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Recombination Lactococcus lactis expressing Helicobacter pylori neutrophil-activating protein A attenuates food allergy symptoms in mice
Author(s) -
Ke Zhang,
Wajid Ameen Mirza,
Peng Ni,
Mingyang Yu,
Chen Wang,
Bin Wang,
Shuailei Chang,
Limin Yue,
Rongguang Zhang,
Guangcai Duan
Publication year - 2021
Publication title -
fems microbiology letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.899
H-Index - 151
eISSN - 1574-6968
pISSN - 0378-1097
DOI - 10.1093/femsle/fnab034
Subject(s) - napa , lactococcus lactis , allergy , food allergy , helicobacter pylori , immunoglobulin e , microbiology and biotechnology , recombinant dna , immunology , biology , immune system , histamine , bacteria , antibody , pharmacology , gene , lactic acid , biochemistry , genetics
Background Food allergy has been a significant public health issue with growing severity, prevalence and limited treatments. The neutrophil-activating protein A subunit (NapA) of Helicobacter pylori has been shown to have therapeutic potential in allergic diseases. Methods The NapA expression efficiency of recombinant Lactococcus lactis(L.lactis) were determined. The effects of recombinant bacterium on food allergy in Balb/c mice were also investigated. Results NapA were delivered and expressed efficiently via L. lactis. The engineered bacterium ameliorated food allergy symptoms (acute diarrhea and intestinal inflammation) and decreased serum histamine levels. In addition, the secretion of OVA-specific IgG2a, IFN-γ was promoted and the level of IL-4, OVA-specific IgE was restrained. Conclusions The recombinant strain may attenuate food allergy in mice through immune regulatory effect, which may be a promising approach for preventing or treating food allergy.

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