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Impact of biotic interactions on the survival of emerging pathogen Acinetobacter baumannii in aquatic media

机译:生物相互作用对水产媒体新出现病原体肺杆菌存活的影响

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Acinetobacter baumannii is an opportunistic pathogen causing infections in immunocompromised patients. Recent studies recorded its persistence in a variety of abiotic conditions, but data regarding the biotic interactions with other microorganisms are limited. The aim was to assess the interaction of clinically relevant A. baumannii with common faecal bacteria Escherichia coli and Enterococcus faecium. Additionally, the interaction with a bdelloid rotifer Adineta vaga as a potential agent for biological control of A. baumannii was examined. Experiments were conducted in nutrient-poor spring water (SW) and nutrient-rich diluted nutrient broth (DNB) at 22 degrees C. A. baumannii coexisted with E. coli and E. faecium in both media, suggesting the absence of inter-bacterial competition in longterm survival. No difference in the survival of pandrug-resistant, extensively drug-resistant or antibiotic sensitive isolates of A. baumannii was observed. Rotifers contributed to the removal of all tested bacteria, particularly in SW. Rotifers were able to remove 5.5 +/- 1.3 log CFU/mL of A. baumannii in SW and 3.5 +/- 1.7 log CFU/mL in DNB. Additionally, no intracellular growth of A. baumannii inside A. vaga was detected. In wastewater treatment plants and drinking water facilities, grazing by rotifers might be useful for the removal of emerging human pathogens such as A. baumannii from water.
机译:AcineTobacter Baumannii是一种机会主义病原体,导致免疫血肿患者感染。最近的研究记录了其在各种非生物条件下的持续性,但是关于与其他微生物的生物相互作用的数据有限。目的是评估临床相关A. Baumannii与常见的粪便细菌大肠杆菌和肠球菌粪便的相互作用。另外,研究了与Bdelloid Rotifer Adineta Vaga的相互作用作为A.Baumannii的生物控制的潜在剂。在22摄氏度在两种培养基中,在22摄氏度和E.饲料中的营养不良的泉水(SW)和营养素稀释的营养肉汤(DNB)中进行了实验,并在两种媒体中与大肠杆菌和大肠杆菌共存,表明在Longterm中没有细胞间竞争生存。观察到Pandrug抗性,抗毒性抗性或抗生素敏感分离株的生存没有差异。 Rotifers有助于去除所有测试的细菌,特别是在SW中。 Rotifers能够在SW和3.5 +/- 1.7中除去5.5 +/- 1.3 log Cfu / ml A.Baumannii。在DNB中log CFU / ml。另外,检测到A.Vaga内部的A.Baumannii的细胞内生长。在废水处理厂和饮用水设施中,通过轮虫放牧可能可用于从水中去除新兴人类病原体,例如来自水的A.Baumannii。

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