Oglio, F.; Cadavere, A.; De Aloe, M.; Lintura, A.; Michelini, M.; Luongo, C.; Coppola, S.; Agizza, A.; Caldaria, E.; Carucci, L.
New Postbiotic Derived from Sequential Fermentation of Two Lacticaseibacillus Strains Exerts Beneficial Effects on Epithelial Gut Barrier and Innate Immunity in Human Enterocytes. Microorganisms 2026, 14, 931.
https://doi.org/10.3390/microorganisms14040931
AMA Style
Oglio F, Cadavere A, De Aloe M, Lintura A, Michelini M, Luongo C, Coppola S, Agizza A, Caldaria E, Carucci L.
New Postbiotic Derived from Sequential Fermentation of Two Lacticaseibacillus Strains Exerts Beneficial Effects on Epithelial Gut Barrier and Innate Immunity in Human Enterocytes. Microorganisms. 2026; 14(4):931.
https://doi.org/10.3390/microorganisms14040931
Chicago/Turabian Style
Oglio, Franca, Alessia Cadavere, Monia De Aloe, Anna Lintura, Marco Michelini, Chiara Luongo, Serena Coppola, Alessandra Agizza, Erika Caldaria, and Laura Carucci.
2026. "New Postbiotic Derived from Sequential Fermentation of Two Lacticaseibacillus Strains Exerts Beneficial Effects on Epithelial Gut Barrier and Innate Immunity in Human Enterocytes" Microorganisms 14, no. 4: 931.
https://doi.org/10.3390/microorganisms14040931
APA Style
Oglio, F., Cadavere, A., De Aloe, M., Lintura, A., Michelini, M., Luongo, C., Coppola, S., Agizza, A., Caldaria, E., & Carucci, L.
(2026). New Postbiotic Derived from Sequential Fermentation of Two Lacticaseibacillus Strains Exerts Beneficial Effects on Epithelial Gut Barrier and Innate Immunity in Human Enterocytes. Microorganisms, 14(4), 931.
https://doi.org/10.3390/microorganisms14040931