Nonpathogenic Lactobacillus rhamnosus activates the inflammasome and antiviral responses in human macrophages

Minja Miettinen, Taija Pietilä, Riina A. Kekkonen, Matti Kankainen, Sinikka Latvala, Jaana Pirhonen, Pamela Österlund, Riitta Anneli Korpela, Ilkka Julkunen

Research output: Contribution to journalArticleScientificpeer-review

Abstract

n this study, we have utilized global gene expression profiling to compare the responses of human primary macrophages to two closely related, well-characterized Lactobacillus rhamnosus strains GG and LC705, since our understanding of the responses elicited by nonpathogenic bacteria in human innate immune system is limited. Macrophages are phagocytic cells of the innate immune system that perform sentinel functions to initiate appropriate responses to surrounding stimuli. Macrophages that reside on gut mucosa encounter ingested and intestinal bacteria. Bacteria of Lactobacillus genus are nonpathogenic and used in food and as supplements with health-promoting probiotic potential. Our results demonstrate that live GG and LC705 induced quantitatively different gene expression profiles in macrophages. A gene ontology analysis revealed functional similarities and differences in responses to GG and LC705 that were reflected in host defense responses. Both GG and LC705 induced interleukin-1β production in macrophages that required caspase-1 activity. LC705, but not GG, induced type I interferon -dependent gene activation that correlated with its ability to prevent influenza A virus replication and production of viral proteins in macrophages. Our results indicate that nonpathogenic bacteria are able to activate the inflammasome. In addition, our results suggest that L. rhamnosus may prime the antiviral potential of human macrophages.

Original languageEnglish
JournalGut Microbes
Volume3
Issue number6
Pages (from-to)510-522
Number of pages13
ISSN1949-0976
Publication statusPublished - Nov 2012
MoE publication typeA1 Journal article-refereed

Fields of Science

  • 1183 Plant biology, microbiology, virology

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