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High concentration of coagulase-negative staphylococci carriage among bioaerosols of henhouses in Central China.
BMC Microbiology ( IF 4.2 ) Pub Date : 2020-01-28 , DOI: 10.1186/s12866-020-1709-y
Yuanqing Lu 1 , Qin Lu 1 , Yiluo Cheng 1 , Guoyuan Wen 1 , Qingping Luo 1 , Huabin Shao 1 , Tengfei Zhang 1
Affiliation  

BACKGROUND Coagulase-negative staphylococci (CoNS) are a group of opportunistic pathogens, which are widely spread in the environment. Animal breeding is an important source of pathogen spreading. However, the concentration and characteristics of CoNS in the bioaerosols of henhouses are unclear. RESULTS In this study, we showed that CoNS were significantly increased in bioaerosols of henhouses during the first 60 days, and reached 2.0 × 106 CFU/m3, which account for 75.4% of total bacteria. One hundred and two CoNS isolates from bioaerosols and nasal swabs of farmers were further identified, covering seven species. Among these, 41.2% isolates were Staphylococcus sciuri, which was the predominant species, followed by S. equorum, S. saprophyticus, S. haemolyticus, S. xylosus, S. arlettae and S. gallinarum. There were high rates of resistance to oxacillin in CoNS (49.0%), which were defined as Methicillin-Resistant CoNS (MRCoNS), and 36.3% isolates contained resistance gene mecA. Bioaerosol infection models showed that, chickens exposed to aerosolized S. sciuri had significant induction of inflammatory cytokines interleukin (IL)-1β, IL-6, IL-8 and IL-10 at 5 days post-infection (dpi) in lungs and at 7 dpi in spleens. CONCLUSIONS We reported a high concentration of CoNS in henhouses, and S. sciuri was the preponderant CoNS species. Antibiotic resistance analysis and bioaerosols infection of CoNS further highlighted its hazards on resistance and immunological challenge. These results suggested that, CoNS in bioaerosols could be one serious factor in the henhouses for not only poultry industry but also public health.

中文翻译:

中部地区鸡舍生物气溶胶中高浓度的凝固酶阴性葡萄球菌运输。

背景技术凝固酶阴性葡萄球菌(CoNS)是一组机会病原体,其在环境中广泛传播。动物育种是病原体传播的重要来源。然而,目前尚不清楚鸡舍生物气溶胶中CoNS的浓度和特征。结果在这项研究中,我们显示,在鸡舍的生物气溶胶中,CoNS在头60天显着增加,达到2.0×106 CFU / m3,占细菌总数的75.4%。从农民的生物气溶胶和鼻拭子中进一步鉴定出102株CoNS分离株,覆盖7种。在这些物种中,有41.2%的分离物是主要的物种金黄色葡萄球菌,其次是木贼链球菌,腐生链球菌,溶血链球菌,木糖链球菌,拟南芥链球菌和鸡沙门氏菌。在CoNS中,对奥沙西林的耐药率很高(49.0%),这被定义为耐甲氧西林的CoNS(MRCoNS),其中36.3%的分离株含有耐药基因mecA。生物气溶胶感染模型显示,暴露于气溶胶​​的S. sciuri的鸡在感染后第5天(dpi)在肺中和在感染后第5天具有明显的炎性细胞因子白介素(IL)-1β,IL-6,IL-8和IL-10诱导作用。脾脏为7 dpi。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生的重要因素。它们被定义为耐甲氧西林的CoNS(MRCoNS),其中36.3%的分离株含有抗性基因mecA。生物气溶胶感染模型显示,暴露于气溶胶​​的S. sciuri的鸡在感染后第5天(dpi)在肺中和在感染后第5天具有明显的炎性细胞因子白介素(IL)-1β,IL-6,IL-8和IL-10诱导作用。脾脏为7 dpi。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势物种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生的重要因素。它们被定义为耐甲氧西林的CoNS(MRCoNS),其中36.3%的分离株含有抗性基因mecA。生物气溶胶感染模型显示,暴露于气溶胶​​的S. sciuri的鸡在感染后第5天(dpi)在肺中和在感染后第5天具有明显的炎性细胞因子白介素(IL)-1β,IL-6,IL-8和IL-10诱导作用。脾脏为7 dpi。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势物种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生的重要因素。生物气溶胶感染模型显示,暴露于气溶胶​​的S. sciuri的鸡在感染后第5天(dpi)在肺中和在感染后第5天具有明显的炎性细胞因子白介素(IL)-1β,IL-6,IL-8和IL-10诱导作用。脾脏为7 dpi。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势物种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生方面的重要因素。生物气溶胶感染模型显示,暴露于气溶胶​​的S. sciuri的鸡在感染后第5天(dpi)在肺中和在感染后第5天具有明显的炎性细胞因子白介素(IL)-1β,IL-6,IL-8和IL-10诱导作用。脾脏为7 dpi。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势物种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生的重要因素。感染后第5天(dpi)在肺中的IL-8和IL-10和脾脏中在7 dpi时的IL-8和IL-10。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生方面的重要因素。感染后第5天(dpi)在肺中的IL-8和IL-10和脾脏中在7 dpi时的IL-8和IL-10。结论我们报道了鸡舍中CoNS的浓度很高,而S. sciuri是CoNS的优势物种。CoNS的抗生素耐药性分析和生物气溶胶感染进一步凸显了其对耐药性和免疫挑战的危害。这些结果表明,生物气溶胶中的CoNS不仅是禽类行业的重要因素,而且也是公​​共卫生的重要因素。
更新日期:2020-01-30
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