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1 sexually transmitted infection (STI) causing vaginitis.
2 n microscopy was associated with Trichomonas vaginitis.
3 very, low birth weight, cervical cancer, and vaginitis.
4 ntibodies are protective in a mouse model of vaginitis.
5 tory role for gamma/delta T cells in Candida vaginitis.
6 one-associated susceptibility to C. albicans vaginitis.
7 ques as an alternative model of experimental vaginitis.
8 nfirmed a nonprotective role for PMNs during vaginitis.
9 sis and immunity associated with C. albicans vaginitis.
10 ant than systemic CMI for protection against vaginitis.
11 en at the time that they were suffering from vaginitis.
12 culation does not mediate protection against vaginitis.
13 nal candidiasis suffering from acute Candida vaginitis.
14 us acidophilus in the prevention of candidal vaginitis.
15 ispose women to recurring attacks of Candida vaginitis.
16 onses previously characterized during murine vaginitis.
17 tions with various prevalences of infectious vaginitis.
20 olates obtained from patients suffering from vaginitis and four isolates from commercial products in
21 croflora in women with signs and symptoms of vaginitis and is comparable in diagnostic accuracy to th
22 rable effects by systemic CMI or PMN against vaginitis and suggest that if local T cells are importan
24 lis and M. hominis bacterial counts, Candida vaginitis, and herpes simplex virus (HSV) were positivel
26 iae is a ubiquitous, ascomycetous yeast, and vaginitis caused by this organism has been reported only
27 all three with two episodes of S. cerevisiae vaginitis, different strains were isolated during the re
29 years of age who presented with symptoms of vaginitis, exposure to T. vaginalis, or multiple sexual
34 ndidiasis and a murine model of experimental vaginitis indicate that systemic cell-mediated immunity
35 creased susceptibility to experimental yeast vaginitis, indicating a role for alpha(1,2)fucosylated c
36 ALS gene expression patterns in a murine vaginitis model were identical to those from the clinica
39 sted odds ratio, 18.34; 95% CI, 4.95-67.96), vaginitis or vulvovaginitis (adjusted odds ratio, 5.17;
41 nts (P=.0001; positive association), Candida vaginitis (P=.007), and HSV (P=.03) were significantly a
46 VC) and from an animal model of experimental vaginitis suggest that deficiencies in immune function s
47 ows to lower titers and produces less severe vaginitis than wild-type or gC rescued virus, indicating
49 ontaining the three common organisms causing vaginitis: Trichomonas vaginalis, Candida species, and G
50 dependent reference standard for trichomonal vaginitis (TV), a positive result in either assay was de
52 the combined search terms of diagnosis with vaginitis, vaginal discharge, candidiasis, bacterial vag
54 he importance of fungal morphogenesis during vaginitis was addressed with a two-pronged approach.
55 of three patients suffering from C. glabrata vaginitis were clonally plated on agar containing CuSO(4
56 lcer disease, vaginal discharge, and Candida vaginitis were significantly associated with HIV-1 seroc
58 onents for the immunopathogenesis of Candida vaginitis, with implications for transition from benign
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