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1.
J Sci Food Agric ; 98(13): 5000-5010, 2018 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-29602227

RESUMEN

BACKGROUND: This study assessed the survival of the fruit-derived and freeze-dried L. plantarum 49, L. brevis 59, L. paracasei 108, L. fermentum 111 and L. pentosus 129 strains during frozen storage and when incorporated into apple, orange, and grape juice stored under refrigeration. Physicochemical parameters of juices containing the freeze-dried Lactobacillus strains and the survival of the test strains in the fruit juices during in vitro digestion were also evaluated. RESULTS: No decreases in survival rates (log N/log N0) of the freeze-dried cells were observed in up to 1 month of storage. The survival rates of the freeze-dried strains L. plantarum 49 and L. paracasei 108 were > 0.75 in up to 4 months of storage. All freeze-dried strains exhibited survival rates of >0.75 in up to 2 weeks of storage in apple juice; only L. plantarum 49 and L. paracasei 108 showed similar survival rates in orange and grape juices in up to 2 weeks of storage. The contents of the monitored organic acids or sugars during storage varied depending on the added strain and the type of fruit juice. At the end of in vitro digestion, L. brevis 59, L. paracasei 108 and L. fermentum 111 showed survival rates of >0.80 in apple juice. CONCLUSION: Apple juice was the best substrate for the survival of the tested freeze-dried Lactobacillus strains over time. L. paracasei 108 and L. plantarum 49 were the strains presenting the best performance for incorporation in potentially probiotic fruit juices. © 2018 Society of Chemical Industry.


Asunto(s)
Citrus sinensis/microbiología , Jugos de Frutas y Vegetales/microbiología , Lactobacillus/crecimiento & desarrollo , Malus/microbiología , Probióticos/química , Vitis/microbiología , Citrus sinensis/química , Aditivos Alimentarios/química , Liofilización , Frutas/química , Frutas/microbiología , Jugos de Frutas y Vegetales/análisis , Lactobacillus/química , Malus/química , Viabilidad Microbiana , Vitis/química
2.
Probiotics Antimicrob Proteins ; 10(4): 704-716, 2018 12.
Artículo en Inglés | MEDLINE | ID: mdl-28836171

RESUMEN

Nine wild Lactobacillus strains, namely Lactobacillus plantarum 53, Lactobacillus fermentum 56, L. fermentum 60, Lactobacillus paracasei 106, L. fermentum 250, L. fermentum 263, L. fermentum 139, L. fermentum 141, and L. fermentum 296, isolated from fruit processing by-products were evaluated in vitro for a series of safety, physiological functionality, and technological properties that could enable their use as probiotics. Considering the safety aspects, the resistance to antibiotics varied among the examined strains, and none of the strains presented hemolytic and mucinolytic activity. Regarding the physiological functionality properties, none of the strains were able to deconjugate bile salts; all of them presented low to moderate cell hydrophobicity and were able to autoaggregate, coaggregate with Listeria monocytogenes and Escherichia coli, and antagonize pathogenic bacteria. Exposure to pH 2 sharply decreased the survival of the examined strains after 1- or 2-h exposure; variable decreases were noted after 3-h exposure to pH 3. Overall, exposure to pH 5 and to bile salts (0.15, 0.3, and 1%) did not decrease the strains' survival. Examined strains presented better ability to survive from the exposure to simulated gastrointestinal conditions in laboratorial media and milk than in grape juice. Considering the technological properties, all the strains were positive for proteolytic activity and EPS and diacetyl production, and most of them had good tolerance to 1-4% NaCl. These results indicate that wild Lactobacillus strains isolated from fruit processing by-products could present performance compatible with probiotic properties and technological features that enable the development of probiotic foods with distinct characteristics.


Asunto(s)
Frutas/microbiología , Lactobacillus/aislamiento & purificación , Probióticos/aislamiento & purificación , Residuos/análisis , Antibiosis , Escherichia coli/crecimiento & desarrollo , Manipulación de Alimentos , Lactobacillus/química , Lactobacillus/genética , Lactobacillus/fisiología , Listeria monocytogenes/crecimiento & desarrollo , Probióticos/química , Probióticos/clasificación
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