4.1 Article

Screening of probiotic lactobacilli for inhibition of Shigella sonnei and the macromolecules involved in inhibition

期刊

ANAEROBE
卷 18, 期 5, 页码 498-503

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.anaerobe.2012.08.007

关键词

Lactobacilli; Shigella sonnei; Inhibition; Adhesion

资金

  1. Ministry of Science and Technology of the People's Republic of China [2007AA10Z354, 2006BAD04A09]
  2. Fundamental Research Funds for the Central Universities [HIT.NSRIF.2012082]
  3. R&D Program Grants from Educational Committee of Heilongjiang Province [1055GZD03-2004]

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A total of 91 lactobacilli were screened for antimicrobial activity against Shigella sonnei. Agar-well assay showed that 16 lactobacilli displayed strong antibacterial activity against S. sonnei. The nature of these antimicrobial agents were investigated and shown to be dependent on their production of organic acids. Adhesion tests showed that 6 lactobacilli demonstrated good adherence to HT-29 cells, of these Lactobacillus johnsonii F0421 were selected for acid and bile salt tolerance properties. We further research on L. johnsonii F0421 inhibition of S. sonnei adhesion to HT-29 cells. The result showed that L. johnsonii F0421 exhibited significant inhibitory activity and excluded, competed and displaced adhered S. sonnei by 48%, 38% and 33%, respectively. In order to elucidate the inhibitory functions of macromolecules involved in L. johnsonii F0421, the cells were treated with 5 NI LiCl, 0.05 NI sodium metaperiodate and heating and assayed for inhibition activity. The results suggested a role of S-layer proteins on L. johnsonii F0421 cells in inhibition of the adhesion process, but carbohydrates do not seem to be involved. SDS-PAGE analysis confirmed the presence of S-layer proteins with dominant bands of approximately 40 kDa. In addition, 100 mu g/well of S-layer proteins from L. johnsonii F0421 cells were effective in inhibiting adhesion of S. sonnei to HT-29 cells. These findings suggest that L. johnsonii F0421 possesses the capacity for inhibition of S. sonnei activity as well as probiotic properties, which could serve as a potential novel and effective probiotic strain for use in the food industry. (C) 2012 Elsevier Ltd. All rights reserved.

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