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Protein deficiency reduces efficacy of oral attenuated human rotavirus vaccine in a human infant fecal microbiota transplanted gnotobiotic pig model.

Authors :
Miyazaki A
Kandasamy S
Michael H
Langel SN
Paim FC
Chepngeno J
Alhamo MA
Fischer DD
Huang HC
Srivastava V
Kathayat D
Deblais L
Rajashekara G
Saif LJ
Vlasova AN
Source :
Vaccine [Vaccine] 2018 Oct 08; Vol. 36 (42), pp. 6270-6281. Date of Electronic Publication: 2018 Sep 12.
Publication Year :
2018

Abstract

Background: Low efficacy of rotavirus (RV) vaccines in developing African and Asian countries, where malnutrition is prevalent, remains a major concern and a challenge for global health.<br />Methods: To understand the effects of protein malnutrition on RV vaccine efficacy, we elucidated the innate, T cell and cytokine immune responses to attenuated human RV (AttHRV) vaccine and virulent human RV (VirHRV) challenge in germ-free (GF) pigs or human infant fecal microbiota (HIFM) transplanted gnotobiotic (Gn) pigs fed protein-deficient or -sufficient bovine milk diets. We also analyzed serum levels of tryptophan (TRP), a predictor of malnutrition, and kynurenine (KYN).<br />Results: Protein-deficient pigs vaccinated with oral AttHRV vaccine had lower protection rates against diarrhea post-VirHRV challenge and significantly increased fecal virus shedding titers (HIFM transplanted but not GF pigs) compared with their protein-sufficient counterparts. Reduced vaccine efficacy in protein-deficient pigs coincided with altered serum IFN-α, TNF-α, IL-12 and IFN-γ responses to oral AttHRV vaccine and the suppression of multiple innate immune parameters and HRV-specific IFN-γ producing T cells post-challenge. In protein-deficient HIFM transplanted pigs, decreased serum KYN, but not TRP levels were observed throughout the experiment, suggesting an association between the altered TRP metabolism and immune responses.<br />Conclusion: Collectively, our findings confirm the negative effects of protein deficiency, which were exacerbated in the HIFM transplanted pigs, on innate, T cell and cytokine immune responses to HRV and on vaccine efficacy, as well as on TRP-KYN metabolism.<br /> (Copyright © 2018 The Authors. Published by Elsevier Ltd.. All rights reserved.)

Details

Language :
English
ISSN :
1873-2518
Volume :
36
Issue :
42
Database :
MEDLINE
Journal :
Vaccine
Publication Type :
Academic Journal
Accession number :
30219368
Full Text :
https://doi.org/10.1016/j.vaccine.2018.09.008