Published February 7, 2022 | Version v1

Dataset related to article "Functional characterization and immunomodulatory properties of Lactobacillus helveticus strains isolated from Italian hard cheeses "

  • 1. CREA Research Centre for Animal Production and Aquaculture (CREA-ZA), Lodi, Italy
  • 2. Department of Experimental Oncology, European Institute of Oncology, Milan, Italy.
  • 3. IRCCS Humanitas Research Hospital, via Manzoni 56, 20072 Rozzano (Mi) - Italy
  • 4. CREA Research Centre for Animal Production and Aquaculture (CREA-ZA), Lodi, Italy.
  • 5. IRCCS Humanitas Research Hospital, via Manzoni 56,20089 Rozzano (Mi) - Italy AND Humanitas University, Department of Biomedical Sciences, Via Rita Levi Montalcini 4, 20072 Pieve Emanuele – Milan, Italy

Description

This record contains raw datarelated to article "Functional characterization and immunomodulatory properties of Lactobacillus helveticus strains isolated from Italian hard cheeses "

Lactobacillus helveticus carries many properties such as the ability to survive gastrointestinal transit, modulate the host immune response, accumulate biopeptides in milk, and adhere to the epithelial cells that could contribute to improving host health. In this study, the applicability as functional cultures of four L. helveticus strains isolated from Italian hard cheeses was investigated. A preliminary strain characterization showed that the ability to produce folate was generally low while antioxidant, proteolytic, peptidase, and β-galactosidase activities resulted high, although very variable, between strains. When stimulated moDCs were incubated in the presence of live cells, a dose-dependent release of both the pro-inflammatory cytokine IL-12p70 and the anti-inflammatory cytokine IL-10, was shown for all the four strains. In the presence of cell-free culture supernatants (postbiotics), a dose-dependent, decrease of IL-12p70 and an increase of IL-10 was generally observed. The immunomodulatory effect took place also in Caciotta-like cheese made with strains SIM12 and SIS16 as bifunctional (i.e., immunomodulant and acidifying) starter cultures, thus confirming tests in culture media. Given that the growth of bacteria in the cheese was not necessary (they were killed by pasteurization), the results indicated that some constituents of non-viable bacteria had immunomodulatory properties. This study adds additional evidence for the positive role of L. helveticus on human health and suggests cheese as a suitable food for delivering candidate strains and modulating their anti-inflammatory properties.

 

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Related works

Is supplement to
33493208 (PMID)
10.1371/journal.pone.0245903 (DOI)