一种分离人口腔寄生菌Rothia aeria的新型选择性培养基

Taira Kobayashi, Satoshi Uchibori, Osamu Tsuzukibash, Chihiro Uezato, M. Fuchigami, Haruhiko Goto, H. Tamaki, Koji Umezawa, Takaaki Tanaka, M. Ohta
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引用次数: 0

摘要

Roth aeria、Rothia dentocariosa和Rothia mucilaginosa是从人类口腔中分离出来的。其中,R.aeria可引起严重的全身感染性疾病(如支气管炎、心内膜炎、肺炎和败血症)。然而,这种生物在人类口腔中的真正流行程度一直未知。因此,分离和定量R.aeria的选择性培养基对于评估该生物体的患病率和诊断各种R.aeria感染疾病是必要的。为了研究R.aeria在口腔中的分布,开发了一种新的选择性培养基(RAESM)来分离和定量R.aeria。RAESM由葡萄糖酸钠、胰蛋白酶、肉提取物、氟化钠、中性阿哌拉嗪、磷霉素、林可霉素、粘菌素、氨曲南和琼脂组成。根据铜绿假单胞菌16S rDNA基因的部分序列设计了聚合酶链式反应(PCR)引物。对从20名受试者采集的唾液样本中R.aeria的百分比进行了检查。此外,我们检测了来自6名受试者的30个分离株的抗生素敏感性。与添加酵母提取物(BHI-Y)琼脂的Brain Heart Infusion相比,R.aeria在RAESM上的平均生长恢复率为96.6%。其他具有代表性的口腔细菌,包括其他Rothia物种,在选择性培养基上的生长受到显著抑制。PCR引物与R.aeria反应,而不与其他Rothia物种或代表性口腔细菌反应。在BHI-Y琼脂上,所有受试者口腔中的R.aeria占细菌总数的1.0%,为5.9×107CFU/ml。在本研究中获得的R.aeria分离株对大多数抗生素敏感;然而,来自一个受试者的R.aeria分离株对红霉素、林可霉素和克林霉素具有高度耐药性。R.aeria可能是人类口腔中正常菌群的一部分。一种新的选择性培养基RAESM可用于分离R.aeria。此外,研究表明RAESM可用于诊断R.aeria感染。
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Novel Selective Medium for the Isolation of Rothia aeria, Which Is an Inhabitant of the Human Oral Cavity
Roth aeria, Rothia dentocariosa, and Rothia mucilaginosa are isolated from the human oral cavity. Among them, R. aeria can cause severe systemic infection diseases (e.g., bronchitis, endocarditis, pneumonia, and sepsis). However, the veritable prevalence of this organism in the human oral cavity has not ever been known. Thus, the selective medium for the isolation and quantification of R. aeria is necessary to assess the prevalence of this organism, and to diagnose various R. aeria infection diseases. To investigate R. aeria distribution in oral cavities, a novel selective medium (RAESM) was developed for isolating and quantifying R. aeria. RAESM consists of sodium gluconate, tryptone, meat extract, sodium fluoride, acriflavin neutral, fosfomycin, lincomycin, colistin, aztreonam, and agar. Polymerase chain reaction (PCR) primers were designed based on partial sequences of the 16S rDNA genes of R. aeria. The percentage of R. aeria in saliva samples collected from 20 subjects was examined. Moreover, we examined the antibiotic susceptibility of thirty isolates from six subjects. The average growth recovery of R. aeria on RAESM was 96.6% compared with that on Brain Heart Infusion supplemented with Yeast Extract (BHI-Y) agar. Growth of other representative oral bacteria, including other Rothia species, was remarkably inhibited on the selective medium. The PCR primers reacted to R. aeria and did not react to other Rothia species or representative oral bacteria. R. aeria was detected as 1.0% of the total bacteria, 5.9×107CFU/ml, on BHI-Y agar in the oral cavities of all subjects. R. aeria isolates obtained in this study were susceptible to most antibiotics; however R. aeria isolates from one subject were highly resistant to erythromycin, lincomycin, and clindamycin. R. aeria may be a part of the normal flora in the human oral cavities. A novel selective medium, RAESM, was useful for isolating R. aeria. Moreover, it was indicated that RAESM was useful for diagnosing R. aeria infections.
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