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bifidobacterium spp  (ATCC)


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    Structured Review

    ATCC bifidobacterium spp
    Bifidobacterium Spp, supplied by ATCC, used in various techniques. Bioz Stars score: 95/100, based on 49 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/bifidobacterium+spp/Bifidobacterium+animalis%3B+subsp%2E+animalis/pm41780866-40-8-14
    Average 95 stars, based on 49 article reviews
    bifidobacterium spp - by Bioz Stars, 2026-10
    95/100 stars

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    other:

    Article Title: Treatment methods and compositions
    Article Snippet: In some of these embodiments, the Bifidobacterium spp. can be B. bifidum ATCC 35914.

    Derivative Assay:

    Article Title: Microbes as medicine.
    Article Snippet: Notably, postbiotics offer distinct advantages over live bacterial preparations such as probiotics or synbiotics.90–92 For example, postbiotics have potential to be safely utilized in immuno- compromised individuals without the risk of infection, combined with antimicrobials without compromising efficacy, and used in regions where stable storage conditions are limited. .. Recently, a postbiotic derived from B. infantis ATCC 15697 metabolismof breastmilk tryptophanwas found to significantly reduce interleukin-8 response after IL-1β stimulus in immature enterocytes.93 This suggests that a postbiotic approach could be a safe and effective alternative for premature neonates at risk of developing necrotizing enterocolitis.94 Several recent reviews have further discussed the potential of postbiotic metabolites such as short-chain fatty acids that play critical roles in gut health by serving as energy sources for colono- cytes, lowering gut pH to inhibit pathogenic bacteria, and modulating inflammatory responses.95–97 Mechanism studies on postbiotics have been limited to mostly Lac- tobacillus strains, which are a rich source of bacteriocins and other types of metabolites with pathogen-inhibiting properties.98 Focusing on microbiota-modulating effects, Warda et al. showed that postbiotic Lactobacillus LB—a heat-treated preparation of biomass and fer- mentate from Limosilactobacillus fermentum CNCM MA65/4E-1b and Lactobacillus delbrueckii CNCMMA65/4E-2z—could selectively stimu- late the growth of Bifidobacterium spp. in a fecal fermentationmodel of the human gut.99 This activity was shown to be heat and enzyme sta- ble, not attributed to lactose, and Lactobacillus LB-like preparations from other commercial probiotics were unable to reproduce bifidogenic effects on the model strain B. infantis ATCC 15697.99 Dynamic cross-feeding activities could beone conceivable explanation, although another explanation is that these results serve to highlight the impor- tance of strain-specificity, reiterating what is known about probiotic mechanisms. ..

    Bacteria:

    Article Title: Microbes as medicine.
    Article Snippet: Notably, postbiotics offer distinct advantages over live bacterial preparations such as probiotics or synbiotics.90–92 For example, postbiotics have potential to be safely utilized in immuno- compromised individuals without the risk of infection, combined with antimicrobials without compromising efficacy, and used in regions where stable storage conditions are limited. .. Recently, a postbiotic derived from B. infantis ATCC 15697 metabolismof breastmilk tryptophanwas found to significantly reduce interleukin-8 response after IL-1β stimulus in immature enterocytes.93 This suggests that a postbiotic approach could be a safe and effective alternative for premature neonates at risk of developing necrotizing enterocolitis.94 Several recent reviews have further discussed the potential of postbiotic metabolites such as short-chain fatty acids that play critical roles in gut health by serving as energy sources for colono- cytes, lowering gut pH to inhibit pathogenic bacteria, and modulating inflammatory responses.95–97 Mechanism studies on postbiotics have been limited to mostly Lac- tobacillus strains, which are a rich source of bacteriocins and other types of metabolites with pathogen-inhibiting properties.98 Focusing on microbiota-modulating effects, Warda et al. showed that postbiotic Lactobacillus LB—a heat-treated preparation of biomass and fer- mentate from Limosilactobacillus fermentum CNCM MA65/4E-1b and Lactobacillus delbrueckii CNCMMA65/4E-2z—could selectively stimu- late the growth of Bifidobacterium spp. in a fecal fermentationmodel of the human gut.99 This activity was shown to be heat and enzyme sta- ble, not attributed to lactose, and Lactobacillus LB-like preparations from other commercial probiotics were unable to reproduce bifidogenic effects on the model strain B. infantis ATCC 15697.99 Dynamic cross-feeding activities could beone conceivable explanation, although another explanation is that these results serve to highlight the impor- tance of strain-specificity, reiterating what is known about probiotic mechanisms. ..

    Activity Assay:

    Article Title: Microbes as medicine.
    Article Snippet: Notably, postbiotics offer distinct advantages over live bacterial preparations such as probiotics or synbiotics.90–92 For example, postbiotics have potential to be safely utilized in immuno- compromised individuals without the risk of infection, combined with antimicrobials without compromising efficacy, and used in regions where stable storage conditions are limited. .. Recently, a postbiotic derived from B. infantis ATCC 15697 metabolismof breastmilk tryptophanwas found to significantly reduce interleukin-8 response after IL-1β stimulus in immature enterocytes.93 This suggests that a postbiotic approach could be a safe and effective alternative for premature neonates at risk of developing necrotizing enterocolitis.94 Several recent reviews have further discussed the potential of postbiotic metabolites such as short-chain fatty acids that play critical roles in gut health by serving as energy sources for colono- cytes, lowering gut pH to inhibit pathogenic bacteria, and modulating inflammatory responses.95–97 Mechanism studies on postbiotics have been limited to mostly Lac- tobacillus strains, which are a rich source of bacteriocins and other types of metabolites with pathogen-inhibiting properties.98 Focusing on microbiota-modulating effects, Warda et al. showed that postbiotic Lactobacillus LB—a heat-treated preparation of biomass and fer- mentate from Limosilactobacillus fermentum CNCM MA65/4E-1b and Lactobacillus delbrueckii CNCMMA65/4E-2z—could selectively stimu- late the growth of Bifidobacterium spp. in a fecal fermentationmodel of the human gut.99 This activity was shown to be heat and enzyme sta- ble, not attributed to lactose, and Lactobacillus LB-like preparations from other commercial probiotics were unable to reproduce bifidogenic effects on the model strain B. infantis ATCC 15697.99 Dynamic cross-feeding activities could beone conceivable explanation, although another explanation is that these results serve to highlight the impor- tance of strain-specificity, reiterating what is known about probiotic mechanisms. ..

    Probiotics:

    Article Title: Microbes as medicine.
    Article Snippet: Notably, postbiotics offer distinct advantages over live bacterial preparations such as probiotics or synbiotics.90–92 For example, postbiotics have potential to be safely utilized in immuno- compromised individuals without the risk of infection, combined with antimicrobials without compromising efficacy, and used in regions where stable storage conditions are limited. .. Recently, a postbiotic derived from B. infantis ATCC 15697 metabolismof breastmilk tryptophanwas found to significantly reduce interleukin-8 response after IL-1β stimulus in immature enterocytes.93 This suggests that a postbiotic approach could be a safe and effective alternative for premature neonates at risk of developing necrotizing enterocolitis.94 Several recent reviews have further discussed the potential of postbiotic metabolites such as short-chain fatty acids that play critical roles in gut health by serving as energy sources for colono- cytes, lowering gut pH to inhibit pathogenic bacteria, and modulating inflammatory responses.95–97 Mechanism studies on postbiotics have been limited to mostly Lac- tobacillus strains, which are a rich source of bacteriocins and other types of metabolites with pathogen-inhibiting properties.98 Focusing on microbiota-modulating effects, Warda et al. showed that postbiotic Lactobacillus LB—a heat-treated preparation of biomass and fer- mentate from Limosilactobacillus fermentum CNCM MA65/4E-1b and Lactobacillus delbrueckii CNCMMA65/4E-2z—could selectively stimu- late the growth of Bifidobacterium spp. in a fecal fermentationmodel of the human gut.99 This activity was shown to be heat and enzyme sta- ble, not attributed to lactose, and Lactobacillus LB-like preparations from other commercial probiotics were unable to reproduce bifidogenic effects on the model strain B. infantis ATCC 15697.99 Dynamic cross-feeding activities could beone conceivable explanation, although another explanation is that these results serve to highlight the impor- tance of strain-specificity, reiterating what is known about probiotic mechanisms. ..

    Article Title: Bioactive metabolite profiling in mixed-species probiotic yogurt.
    Article Snippet: This study determined the bioactive peptide and SCFA profiles of mixed-species yogurt incorporating Bifidobacterium spp., namely, Bifidobacterium bifidum (B. bifidum) ATCC 11863, Bifidobacterium breve ATCC 15700, and Bifidobacterium animalis ssp. animalis ATCC 25527, and L. rhamnosus GG/ATCC 53103 with the aim of producing probiotic yogurt with enhanced functionality. .. The probiotics, namely, L. rhamnosus ATCC 53103/GG and Bifidobacterium spp. (B. animalis ssp. animalis ATCC 25527, B. bifidum ATCC 11863, and B. breve 15700; KWIK-STIK, Microbiologics, MN), were resuscitated and stored as previously described (Marole et al., 2024). .. Raw cow milk obtained from the University of Pretoria Research Farm (Pretoria, South Africa) was aliquoted into 250-mL sterile Schott bottles and incorporated with 1.5% stabilizer (AFRISTAB DD25, Synercore, Johannesburg, South Africa).



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    Hydrolysis and Transgalactosylation Reactions in the Process of Lactose Conversion Catalyzed by β-Galactosidases

    Journal: ACS Omega

    Article Title: A GH42 β‑Galactosidase from the Human Isolate Bifidobacterium breve DSM 20213: Biochemical and Transgalactosylation Properties Reveal the Potential for Galacto-oligosaccharides Synthesis

    doi: 10.1021/acsomega.5c06811

    Figure Lengend Snippet: Hydrolysis and Transgalactosylation Reactions in the Process of Lactose Conversion Catalyzed by β-Galactosidases

    Article Snippet: In a study by Ambrogi et al., four GH42 β-galactosidases from Bifidobacterium spp. displayed transgalactosylation activity with varying GOS yields including B. breve UCC2003 (18.0%), B. bifidum LMG 13195 (13.7%), B. longum subsp. longum NCIMB 8809 (22.2%), and B. longum subsp. infantis ATCC 15697 (14.2%).

    Techniques: