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1 ans.) and blood-free campylobacter agar with cefoperazone (20 microg/ml), amphotericin B (10 microg/m
2 rbance of the gastric bacterial community by cefoperazone alone was not sufficient to cause gastritis
3 ve boronic acid derivatives, including a new cefoperazone analogue, were synthesized and tested again
4                                              Cefoperazone and cloxacillin proved to be the less and t
5 h of Lactobacillus spp. in the stomach after cefoperazone and promote increased colonization by Enter
6 o C. difficile infection with the antibiotic cefoperazone and then infected with C. difficile strains
7 picillin, cephalothin, cefaclor, cefuroxime, cefoperazone, and cefotaxime) were isolated, and the MBL
8 in (PEG), cephalexin (CFX), cefazolin (CFL), cefoperazone (CFP), cloxacillin (CLO), dicloxacillin (DC
9                                              Cefoperazone diminishes Bacteroidetes populations long t
10             Mice are treated for 5 days with cefoperazone in the drinking water, followed by a single
11 re-independent analysis, the effects of oral cefoperazone on the gastric bacterial microbiota were ob
12 d yeast-bacterium antagonism during the post-cefoperazone recolonization period.
13 mice, but the presence of C. albicans during cefoperazone recovery promoted Bacteroidetes population
14 stritis was not evident until after day 7 in cefoperazone-treated infected mice.
15 herefore, the gastric bacterial community in cefoperazone-treated mice during the first week of posta
16    The introduction of Candida albicans into cefoperazone-treated mice results in changes in bacteria
17                    Our results indicate that cefoperazone-treated mice susceptible to C. albicans inf
18                                              Cefoperazone-treated mice were infected with C. difficil
19 ial diversity is reduced long term following cefoperazone treatment, but the presence of C. albicans