TY - JOUR
T1 - Differential effects of Escherichia coli nissle and lactobacillus rhamnosus strain GG on human rotavirus binding, infection, and B cell immunity
AU - Kandasamy, Sukumar
AU - Vlasova, Anastasia N.
AU - Fischer, David
AU - Kumar, Anand
AU - Chattha, Kuldeep S.
AU - Rauf, Abdul
AU - Shao, Lulu
AU - Langel, Stephanie N.
AU - Rajashekara, Gireesh
AU - Saif, Linda J.
N1 - This work was supported by National Institute of Allergy and Infectious Diseases/ National Institutes of Health Grant R01 A1099451 (to L.J.S.) and federal funds appropriated to the Ohio Agricultural Research and Development Center of Ohio State University. We thank the technical assistance of Dr. Juliette Hanson, R. Wood, J. Ogg, Thavamathi Annamalai, and Kyle T. Scheuer.
PY - 2016/2/15
Y1 - 2016/2/15
N2 - Rotavirus (RV) causes significant morbidity and mortality in children worldwide. The intestinal microbiota plays an important role in modulating host-pathogen interactions, but little is known about the impact of commonly used probiotics on human RV (HRV) infection. In this study, we compared the immunomodulatory effects of Gram-positive (Lactobacillus rhamnosus strain GG [LGG]) and Gram-negative (Escherichia coli Nissle [EcN]) probiotic bacteria on virulent human rotavirus (VirHRV) infection and immunity using neonatal gnotobiotic piglets. Gnotobiotic piglets were colonized with EcN, LGG, or EcN+LGG or uncolonized and challenged with VirHRV. Mean peak virus shedding titers and mean cumulative fecal scores were significantly lower in EcNcolonized compared with LGG-colonized or uncolonized piglets. Reduced viral shedding titers were correlated with significantly reduced small intestinal HRV IgA Ab responses in EcN-colonized compared with uncolonized piglets post-VirHRV challenge. However the total IgA levels post-VirHRV challenge in the intestine and pre-VirHRV challenge in serum were significantly higher in EcN-colonized than in LGG-colonized piglets. In vitro treatment of mononuclear cells with these probiotics demonstrated that EcN, but not LGG, induced IL-6, IL-10, and IgA, with the latter partially dependent on IL-10. However, addition of exogenous recombinant porcine IL-10 + IL-6 to mononuclear cells cocultured with LGG significantly enhanced IgA responses. The greater effectiveness of EcN in moderating HRV infection may also be explained by the binding of EcN but not LGG to Wa HRV particles or HRV 2/4/6 virus-like particles but not 2/6 virus-like particles. Results suggest that EcN and LGG differentially modulate RV infection and B cell responses.
AB - Rotavirus (RV) causes significant morbidity and mortality in children worldwide. The intestinal microbiota plays an important role in modulating host-pathogen interactions, but little is known about the impact of commonly used probiotics on human RV (HRV) infection. In this study, we compared the immunomodulatory effects of Gram-positive (Lactobacillus rhamnosus strain GG [LGG]) and Gram-negative (Escherichia coli Nissle [EcN]) probiotic bacteria on virulent human rotavirus (VirHRV) infection and immunity using neonatal gnotobiotic piglets. Gnotobiotic piglets were colonized with EcN, LGG, or EcN+LGG or uncolonized and challenged with VirHRV. Mean peak virus shedding titers and mean cumulative fecal scores were significantly lower in EcNcolonized compared with LGG-colonized or uncolonized piglets. Reduced viral shedding titers were correlated with significantly reduced small intestinal HRV IgA Ab responses in EcN-colonized compared with uncolonized piglets post-VirHRV challenge. However the total IgA levels post-VirHRV challenge in the intestine and pre-VirHRV challenge in serum were significantly higher in EcN-colonized than in LGG-colonized piglets. In vitro treatment of mononuclear cells with these probiotics demonstrated that EcN, but not LGG, induced IL-6, IL-10, and IgA, with the latter partially dependent on IL-10. However, addition of exogenous recombinant porcine IL-10 + IL-6 to mononuclear cells cocultured with LGG significantly enhanced IgA responses. The greater effectiveness of EcN in moderating HRV infection may also be explained by the binding of EcN but not LGG to Wa HRV particles or HRV 2/4/6 virus-like particles but not 2/6 virus-like particles. Results suggest that EcN and LGG differentially modulate RV infection and B cell responses.
UR - https://www.scopus.com/pages/publications/84958581217
UR - https://www.scopus.com/pages/publications/84958581217#tab=citedBy
U2 - 10.4049/jimmunol.1501705
DO - 10.4049/jimmunol.1501705
M3 - Article
C2 - 26800875
AN - SCOPUS:84958581217
SN - 0022-1767
VL - 196
SP - 1780
EP - 1789
JO - Journal of Immunology
JF - Journal of Immunology
IS - 4
ER -