In Vitro Evaluation of Swine-Derived Lactobacillus reuteri: Probiotic Properties and Effects on Intestinal Porcine Epithelial Cells Challenged with Enterotoxigenic Escherichia coli K88

J Microbiol Biotechnol. 2016 Jun 28;26(6):1018-25. doi: 10.4014/jmb.1510.10089.

Abstract

Probiotics are considered as the best effective alternatives to antibiotics. The aim of this study was to characterize the probiotic potential of lactobacilli for use in swine farming by using in vitro evaluation methods. A total of 106 lactic acid bacterial isolates, originating from porcine feces, were first screened for the capacity to survive stresses considered important for putative probiotic strains. Sixteen isolates showed notable acid and bile resistance, antibacterial activity, and adherence to intestinal porcine epithelial cells (IPEC-1). One isolate, LR1, identified as Lactobacillus reuteri, was selected for extensive study of its probiotic and functional properties in IPEC-1 cell models. L. reuteri LR1 exhibited good adhesion to IPEC-1 cells and could inhibit the adhesion of enterotoxigenic Escherichia coli (ETEC) to IPEC-1 cells. L. reuteri LR1 could also modulate transcript and protein expression of cytokines involved in inflammation in IPEC-1 cells; the Lactobacillus strain inhibited the ETEC-induced expression of proinflammatory transcripts (IL-6 and TNF-α) and protein (IL-6), and increased the level of anti-inflammatory cytokine (IL-10). Measurement of the permeation of FD-4 showed that L. reuteri LR1 could maintain barrier integrity in monolayer IPEC-1 cells exposed to ETEC. Immunolocalization experiments showed L. reuteri LR1 could also prevent ETEC-induced tight junction ZO-1 disruption. Together, these results indicate that L. reuteri LR1 exhibits desirable probiotic properties and could be a potential probiotic for use in swine production.

Keywords: Lactobacillus reuteri; enterotoxigenic Escherichia coli; in vitro evaluation; probiotic properties.

Publication types

  • Evaluation Study

MeSH terms

  • Animals
  • Antibiosis*
  • Bacterial Adhesion
  • Bile / metabolism
  • Enterotoxigenic Escherichia coli / physiology*
  • Epithelial Cells / microbiology*
  • Feces / microbiology
  • In Vitro Techniques
  • Interleukin-10 / genetics
  • Interleukin-6 / genetics
  • Intestinal Mucosa / cytology
  • Intestinal Mucosa / microbiology*
  • Intestines / microbiology
  • Lactobacillus / classification
  • Lactobacillus / isolation & purification
  • Lactobacillus / physiology*
  • Limosilactobacillus reuteri / isolation & purification*
  • Limosilactobacillus reuteri / physiology
  • Probiotics* / isolation & purification
  • Probiotics* / metabolism
  • Swine / microbiology
  • Tight Junctions / ultrastructure

Substances

  • Interleukin-6
  • Interleukin-10