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Production and Validation of the Use of Gamma Phage for Identification of Bacillus anthracis

机译:γ噬菌体鉴定炭疽芽孢杆菌的生产和验证

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摘要

Gamma phage specifically lyses vegetative cells of Bacillus anthracis and serves as part of the basis for identification of isolates from agar cultures. We report our study to standardize gamma phage production and preparation and to validate the assay for routine use. Unstable phage preparations were largely reduced through propagation of phage on blood agar cultures of the avirulent B. anthracis strain CDC684 and were adequately stable for extended storage beyond 1 to 2 years at 4°C, provided that the preparation initially gave rise to clearly discernible plaques (macroplaques, 5 to 10 mm in diameter) on dilution at 1:8 or greater during potency testing with the Sterne strain or its equivalent. The primary intent of the assay was to test nonhemolytic, ground-glass-appearing bacterial B. anthracis-like colonies arising from culture of clinical or nonclinical samples on 5% sheep blood agar. Specifically, the assay was designed to show clear or primarily clear circular zones of lysis on bacterial lawns at the site of gamma phage inoculation after incubation at 35 °C ± 2°C for 20 h. When tested with 51 B. anthracis strains and 49 similar non-B. anthracis Bacillus species, the analytical specificity was >95%, a value that is intentionally low because our study design included two rare nonsusceptible B. anthracis strains as well as a rare susceptible non-B. anthracis strain, B. cereus ATCC 4342. Repeatability, day-to-day precision, and analyst-to-analyst precision were superior. The assay was rugged to variations among phage lots, phage concentration, amounts of bacterial inoculum, and incubation times as short as 6 to 8 h. System suitability evaluation showed improved robustness when bacterial lawns were tested with high- and low-density inoculum using the first and second quadrants of a serial four-quadrant streak on 5% sheep blood agar plates.
机译:伽玛噬菌体特异性裂解炭疽芽孢杆菌的营养细胞,并作为从琼脂培养物中鉴定分离物的基础的一部分。我们报告了我们的研究,以标准化γ噬菌体的生产和制备,并验证该测定方法可用于常规用途。不稳定的噬菌体制剂可通过将噬菌体在无毒的炭疽芽孢杆菌CDC684的血琼脂培养物中繁殖而大大减少,并且如果在开始时会产生明显可识别的噬菌斑,则该稳定性足以在4°C下延长保存1至2年。在用Sterne菌株或其等效物进行效能测试时,以1:8或更大的比例稀释(直径5至10 mm的巨噬斑)。该测定法的主要目的是测试在5%的羊血琼脂上培养临床或非临床样品而产生的非溶血性的,出现毛玻璃的类细菌炭疽杆菌样菌落。具体而言,该分析法设计为在35°C±2°C孵育20小时后,在细菌菌丝上的γ-噬菌体接种部位显示出清晰或基本清晰的圆形裂解区。当用51个炭疽芽孢杆菌菌株和49个类似的非B菌株进行测试时。炭疽芽孢杆菌种,分析特异性> 95%,该值故意偏低,因为我们的研究设计包括了两种罕见的不敏感炭疽芽孢杆菌菌株以及一种罕见的易感非芽孢杆菌菌株。炭疽芽孢杆菌,B。cereus ATCC4342。重复性,日常精度和分析人员到分析人员的精度都很高。该测定法可适应噬菌体批次,噬菌体浓度,细菌接种量和孵育时间(短至6至8小时)之间的差异。当在5%的羊血琼脂平板上使用连续四象限条纹的第一象限和第二象限用高密度和低密度接种物测试细菌草坪时,系统适用性评估显示了更高的鲁棒性。

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