Schwabe L D, Randall E L, Miller-Catchpole R, Squires C I, Gottschall R L
Department of Pathology and Laboratory Medicine, Evanston Hospital, Illinois 60201.
Diagn Microbiol Infect Dis. 1990 Jan-Feb;13(1):3-8. doi: 10.1016/0732-8893(90)90046-x.
The Oxoid Signal (Oxoid U.S.A. Inc., Columbia, Maryland) system was compared with the nonradiometric BACTEC NR-660 (Johnston Laboratories, Towson, Maryland) system for detection of bacteria in 2714 blood cultures. The volume of blood collected into 20 ml blood-collection tubes containing sodium polyanetholsulfonate (SPS) (Becton Dickinson, Vacutainer Systems, Rutherford, New Jersey) ranged from 10 to 20 ml with an average of 15 ml. Subsequently, equal volumes of blood were inoculated into each system. A total of 250 organisms was isolated (9.6%), of which 149 (5.5%) were considered significant while 111 isolates from 98 cultures (3.6%) were contaminants. Of the significant isolates 32.9% were aerobic Gram-negative rods, 53.0% aerobic Gram-positive cocci, 5.4% anaerobes, 7.4% yeasts, and two isolates of Neisseria meningitidis. Ninety-five isolates were recovered in both systems, 29 by Bactec only and 25 by Signal only. Of the isolates recovered there were no significant differences in detection between the two systems with the exception of anaerobes (p less than 0.005). The median detection times for many of the most commonly isolated organisms--Enterobacteriaceae, streptococci, and Staphylococcus aureus--were very similar in both systems, ranging from 14 to 21 hours. With the remaining organisms recovered, the median times in hours for BAC-TEC and Signal, respectively, were 31 and 47 for Staphylococcus epidermidis, 48 and 60 for Bacteroides, 39 and 168 for yeast, and 16.5 and 168 for N. meningitidis. Oxoid Signal compares favorably with the BACTEC system. Its main advantages are: (1) it requires no instrumentation; (2) it is characterized by ease of detection; and (3) it uses a single-bottle system.(ABSTRACT TRUNCATED AT 250 WORDS)
将Oxoid信号系统(美国Oxoid公司,马里兰州哥伦比亚)与非放射性的BACTEC NR - 660系统(约翰斯顿实验室,马里兰州陶森)用于检测2714份血培养中的细菌。收集到含有聚茴香脑磺酸钠(SPS)(BD公司,真空采血管系统,新泽西州卢瑟福)的20 ml血培养管中的血液量为10至20 ml,平均为15 ml。随后,将等量血液接种到每个系统中。共分离出250株微生物(9.6%),其中149株(5.5%)被认为是有意义的,而来自98份培养物的111株分离株(3.6%)为污染物。在有意义的分离株中,32.9%是需氧革兰氏阴性杆菌,53.0%是需氧革兰氏阳性球菌,5.4%是厌氧菌,7.4%是酵母菌,还有2株脑膜炎奈瑟菌。两个系统均回收了95株分离株,仅Bactec系统回收了29株,仅Signal系统回收了25株。在回收的分离株中,除厌氧菌外(p小于0.005),两个系统在检测方面无显著差异。许多最常见分离微生物——肠杆菌科、链球菌和金黄色葡萄球菌——在两个系统中的中位检测时间非常相似,为14至21小时。对于其余回收的微生物,BACTEC和Signal的中位小时数分别为:表皮葡萄球菌31和47,拟杆菌48和60,酵母菌39和168,脑膜炎奈瑟菌16.5和168。Oxoid Signal与BACTEC系统相比具有优势。其主要优点是:(1)无需仪器;(2)检测容易;(3)采用单瓶系统。(摘要截短于250字)