Burckhardt Irene, Panitz Jessica, Burckhardt Florian, Zimmermann Stefan
Department for Infectious Diseases, Microbiology and Hygiene, University Hospital of Heidelberg, Heidelberg, Germany.
EPIET Alumni Network (EAN), Heidelberg, Germany.
Biomed Res Int. 2017;2017:4174168. doi: 10.1155/2017/4174168. Epub 2017 Mar 19.
. Optochin susceptibility is one parameter used in the laboratory to identify . However, a single standardized procedure does not exist. Optochin is included neither in the current EUCAST breakpoint tables nor in the CLSI performance standards for antimicrobial susceptibility testing. We wanted to establish an evidence-based protocol for optochin testing for our Total Lab Automation. . We tested seven different agars and four different reading time points (7 h, 12 h, 18 h, and 24 h). To accommodate for serotype diversity, all tests were done with 99 different strains covering 34 different serotypes of . We calculated a multivariable linear regression using data from 5544 inhibition zones. . Reading was possible for all strains at 12 h. Agar type and manufacturer influenced the size of the inhibition zones by up to 2 mm and they varied considerably depending on serotype (up to 3 mm for serotype 3). Depending on agar and reading time point, up to 38% of inhibition zones were smaller than the cut-off of 14 mm; that is, the result of the test was false-negative. . Shortening incubation time from 24 h to 12 h for optochin susceptibility testing is feasible. Agar and incubation time have to be chosen carefully to avoid false-negative results.
Optochin敏感性是实验室用于鉴定……的一个参数。然而,不存在单一的标准化程序。Optochin既未包含在当前的欧盟CAST折点表中,也未包含在CLSI抗菌药物敏感性试验性能标准中。我们希望为我们的全实验室自动化建立一个基于证据的Optochin检测方案。我们测试了七种不同的琼脂和四个不同的读取时间点(7小时、12小时、18小时和24小时)。为了适应血清型多样性,所有测试均使用涵盖34种不同血清型的99种不同菌株进行。我们使用来自5544个抑菌圈的数据进行了多变量线性回归分析。所有菌株在12小时时均可读取结果。琼脂类型和制造商对抑菌圈大小的影响高达2毫米,并且它们根据血清型有很大差异(血清型3高达3毫米)。根据琼脂和读取时间点,高达38%的抑菌圈小于14毫米的临界值;也就是说,测试结果为假阴性。将Optochin敏感性试验的孵育时间从24小时缩短至12小时是可行的。必须谨慎选择琼脂和孵育时间以避免假阴性结果。