Aspinall S T, Wareing D R, Hayward P G, Hutchinson D N
Public Health Laboratory, Royal Preston Hospital, Lancs.
J Clin Pathol. 1993 Sep;46(9):829-31. doi: 10.1136/jcp.46.9.829.
To develop a selective supplement for the recovery of thermophilic Campylobacter spp, including Campylobacter upsaliensis from faeces, using campylobacter blood free selective agar base as the growth medium.
Minimum inhibitory concentrations (MICs) of cefoperazone and of teicoplanin were determined for 51 strains of C upsaliensis, 159 strains of other thermophilic Campylobacter spp, and for 66 Enterobacteriaceae (cefoperazone only). From these results a medium using campylobacter blood free selective agar base incorporating cefoperazone (8 mg/l), amphotericin (10 mg/l), and teicoplanin (4 mg/l)--CAT medium--was formulated and compared with the commercially available campylobacter blood free selective medium (modified CCDA) for isolation of Campylobacter spp from 7000 human faecal specimens. The two media were also compared for the recovery of C upsaliensis from 45 spiked human faeces.
Isolation rates of Campylobacter spp other than C upsaliensis were similar for both media, but the CAT medium alone recovered four of the five strains of C upsaliensis from the faecal samples examined. From the spiked faeces specimens, recovery of C upsaliensis was increased by between 35% and over 200-fold on the CAT medium compared with the modified CCDA.
CAT selective agar was a suitable alternative medium to modified CCDA for the growth of thermophilic Campylobacter spp, including C upsaliensis from faeces.
以弯曲菌无血选择性琼脂基础培养基作为生长培养基,开发一种用于从粪便中分离包括乌普萨拉弯曲菌在内的嗜热弯曲菌属的选择性补充培养基。
测定了头孢哌酮和替考拉宁对51株乌普萨拉弯曲菌、159株其他嗜热弯曲菌属菌株以及66株肠杆菌科细菌(仅针对头孢哌酮)的最低抑菌浓度(MIC)。根据这些结果,配制了一种使用含有头孢哌酮(8毫克/升)、两性霉素(10毫克/升)和替考拉宁(4毫克/升)的弯曲菌无血选择性琼脂基础培养基——CAT培养基,并与市售的弯曲菌无血选择性培养基(改良CCDA)进行比较,用于从7000份人类粪便标本中分离弯曲菌属。还比较了这两种培养基从45份加标的人类粪便中回收乌普萨拉弯曲菌的情况。
对于除乌普萨拉弯曲菌外的其他弯曲菌属,两种培养基的分离率相似,但单独使用CAT培养基从所检测的粪便样本中回收了五株乌普萨拉弯曲菌中的四株。与改良CCDA相比,在加标的粪便标本中,CAT培养基上乌普萨拉弯曲菌的回收率提高了35%至200多倍。
对于包括从粪便中分离乌普萨拉弯曲菌在内的嗜热弯曲菌属的生长,CAT选择性琼脂是改良CCDA的合适替代培养基。