Gut-resident C. perfringens impedes rotavirus vaccine efficacy
Gewirtz, A.; Ngo, V.; Shi, Z.; Jiang, B.
Show abstract
Background & AimsThe extent to which live orally-administered rotavirus (RV) vaccines elicit protective immunity is highly heterogeneous. We hypothesized microbiota composition might influence vaccine efficacy. MethodsWe tested this concept by examining extent to which colonizing mice with segmented filamentous bacteria (SFB) influenced RV vaccine efficacy.Influence of human microbiomes on RV vaccination was studied via administering germ-free mice fecal microbial transplants (FMT) from children with robust or minimal RV vaccine responsiveness. Post-FMT, mice were subjected to vaccination and challenge doses of RV. ResultsSFB administration resulted in a phenotype reminiscent of RV vaccine failure, i.e. minimal generation of RV antigens and, consequently, lack of anti-RV antibodies resulting in proneness to RV challenge once SFB levels diminished. Transplant of microbiomes from children to mice recapitulated donor vaccination phenotype. Specifically, mice receiving FMT from high-responding children exhibited high levels of fecal RV antigen shedding and RV antibodies in response to RV vaccination and, concomitantly, were impervious to RV challenge. In contrast, mice receiving FMT from children who had not responded to RV vaccination exhibited only modest responses to RV challenge and, accordingly, remained prone to RV challenge. Microbiome analysis ruled out a role for SFB but suggested that RV vaccine failure might involve Clostridium perfringens. Oral administration of cultured C. perfringens to gnotobiotic mice partially recapitulated the RV vaccine non-responder phenotype. Analysis of previously-reported microbiome data found C. perfringens abundance in children associated with RV vaccine failure. ConclusionMicrobiota composition influences RV vaccine virus infection and, consequently, protective immunity. C. perfringens may be one, perhaps of many, bacterial species harbored in the intestine of RV-vaccine non-responders that influences RV vaccine outcomes.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genetic requirements of Mycobacterium tuberculosis for survival under pathogen-specific immunity 91%
- Rapid emergence and transmission of virulence-associated mutations in the oral poliovirus vaccine following vaccination campaigns 91%
- Evaluation of mRNA-LNP and adjuvanted protein SARS-CoV-2 vaccines in a maternal antibody mouse model 90%
Similar papers in this journal
- Pre-challenge gut microbial signature predicts RhCMV/SIV vaccine efficacy in rhesus macaques 92%
- Taxonomic and functional shifts in the perinatal gut microbiome of rhesus macaques 90%
- Microbiota of the pregnant mouse: characterization of the bacterial communities in the oral cavity, lung, intestine, and vagina through culture and DNA sequencing 90%
Similar papers in this journal
- Association between maternal breastmilk microbiota composition and rotavirus vaccine response in African, Asian, and European infants: a prospective cohort study 92%
- The Gut Microbiome and Butyrate Differentiate Clostridioides difficile Colonization and Infection in Children 91%
- Microbiota Predict Infections and Acute Graft-Versus-Host Disease after Pediatric Allogeneic Hematopoietic Stem Cell Transplantation 90%
Similar papers in this journal
- Impact of maternal antibodies and microbiota development on the immunogenicity of oral rotavirus vaccine in African, Indian, and European infants: a prospective cohort study 93%
- Gut bacteria-derived sphingolipids alter innate immune responses to oral cholera vaccine antigens 93%
- Vibrio cholerae serotype impacts pathogenicity 93%
Similar papers in this journal
- Antibody responses following COVID-19 vaccination and breakthrough infections in naive and convalescent individuals suggests imprinting to the ancestral strain of SARS-CoV-2 92%
- Aging-associated augmentation of gut microbiome virulence capability drives sepsis severity. 91%
- Dynamic colonization of microbes and their functions after fecal microbiota transplantation for inflammatory bowel disease 91%
"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.