Mutant Escherichia coli heat-labile enterotoxin [LT(R192G)] enhances protective humoral and cellular immune responses to orally administered inactivated influenza vaccine

Vaccine ◽  
2002 ◽  
Vol 20 (7-8) ◽  
pp. 1019-1029 ◽  
Author(s):  
Xiuhua Lu ◽  
J.D Clements ◽  
Jacqueline M Katz
Vaccine ◽  
2010 ◽  
Vol 29 (2) ◽  
pp. 166-173 ◽  
Author(s):  
Brian A. Crowe ◽  
Peter Brühl ◽  
Marijan Gerencer ◽  
Michael G. Schwendinger ◽  
Andreas Pilz ◽  
...  

Vaccines ◽  
2021 ◽  
Vol 9 (11) ◽  
pp. 1350
Author(s):  
Mariana Rivera-Patron ◽  
María Moreno ◽  
Mariana Baz ◽  
Paulo M. Roehe ◽  
Samuel P. Cibulski ◽  
...  

Vaccination is the most effective public health intervention to prevent influenza infections, which are responsible for an important burden of respiratory illnesses and deaths each year. Currently, licensed influenza vaccines are mostly split inactivated, although in order to achieve higher efficacy rates, some influenza vaccines contain adjuvants. Although split-inactivated vaccines induce mostly humoral responses, tailoring mucosal and cellular immune responses is crucial for preventing influenza infections. Quillaja brasiliensis saponin-based adjuvants, including ISCOM-like nanoparticles formulated with the QB-90 saponin fraction (IQB90), have been studied in preclinical models for more than a decade and have been demonstrated to induce strong humoral and cellular immune responses towards several viral antigens. Herein, we demonstrate that a split-inactivated IQB90 adjuvanted influenza vaccine triggered a protective immune response, stronger than that induced by a commercial unadjuvanted vaccine, when applied either by the subcutaneous or the intranasal route. Moreover, we reveal that this novel adjuvant confers up to a ten-fold dose-sparing effect, which could be crucial for pandemic preparedness. Last but not least, we assessed the role of caspase-1/11 in the generation of the immune response triggered by the IQB90 adjuvanted influenza vaccine in a mouse model and found that the cellular-mediated immune response triggered by the IQB90-Flu relies, at least in part, on a mechanism involving the casp-1/11 pathway but not the humoral response elicited by this formulation.


2007 ◽  
Vol 26 (2) ◽  
pp. 107-115 ◽  
Author(s):  
Alenka M. Zeman ◽  
Tyson H. Holmes ◽  
Shaye Stamatis ◽  
Wenwei Tu ◽  
Xiao-Song He ◽  
...  

2014 ◽  
Vol 82 (12) ◽  
pp. 5117-5131 ◽  
Author(s):  
Alexander Corbishley ◽  
Nur Indah Ahmad ◽  
Kirsty Hughes ◽  
Michael R. Hutchings ◽  
Sean P. McAteer ◽  
...  

ABSTRACTEnterohemorrhagicEscherichia coli(EHEC) O157:H7 causes hemorrhagic diarrhea and potentially fatal renal failure in humans. Ruminants are considered to be the primary reservoir for human infection. Vaccines that reduce shedding in cattle are only partially protective, and their underlying protective mechanisms are unknown. Studies investigating the response of cattle to colonization generally focus on humoral immunity, leaving the role of cellular immunity unclear. To inform future vaccine development, we studied the cellular immune responses of cattle during EHEC O157:H7 colonization. Calves were challenged either with a phage type 21/28 (PT21/28) strain possessing the Shiga toxin 2a (Stx2a) and Stx2c genes or with a PT32 strain possessing the Stx2c gene only. T-helper cell-associated transcripts at the terminal rectum were analyzed by reverse transcription-quantitative PCR (RT-qPCR). Induction of gamma interferon (IFN-γ) and T-bet was observed with peak expression of both genes at 7 days in PT32-challenged calves, while upregulation was delayed, peaking at 21 days, in PT21/28-challenged calves. Cells isolated from gastrointestinal lymph nodes demonstrated antigen-specific proliferation and IFN-γ release in response to type III secreted proteins (T3SPs); however, responsiveness was suppressed in cells isolated from PT32-challenged calves. Lymph node cells showed increased expression of the proliferation marker Ki67 in CD4+T cells from PT21/28-challenged calves, NK cells from PT32-challenged calves, and CD8+and γδ T cells from both PT21/28- and PT32-challenged calves followingex vivorestimulation with T3SPs. This study demonstrates that cattle mount cellular immune responses during colonization with EHEC O157:H7, the temporality of which is strain dependent, with further evidence of strain-specific immunomodulation.


2013 ◽  
Vol 9 (7) ◽  
pp. 1512-1522 ◽  
Author(s):  
Pierre Van Damme ◽  
Froukje Kafeja ◽  
Vinod Bambure ◽  
Emmanuel Hanon ◽  
Philippe Moris ◽  
...  

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