Literature DB >> 24682096

Protection of mice from oral Candidiasis by heat-killed enterococcus faecalis, possibly through its direct binding to Candida albicans.

Sanae A Ishijima1, Kazumi Hayama, Kentaro Ninomiya, Masahiro Iwasa, Masatoshi Yamazaki, Shigeru Abe.   

Abstract

To develop a new therapy against oral candidiasis, a commensal microorganism, Enterococcus faecalis was tested for its ability to modulate Candida growth in vitro and its therapeutic activities against a murine model in vivo. Addition of heat-killed E. faecalis strain EF2001 (EF2001) isolated from healthy human feces to the culture of C. albicans strain TIMM1768 inhibited adherence of the latter to a microtiter plate in a dose dependent manner and Candida cells surrounded by EF2001 were increased. To examine the protective activities of EF2001 in vivo, heat-killed EF2001 was applied orally before and after inoculation of Candida to the tongue of mice previously immunosuppressed. Two days after inoculation this inoculation, both the symptom score and CFU from swabbed-tongue were significantly reduced in the EF2001-treated animals. Histological analysis indicated that EF2001 may potentiate the accumulation of polymorphnuclear cells near a Candida-infected region. These results suggest that oral administration of EF2001 has protective activity against oral candidiasis and that the in vivo activity may be reflected by direct interaction between EF2001 and Candida cells in vitro and the potentiation of an immunostimulatory effect of EF2001.

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Year:  2014        PMID: 24682096     DOI: 10.3314/mmj.55.e9

Source DB:  PubMed          Journal:  Med Mycol J


  4 in total

Review 1.  Ecological Therapeutic Opportunities for Oral Diseases.

Authors:  Anilei Hoare; Philip D Marsh; Patricia I Diaz
Journal:  Microbiol Spectr       Date:  2017-08

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Authors:  Lijun Hu; Mimi Zhou; Andrew Young; Weiwei Zhao; Zhimin Yan
Journal:  BMC Oral Health       Date:  2019-07-10       Impact factor: 2.757

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Authors:  Om Alkhir Alshanta; Khawlah Albashaireh; Emily McKloud; Christopher Delaney; Ryan Kean; William McLean; Gordon Ramage
Journal:  Biofilm       Date:  2022-03-14

4.  Establishment of a polymerase chain reaction-based method for strain-level management of Enterococcus faecalis EF-2001 using species-specific sequences identified by whole genome sequences.

Authors:  Hiroshi Hamamoto; Akihiko Ano Ogasawara; Masahiro Iwasa; Kazuhisa Sekimizu
Journal:  Front Microbiol       Date:  2022-08-12       Impact factor: 6.064

  4 in total

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