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1 curtisii, Peptostreptococcus anaerobius, and Gardnerella vaginalis.
2                                              Gardnerella vaginalis, a facultative anaerobe, was clear
3                       Mycoplasma hominis and Gardnerella vaginalis also stimulated TNF- alpha secreti
4 rapies resulted in decreased colonization by Gardnerella vaginalis and Mycoplasma hominis, only metro
5 diversity CSTs and specific bacterial phyla (Gardnerella vaginalis and Prevotella bivia) were strongl
6 appearance of lactobacilli and overgrowth of Gardnerella vaginalis and resident anaerobic vaginal bac
7            Both the proportion of women with Gardnerella vaginalis and the concentration of G. vagina
8 trichia/Sneathia species, Atopobium species, Gardnerella vaginalis, and a Megasphaera-like bacterium,
9 ella pallens, Parvimonas micra, Megasphaera, Gardnerella vaginalis, and Atopobium vaginae and decreas
10 l Vaginosis-Associated Bacterium 2 (BVAB-2), Gardnerella vaginalis, and Megasphaera-1--and a single o
11                                Lactobacilli, Gardnerella vaginalis, and Mycoplasma hominis in cervico
12                       HIV RNA, lactobacilli, Gardnerella vaginalis, and Mycoplasma hominis in cervico
13 athogenic bacteria: Lactobacillus crispatus, Gardnerella vaginalis, and Neisseria gonorrhoeae All vag
14 e to the vaginal pathogens Candida albicans, Gardnerella vaginalis, and Neisseria gonorrhoeae, as wel
15 n the two sampling devices for Candida spp., Gardnerella vaginalis, and Trichomonas vaginalis.
16 ; P = .009) bacterial communities containing Gardnerella vaginalis associated with vaginal drying, wh
17 of lactobacilli and higher concentrations of Gardnerella vaginalis, Atopobium vaginae, and Prevotella
18                         Lactobacillus iners, Gardnerella vaginalis, Atopobium vaginae, Megasphaera I,
19 ms associated with vaginal health or disease:Gardnerella vaginalis,Atopobium vaginae, BV-associated b
20             Previous studies have shown that Gardnerella vaginalis can utilize iron-loaded human lact
21         When the two bacteria were combined, Gardnerella vaginalis did not interfere with the immunos
22 ners was not, and that a subspecies clade of Gardnerella vaginalis explained the genus association wi
23                       Our data suggests that Gardnerella vaginalis had the highest virulence potentia
24  but a typical bacterial vaginosis pathogen, Gardnerella vaginalis, had no effect.
25                                              Gardnerella vaginalis is a bacterial species associated
26                                              Gardnerella vaginalis is a predominant bacterial species
27                                              Gardnerella vaginalis is associated with a spectrum of c
28 man immunodeficiency virus (HIV) type 1, and Gardnerella vaginalis is frequently isolated from the ge
29 odeficiency virus (HIV) type 1 expression by Gardnerella vaginalis is one possible cause for an incre
30                                              Gardnerella vaginalis is the most common species found i
31                          Of the 20 biotype 1 Gardnerella vaginalis isolates analyzed, 10 from patient
32 mid suspension quantified Atopobium vaginae, Gardnerella vaginalis, lactobacilli, Mycoplasma hominis,
33  assays targeting 16S ribosomal RNA genes of Gardnerella vaginalis, Lactobacillus crispatus, BVAB1, B
34 f hydrogen peroxide-producing lactobacillus, Gardnerella vaginalis, Mycoplasma hominis, anaerobic gra
35  Trichomonas vaginalis, Candida species, and Gardnerella vaginalis (one of the causative agents of ba
36 al components of the score (ie, detection of Gardnerella vaginalis or Bacteroides spp and non-detecti
37 eptotrichia/Sneathia species (P=0.0002), and Gardnerella vaginalis (P<0.0001).
38 by Lactobacillus (59.2%) and the other where Gardnerella vaginalis predominated with other anaerobic
39                                              Gardnerella vaginalis predominates in bacterial vaginosi
40 or of BV than detection of bacteria, such as Gardnerella vaginalis, previously linked to BV, highligh
41                Three BV-associated bacteria, Gardnerella vaginalis, Prevotella bivia, and Peptostrept
42 ytolysins from Streptococcus intermedius and Gardnerella vaginalis, respectively.
43                                          Six Gardnerella vaginalis strains were examined for the abil
44                                              Gardnerella vaginalis, the bacterial species most freque
45 demonstrate that the BV-associated bacterium Gardnerella vaginalis uses sialidase to break down and d
46     Six strains of Prevotella bivia and 4 of Gardnerella vaginalis were examined for nutrient substra
47 V is initiated by the sexual transmission of Gardnerella vaginalis, which has the appropriate virulen
48 ial activity against the primary BV pathogen Gardnerella vaginalis with a minimum inhibitory concentr

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