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1  FP29 could inhibit binding to HeLa cells by Mycoplasma hominis, a distinct human mycoplasma species
2 ducing lactobacillus, Gardnerella vaginalis, Mycoplasma hominis, anaerobic gram-negative rods, and, t
3                                              Mycoplasma hominis and Gardnerella vaginalis also stimul
4 %), fungi (10%) and Mycobacterium abscessus, Mycoplasma hominis and Lactobacillus sp. (one each).
5                    One had high abundance of Mycoplasma hominis and other had high abundance of an un
6 ited sequence similarity with the adhesin of Mycoplasma hominis and the attachment protein of M. geni
7 R for Mycoplasma genitalium and cultured for Mycoplasma hominis and the ureaplasmas.
8                                              Mycoplasma hominis and Ureaplasma parvum do not appear t
9                          Mycoplasmas such as Mycoplasma hominis and Ureaplasma urealyticum have been
10  also used to detect Ureaplasma urealyticum, Mycoplasma hominis, and Candida albicans; bacterial vagi
11 an during the first--Ureaplasma urealyticum, Mycoplasma hominis, and Gardnerella/Bifidobacterium spec
12 aginae, Gardnerella vaginalis, lactobacilli, Mycoplasma hominis, and the human albumin gene (for qual
13 eptibility testing of Mycoplasma pneumoniae, Mycoplasma hominis, and Ureaplasma urealyticum using bro
14  Ureaplasma, spp. Mycoplasma genitalium, and Mycoplasma hominis are associated with infection of the
15                                              Mycoplasma hominis identification was confirmed using se
16 NA, lactobacilli, Gardnerella vaginalis, and Mycoplasma hominis in cervicovaginal lavage (CVL) sample
17     Lactobacilli, Gardnerella vaginalis, and Mycoplasma hominis in cervicovaginal lavage samples were
18                    Invasive and disseminated Mycoplasma hominis infections are well recognized but un
19                                              Mycoplasma hominis is a commensal genitourinary tract or
20                                              Mycoplasma hominis is a commensal in the genital tract o
21 riable adherence-associated (Vaa) antigen of Mycoplasma hominis is an abundant surface lipoprotein ad
22 r surface protein and a putative adhesin (of Mycoplasma hominis, is described.
23                                              Mycoplasma hominis isolates were subjected to whole-geno
24                                We isolated a Mycoplasma hominis-like mycoplasma from a stock culture
25 ecies and could reliably detect <5 copies of Mycoplasma hominis, Mycoplasma fermentans, or a molecula
26 but not in 40 other species representing the Mycoplasma hominis, Mycoplasma pneumoniae, and Spiroplas
27 ed colonization by Gardnerella vaginalis and Mycoplasma hominis, only metronidazole treatment resulte
28  to sterile media, lipopolysaccharide (LPS), Mycoplasma hominis, or Ureaplasma urealyticum.
29  significantly greater loss of viability for Mycoplasma hominis, Prevotella bivia, Prevotella corpori
30 illus iners, Peptoniphilus asaccharolyticus, Mycoplasma hominis, Prevotella bivia, Prevotella corpori
31                                              Mycoplasma hominis should be considered a cause of donor
32 ultures inoculated with clinical isolates of Mycoplasma hominis to determine whether liquid media of
33 d the ability of both viable and heat-killed Mycoplasma hominis to elicit type II epithelial cell pro
34                                              Mycoplasma hominis was detected by culture and qPCR in 2
35 tutively expressed membrane protein (P56) of Mycoplasma hominis was subject to high-frequency phase v
36                                              Mycoplasma hominis was transmitted through amniotic tiss

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