tetano
Editor, Senior Moderator
J Virol. 2013 Oct 23. [Epub ahead of print]
CD4 T cell help is limiting and selective during the primary B cell response to influenza infection.
Alam S, Knowlden ZA, Sangster MY, Sant AJ.
Source
David H. Smith Center for Vaccine Biology and Immunology, Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, New York 14642.
Abstract
Influenza vaccination strategies are focused upon the elicitation of protective antibody responses through administration of viral protein; either inactivated virions or live attenuated virus. Often overlooked in this strategy is the CD4 T cell response: how it develops into memory, and how it may support future primary B cell responses to heterologous infection. Through the utilization of a peptide-priming regimen, this study describes a strategy for developing CD4 T cell memory with the capacity to robustly expand in the lung-draining lymph node after live influenza infection. Not only were frequencies of antigen-specific CD4 T cells enhanced, but these cells also supported an accelerated primary B cell response to influenza-derived protein, evidenced by high anti-NP serum antibody titers early, while there is still active viral replication ongoing in the lung. NP-specific antibody secreting cells and heightened frequencies of germinal center B cells and follicular T helper cells were also readily detectable in the draining lymph node. Surprisingly, a boosted memory CD4 T cell response was not sufficient to provide intermolecular help for antibody responses. Our study demonstrates that CD4 T cell help is selective and limiting to the primary antibody response to influenza infection and that "pre-emptive" priming of CD4 T cell help can promote effective and rapid conversion of na?ve B cells to mature antibody secreting cells.
PMID:
24155379
[PubMed - as supplied by publisher]
http://www.ncbi.nlm.nih.gov/pubmed/24155379
CD4 T cell help is limiting and selective during the primary B cell response to influenza infection.
Alam S, Knowlden ZA, Sangster MY, Sant AJ.
Source
David H. Smith Center for Vaccine Biology and Immunology, Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, New York 14642.
Abstract
Influenza vaccination strategies are focused upon the elicitation of protective antibody responses through administration of viral protein; either inactivated virions or live attenuated virus. Often overlooked in this strategy is the CD4 T cell response: how it develops into memory, and how it may support future primary B cell responses to heterologous infection. Through the utilization of a peptide-priming regimen, this study describes a strategy for developing CD4 T cell memory with the capacity to robustly expand in the lung-draining lymph node after live influenza infection. Not only were frequencies of antigen-specific CD4 T cells enhanced, but these cells also supported an accelerated primary B cell response to influenza-derived protein, evidenced by high anti-NP serum antibody titers early, while there is still active viral replication ongoing in the lung. NP-specific antibody secreting cells and heightened frequencies of germinal center B cells and follicular T helper cells were also readily detectable in the draining lymph node. Surprisingly, a boosted memory CD4 T cell response was not sufficient to provide intermolecular help for antibody responses. Our study demonstrates that CD4 T cell help is selective and limiting to the primary antibody response to influenza infection and that "pre-emptive" priming of CD4 T cell help can promote effective and rapid conversion of na?ve B cells to mature antibody secreting cells.
PMID:
24155379
[PubMed - as supplied by publisher]
http://www.ncbi.nlm.nih.gov/pubmed/24155379