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1 e and complex carbohydrate utilization in L. acidophilus.
2 sporter is unusual and may be specific to L. acidophilus.
3 as used to study the effect of Lactobacillus acidophilus 1014 on the fermentation pattern of the colo
4 ia coli, Lactobacillus casei, L. reuteri, L. acidophilus, a Bifidobacterium sp., Lactococcus lactis,
5 as the Gram-positive bacterium Lactobacillus acidophilus, a natural inhabitant of the intestine, indu
6 on the survival and fitness of Lactobacillus acidophilus, a probiotic microbe, in the human gastroint
7 upon stimulation of dendritic cells with L. acidophilus and reveal that this IFN-beta induction requ
9 se features within the genome sequence of L. acidophilus are likely to contribute to the organisms' g
11 ablish proteolytic activity of Lactobacillus acidophilus (ATCC(R) 4356), Lactobacillus casei (ATCC(R)
12 e, aminoglycosides and ciprofloxacin with L. acidophilus being susceptible to penicillin and vancomyc
13 d without hypochlorhydria with Lactobacillus acidophilus BG2FO4 for 7 d failed to change breath-hydro
15 ermine whether oral feeding of Lactobacillus acidophilus BG2FO4 leads to a lactose-tolerant state.
16 ned subjects (n = 18) ingested Lactobacillus acidophilus BG2FO4 twice per day for 7 d and stool sampl
18 ptom scores after ingestion of Lactobacillus acidophilus BG2FO4 were not significantly different from
19 ial species (Escherichia coli, Lactobacillus acidophilus, Bifidobacterium animalis subsp lactis, Faec
20 xclusion, a probiotic (Bio-K+: Lactobacillus acidophilus CL1285, Lactobacillus casei LBC80R, and Lact
21 biotic formulation composed of Lactobacillus acidophilus CL1285, Lactobacillus casei LBC80R, and Lact
23 ogical (Lactococcus lactis and Lactobacillus acidophilus counts, and functionality of the prebiotics
24 study showed the beneficial influence of L. acidophilus CRL 1014 on microbial metabolism and lactoba
25 adding 5 mL of sterile peptone water with L. acidophilus CRL1014 at the concentration of 10(8) CFU/mL
29 Sterne compared with mice vaccinated with L. acidophilus expressing PA-control peptide or an empty ve
37 ccus thermophilus and 50% CFS of Pediococcus acidophilus inhibited tyramine production up to 98% by S
41 ions of lactic acid bacteria, we examined L. acidophilus isolates spanning 92 years and including mul
44 bacterial cultures comprising, Lactobacillus acidophilus LA-5, Bifidobacterium animalis subsp. lactis
45 p. cremoris (R704); QLA - with Lactobacillus acidophilus (LA-5); QLP - with Lactobacillus paracasei s
46 tococcus thermophilus [ST] and Lactobacillus acidophilus [LA]), or the commensal, Bacteroides thetaio
47 inus, Streptococcus sanguinus, Lactobacillus acidophilus, Lactobacillus casei, Actinomyces naeslundii
48 ty of four probiotic bacteria (Lactobacillus acidophilus, Lactobacillus reuteri, Lactobacillus casei
49 resence of probiotic bacteria (Lactobacillus acidophilus, Lactobacillus reuteri, Lactobacillus casei
50 acebo or a probiotic compound (Lactobacillus acidophilus, Lactobacillus rhamnosus, Bifidobacterium bi
54 alteration of cell surface components of L. acidophilus NCFM establishes a potential strategy for th
59 biotic Gram-positive bacterium Lactobacillus acidophilus NCFM is not harmful to C. elegans and that L
60 CFM is not harmful to C. elegans and that L. acidophilus NCFM is unable to colonize the C. elegans in
61 onstrate that probiotic conditioning with L. acidophilus NCFM modulates specific C. elegans immunity
63 he early draft phase genome of Lactobacillus acidophilus NCFM revealed the previously discovered S-la
66 oic acid (LTA) biosynthesis in Lactobacillus acidophilus (NCK2025) rendered this bacterium able to si
67 unts, and functionality of the prebiotics L. acidophilus), physicochemical (pH, proteolysis, organic
68 oxyguanosine kinase (dGK) from Lactobacillus acidophilus R-26 exhibit contrasting conformations manif
69 kinases required for growth of Lactobacillus acidophilus R-26 exist as heterodimeric pairs specific f
71 ategy was established by using Lactobacillus acidophilus to deliver Bacillus anthracis protective ant
72 e of LTA and the ability of LTA-deficient L. acidophilus to regulate inflammation and protect against
73 total RNA from untreated and acid-treated L. acidophilus verified the acid inducibility of this opero
74 ata set (34 isolate genomes) demonstrated L. acidophilus was a low diversity, monophyletic species wi
75 in carbohydrate utilization by Lactobacillus acidophilus was characterized genetically by using whole
76 n inducible gene expression in Lactobacillus acidophilus was investigated by the use of differential
79 cate that commercial use has domesticated L. acidophilus with genetically stable, invariant strains b
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