The right time and place: time- and age-dependent vaccine-enhanced mucosal immunity to parasite infection
Liu, W.; McNeilly, T. N.; Mitchell, M.; Burgess, S. T.; Nisbet, A. J.; Matthews, J. B.; Babayan, S. A.
Show abstract
Individuals vary broadly in their response to vaccination and subsequent exposure to infection, causing persistence of both infection and transmission. The prevalence of poor vaccine responders hampers the development of vaccines, especially against parasitic helminths. Yet despite having substantial economic and societal impact, the immune mechanisms that underlie such variability, especially at the site of parasite infection, remain poorly understood. Previous trials using a prototype vaccine for the control of the gastric parasitic Teladorsagia circumcincta, one of the highest impact parasites affecting sheep, revealed substantial variation in protection between individuals, which we hypothesised may in part be driven by age at vaccination. Here, to characterise how immunity at the mucosal site of infection developed in vaccinated lambs, we inserted gastric cannulae into the abomasa (true stomachs) of three-month- and six-month-old lambs before vaccination, and performed a longitudinal analysis of their local immune response during subsequent challenge infection. We found that the vaccine caused systemic changes in the baseline immune profile within the abomasum before any parasite exposure had occurred and reduced parasite burden and egg output once lambs were infected, regardless of age. However, age affected how vaccinated lambs responded to subsequent infection across multiple immune pathways, with only a minority of protective immune pathways being independent of age. This resulted in younger lambs being more susceptible to infection regardless of vaccine status. The identification of age-dependent (mostly adaptive) and age-independent (mostly innate) protective immune pathways should help refine the formulation of vaccines against these and potentially other helminth parasites of ruminants, and could indicate specificities of anti-helminth immunity more generally.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Trickle infection and immunity to Trichuris muris 95%
- Maternal schistosomiasis impairs offspring IL-4 production and B cell expansion 93%
- Systems analysis of immune responses to attenuated P. falciparum malaria sporozoite vaccination reveals excessive inflammatory signatures correlating with impaired immunity 93%
Similar papers in this journal
- Vaccine-specific immune responses against Mycobacterium ulcerans infection in a low-dose murine challenge model 94%
- Tick-borne coinfections modulate CD8+ T cell response and progressive leishmaniosis 94%
- Parenteral Vaccination with recombinant EtpA glycoprotein impairs enterotoxigenic E. coli colonization 92%
Similar papers in this journal
- T cell responses in repeated controlled human schistosome infection compared to natural exposure 95%
- High-Resolution Proteomics Unveils Salivary Gland Disruption and Saliva-Hemolymph Protein Exchange in Plasmodium-Infected Mosquitoes 93%
- A Second Generation Leishmanization Vaccine with a Markerless Attenuated Leishmania major Strain using CRISPR gene editing 93%
Similar papers in this journal
- Randomized field trial of a therapeutic vaccine against Trypanosoma cruzi natural infection in dogs and correlates for efficacy 94%
- Preimmunization correlates of protection shared across malaria vaccine trials in adults 92%
- PvDBPII-Matrix M elicits polyfunctional antibodies that limit parasite growth in a challenge trial 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.