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1. Pertussis seroprevalence among adults of reproductive age (20–39 years) in fourteen European countries

2. Live attenuated B. pertussis BPZE1 rescues the immune functions of Respiratory Syncytial virus infected human dendritic cells by promoting Th1/Th17 responses.

3. Human Immune Responses to Pertussis Vaccines

4. Human Immune Responses to Pertussis Vaccines

5. CD38 modulates respiratory syncytial virus-driven proinflammatory processes in human monocyte-derived dendritic cells

6. Humoral and B-cell memory responses in children five years after pertussis acellular vaccine priming

7. Different T cell memory in preadolescents after whole-cell or acellular pertussis vaccination

8. The Virulence Factors of Bordetella pertussis: Talented Modulators of Host Immune Response

9. CD38 Ligation in Peripheral Blood Mononuclear Cells of Myeloma Patients Induces Release of Protumorigenic IL-6 and Impaired Secretion of IFNγCytokines and Proliferation

10. Antibody mimicry, receptors and clinical applications

11. Identity and ranking of colonic mesenchymal stromal cells

12. Switched memory B cells maintain specific memory independently of serum antibodies: The hepatitis B example

13. Genetically Detoxified Pertussis Toxin Induces Th1/Th17 Immune Response through MAPKs and IL-10-Dependent Mechanisms

14. Lipopolysaccharides from Bordetella pertussis and Bordetella parapertussis Differently Modulate Human Dendritic Cell Functions Resulting in Divergent Prevalence of Th17-Polarized Responses

15. Lipooligosaccharide from Bordetella pertussis induces mature human monocyte-derived dendritic cells and drives a Th2 biased response

16. T-cell polarization: Potential serological markers in preterm and term infants

17. Expression and role of phosphatidylcholine-specific phospholipase C in human NK and T lymphocyte subsets

18. CD38 and CD157 as Receptors of the Immune System: A Bridge Between Innate and Adaptive Immunity

19. Surface layer proteins from Clostridium difficile induce inflammatory and regulatory cytokines in human monocytes and dendritic cells

20. Bordetella pertussis-Infected Human Monocyte-Derived Dendritic Cells Undergo Maturation and Induce Th1 Polarization and Interleukin-23 Expression

21. CD38 is expressed on human mature monocyte-derived dendritic cells and is functionally involved in CD83 expression and IL-12 induction

22. T-Cell Immune Response Assessment as a Complement to Serology and Intranasal Protection Assays in Determining the Protective Immunity Induced by Acellular Pertussis Vaccines in Mice

23. Acellular Pertussis Vaccines and Pertussis Resurgence: Revise or Replace?

24. Induction of a specific antibody response to Bordetella pertussis antigens in cultures of human peripheral blood mononuclear cells

25. Interaction between Human Interleukin-2-Activated Natural Killer Cells and Heat-Killed Germ Tube Forms ofCandida albicans

26. Prevalence of Markers of Exposure toBordetella pertussisAmong Italian Young Adults

27. Responsiveness of human polymorphonuclear cells (PMNL) to stimulation by a mannoprotein fraction (MP-F2) of Candida albicans; enhanced production of IL-6 and tumour necrosis factor-alpha (TNF-α) by MP-F2-stimulated PMNL from HIV-infected subjects

28. Role of the human CD38 molecule in B cell activation and proliferation

29. Late Acquisition of Hyporesponsiveness to Lipopolysaccharide by Mycobacterium avium-Infected Human Macrophages in Producing Tumor Necrosis Factor- but Not Interleukin-l and -6

30. CD38 ligation induces discrete cytokine mRNA expression in human cultured lymphocytes

31. Defective Expression of Interferon-γ, Granulocyte-Macrophage Colony-Stimulating Factor, Tumor Necrosis Factor α, and Interleukin-6 in Activated Peripheral Blood Lymphocytes from Glioma Patients

32. Hepatitis B specific T cell immunity induced by primary vaccination persists independently of the protective serum antibody level

33. Immunomodulatory activities of surface-layer proteins obtained from epidemic and hypervirulent Clostridium difficile strains

34. Identification of a 65-kDa Mannoprotein as a Main Target of Human CellMediated Immune Response to Candida albicans

35. Bordetella pertussis Commits Human Dendritic Cells to Promote a Th1/Th17 Response through the Activity of Adenylate Cyclase Toxin and MAPK-Pathways

36. Role of hydrolysis in the association of leu-enkephalin to peripheral blood mononucleate cells

37. CD38: A multi-lineage cell activation molecule with a split personality

38. Functional effects of a monoclonal antibody directed against a distinct epitope on 4F2 molecular complex in human peripheral blood mononuclear cell activation

39. Microbial immunomodulators: mannoprotein constituents ofCandida albicans with immunomodulatory activity in lymphocyte cultures of normal, glioma-bearing and HIV-infected subjects

40. T-cell immune responses toBordetella pertussisinfection and vaccination: Graphical Abstract Figure

41. Bordetella pertussis Inhibition of Interleukin-12 (IL-12) p70 in Human Monocyte-Derived Dendritic Cells Blocks IL-12 p35 through Adenylate Cyclase Toxin-Dependent Cyclic AMP Induction

42. 60-kDa heat shock protein of Chlamydia pneumoniae promotes a T helper type 1 immune response through IL-12/IL-23 production in monocyte-derived dendritic cells

43. CD38 ligation plays a direct role in the induction of IL-1beta, IL-6, and IL-10 secretion in resting human monocytes

44. Human CD38 and CD16 are functionally dependent and physically associated in natural killer cells

45. Native and genetically inactivated pertussis toxins induce human dendritic cell maturation and synergize with lipopolysaccharide in promoting T helper type 1 responses

46. Modification of Cytokine Networks Induced in the Host by Intestinal Bacteria Producing Exotoxins

47. Immunogenicity issues in the quality control of the new acellular pertussis vaccines

48. Cell-mediated immunity and antibody responses to Bordetella pertussis antigens in children with a history of pertussis infection and in recipients of an acellular pertussis vaccine

49. Does gestational age influence T-cell polarization at birth?

50. Immunogenic and protective Candida albicans constituents

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