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Development of a Plating Medium for Selection of Helicobacter pylori from Water Samples

机译:从水样中选择幽门螺杆菌的电镀培养基的开发

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The goal of this study was to develop a simple plating medium to allow large-scale screening of water samples for the presence of Helicobacter pylori. Five conventional plating media (brain heart infusion, brucella agar, Columbia blood agar base, campylobacter agar kit Skirrow, and HPSPA medium), each containing a commercial antibiotic supplement, were initially evaluated. Eight strains selected as common waterborne organisms (Acinetobacter, Aeromonas, Bacillus, Escherichia coli, Enterobacter, Enterococcus, Helicobacter pylori, and Pseudomonas strains) were individually plated onto each of these media. Three organisms (Acinetobacter, E. coli, and H. pylori) were able to grow on all five media. This growth was unacceptable since Helicobacter grows very slowly and competing organisms must be inhibited for up to 7 days. Therefore, a more selective medium (HP agar) containing a novel mixture of growth supplements plus amphotericin B and polymyxin B was developed. This medium also included a phenol red color indicator for urease production. Aliquots of nonsterile well water that contained native flora (Flavobacterium, Serratia, Citrobacter, Pasteurella, Ochrobactrum, Rahnella, and unidentified molds) and were further adulterated with the eight strains listed above (106 CFU of each strain per 100 ml) were spiked with H. pylori and were plated. In spite of the heavy mixed microbial load, only H. pylori colonies grew during 7 days of incubation at 37°C. The color indicator system allowed presumptive identification of H. pylori colonies sooner (12 to 20 h) than the conventional media tested allowed. The HP formulation developed in this study provides a medium with superior selectivity for H. pylori from mixed microbial populations in water and reduces the time required to complete the assay.
机译:这项研究的目的是开发一种简单的平板培养基,以便大规模筛选水样品中是否存在幽门螺杆菌。首先评估了五种常规的平板培养基(脑灌注液,布鲁氏菌琼脂,哥伦比亚血琼脂基质,弯曲杆菌琼脂试剂盒Skirrow和HPSPA培养基),每种培养基均包含市售抗生素补充剂。选择了八种作为常见的水生生物的菌株(不动杆菌气单胞菌芽孢杆菌大肠杆菌肠杆菌< / em>,肠球菌幽门螺杆菌假单胞菌菌株)分别铺在每种培养基上。三种生物(不动杆菌大肠杆菌幽门螺杆菌)能够在所有五种培养基上生长。这种生长是不可接受的,因为 Helicobacter 生长非常缓慢,并且竞争生物必须被抑制长达7天。因此,开发了一种更具选择性的培养基(HP琼脂),其中含有生长补剂加上两性霉素B和多粘菌素B的新型混合物。该介质还包括用于尿素酶生产的酚红色指示剂。包含天然菌群的非无菌井水的等分试样(黄杆菌沙雷氏菌柠檬杆菌巴斯德氏菌 O骨纲 Rahnella 和未知的霉菌),并进一步掺入上述八种菌株(每100 ml每株10 6 CFU)并掺入< em> H。幽门螺杆菌并接种。尽管混合微生物负荷很重,但只有H。幽门螺杆菌菌落在37°C孵育7天期间生长。颜色指示器系统允许对 H进行推定识别。幽门螺杆菌菌落比常规培养基允许的早(12至20小时)。在这项研究中开发的HP配方为 H提​​供了具有优越选择性的培养基。从水中的混合微生物种群中分离出幽门螺杆菌,从而缩短了完成测定所需的时间。

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