Bifidobacterium animalis subsp. lactis bb12 and B. longum 20099 were used to hydrolyze isoflavone glycosides (IG) to biologically active forms, which are isoflavone aglycones (IA), in soymilk (SM) prepared from soy protein isolate (SPI) and SM supplemented with 0.5% (w/v) of lactulose (SML). Supplementation of lactulose significantly (p <0.05) enhanced the viable counts of B. animalis subsp. lactis bb12 and B. longum 20099 up to 2.34 and 2.15 log CFU/mL, respectively. Bifidobacterium animalis subsp. lactis bb12 and B. longum 20099 utilized 3.32 and 3.75 mg/mL of lactulose at 24 h of incubation, respectively. Supplementation of lactulose also appeared to be a key factor in decreasing the pH of SML. The biotransformation of IG to IA was enhan...
Soymilks comprising soy protein isolate (SPI) and soy germ (SG) at ratios of 9:1 (SPI/SG9:1), 6:4 (S...
Crude enzyme extracts from\ud B. animalis\ud Bb12 and\ud L. delbrueckii\ud ssp.\ud bulgaricus\ud ATC...
The study determined β-glucosidase activity of commercial probiotic organisms for hydrolysis of\ud i...
Bifidobacterium animalis subsp. lactis bb12 and B. longum 20099 were used to hydrolyze isoflavone gl...
Lactobacillus acidophilus 4461, L. acidophilus 4962, L. casei 290, and L. casei 2607 were used to hy...
Lactobacillus acidophilus 4461, L. acidophilus 4962, L. casei 290, and L. casei 2607 were used to hy...
Soymilk prepared using soy-protein isolate supplemented with D-glucose and L-cysteine was fermented ...
Soymilk (SM) lacks lactose; hence supplementation ofSMwith lactose is likely to enhance the growth o...
Two probiotic strains, Bifidobacterium animalis A and B, were used for the biotransformation of isof...
The biologically active forms of the isoflavones, aglycones (IA), in soy are reported to have many ...
The influence of commercial prebiotics (fructo-oligosaccharides and inulin) and sugars (glucose and ...
Crude enzyme extracts from B. animalis Bb12 and L. delbrueckii ssp. bulgaricus ATCC 11842 were used ...
Three strains of Lactobacillus acidophilus, two of Lactobacillus casei and one of Bifidobacterium we...
Bioconversion of isoflavone glucosides and antioxidant activity by probiotic strain (Bifidobacterium...
The study determined β-glucosidase activity of commercial probiotic organisms for hydrolysis of isof...
Soymilks comprising soy protein isolate (SPI) and soy germ (SG) at ratios of 9:1 (SPI/SG9:1), 6:4 (S...
Crude enzyme extracts from\ud B. animalis\ud Bb12 and\ud L. delbrueckii\ud ssp.\ud bulgaricus\ud ATC...
The study determined β-glucosidase activity of commercial probiotic organisms for hydrolysis of\ud i...
Bifidobacterium animalis subsp. lactis bb12 and B. longum 20099 were used to hydrolyze isoflavone gl...
Lactobacillus acidophilus 4461, L. acidophilus 4962, L. casei 290, and L. casei 2607 were used to hy...
Lactobacillus acidophilus 4461, L. acidophilus 4962, L. casei 290, and L. casei 2607 were used to hy...
Soymilk prepared using soy-protein isolate supplemented with D-glucose and L-cysteine was fermented ...
Soymilk (SM) lacks lactose; hence supplementation ofSMwith lactose is likely to enhance the growth o...
Two probiotic strains, Bifidobacterium animalis A and B, were used for the biotransformation of isof...
The biologically active forms of the isoflavones, aglycones (IA), in soy are reported to have many ...
The influence of commercial prebiotics (fructo-oligosaccharides and inulin) and sugars (glucose and ...
Crude enzyme extracts from B. animalis Bb12 and L. delbrueckii ssp. bulgaricus ATCC 11842 were used ...
Three strains of Lactobacillus acidophilus, two of Lactobacillus casei and one of Bifidobacterium we...
Bioconversion of isoflavone glucosides and antioxidant activity by probiotic strain (Bifidobacterium...
The study determined β-glucosidase activity of commercial probiotic organisms for hydrolysis of isof...
Soymilks comprising soy protein isolate (SPI) and soy germ (SG) at ratios of 9:1 (SPI/SG9:1), 6:4 (S...
Crude enzyme extracts from\ud B. animalis\ud Bb12 and\ud L. delbrueckii\ud ssp.\ud bulgaricus\ud ATC...
The study determined β-glucosidase activity of commercial probiotic organisms for hydrolysis of\ud i...