulatory proteins on red blood cells in mild malarial anaemia and in Plasmodium falciparum induced blood-stage infection

7. Plasmodium falciparum Activates CD16+ Dendritic Cells to Produce Tumor Necrosis Factor and Interleukin-10 in Subpatent Malaria

8. Plasmodium falciparum activates CD16+ dendritic cells to produce TNF and IL-10 in subpatent malaria

9. Heterogeneity of the human immune response to malaria infection and vaccination driven by latent cytomegalovirus infection.

10. Single cell transcriptomics shows that malaria promotes unique regulatory responses across multiple immune cell subsets.

11. STING activation promotes autologous type I interferon-dependent development of type 1 regulatory T cells during malaria.

13. Age-dependent changes in circulating Tfh cells influence development of functional malaria antibodies in children.

14. Adults with Plasmodium falciparum malaria have higher magnitude and quality of circulating T-follicular helper cells compared to children.

15. Whole Blood Dendritic Cell Cytokine Production Assay.

16. Robust and prototypical immune responses toward influenza vaccines in the high-risk group of Indigenous Australians.

17. Reduced circulating dendritic cells in acute Plasmodium knowlesi and Plasmodium falciparum malaria despite elevated plasma Flt3 ligand levels.

18. Th2-like T Follicular Helper Cells Promote Functional Antibody Production during Plasmodium falciparum Infection.

19. A population of CD4 hi CD38 hi T cells correlates with disease severity in patients with acute malaria.

20. Transcriptional profiling and immunophenotyping show sustained activation of blood monocytes in subpatent Plasmodium falciparum infection.

21. The regulation of CD4 + T cells during malaria.

22. Loss of complement regulatory proteins on red blood cells in mild malarial anaemia and in Plasmodium falciparum induced blood-stage infection.

23. Plasmodium falciparum Activates CD16+ Dendritic Cells to Produce Tumor Necrosis Factor and Interleukin-10 in Subpatent Malaria.

24. Plasmacytoid dendritic cells appear inactive during sub-microscopic Plasmodium falciparum blood-stage infection, yet retain their ability to respond to TLR stimulation.

25. Early Immune Regulatory Changes in a Primary Controlled Human Plasmodium vivax Infection: CD1c + Myeloid Dendritic Cell Maturation Arrest, Induction of the Kynurenine Pathway, and Regulatory T Cell Activation.

26. Type I Interferons Regulate Immune Responses in Humans with Blood-Stage Plasmodium falciparum Infection.

27. Profoundly Reduced CD1c+ Myeloid Dendritic Cell HLA-DR and CD86 Expression and Increased Tumor Necrosis Factor Production in Experimental Human Blood-Stage Malaria Infection.

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