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首页> 外文期刊>Clinical and Experimental Otorhinolaryngology >In Vitro Streptococcus pneumoniae Biofilm Formation and In Vivo Middle Ear Mucosal Biofilm in a Rat Model of Acute Otitis Induced by S. pneumoniae
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In Vitro Streptococcus pneumoniae Biofilm Formation and In Vivo Middle Ear Mucosal Biofilm in a Rat Model of Acute Otitis Induced by S. pneumoniae

机译:肺炎链球菌诱导的急性中耳炎大鼠模型中的体外肺炎链球菌生物膜形成和体内中耳黏膜生物膜

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Objectives Streptococcus pneumoniae is one of the most common pathogens of otitis media (OM) that exists in biofilm, which enhances the resistance of bacteria against antibiotic killing and diagnosis, compared to the free-floating (planktonic) form. This study evaluated biofilm formation by S. pneumoniae on an abiotic surface and in the middle ear cavity in a rat model of OM. Methods In vitro biofilm formation was evaluated by inoculation of a 1:100 diluted S. pneumoniae cell suspension in a 96-well microplate. Adherent cells were quantified spectrophotometrically following staining with crystal violet by measurement of optical density at 570 nm. The ultrastructure of pneumococcal biofilm was assessed by scanning electron microscopy (SEM). For in vitro biofilm study, S. pneumoniae cell suspensions containing 1×107 colony forming units were injected through transtympanic membrane into the middle ear cavity of Sprague Dawley rats. The ultrastructure of middle ear mucus was observed by SEM 1 and 2 weeks post-inoculation. Results The in vitro study revealed robust biofilm formation by S. pneumoniae after 12-18 hours of incubation in high glucose medium, independent of exogenously supplied competence stimulating peptide and medium replacement. Adherent cells formed three-dimensional structures approximately 20-30 μm thick. The in vivo study revealed that ciliated epithelium was relatively resistant to biofilm formation and that biofilm formation occurred mainly on non-ciliated epithelium of the middle ear cavity. One week after inoculation, biofilm formation was high in 50% of the treated rats and low in 25% of the rats. After 2 weeks, biofilm formation was high and low in 25% and 37.5% of rats, respectively. Conclusion The results imply that glucose level is important for the S. pneumoniae biofilm formation and S. pneumoniae biofilm formation may play important role in the pathophysiology of OM.
机译:目的肺炎链球菌是生物膜中最常见的中耳炎(OM)病原体之一,与自由漂浮(浮游生物)形式相比,它增强了细菌对抗生素杀灭和诊断的抵抗力。这项研究评估了OM大鼠模型中非生物表面和中耳腔中肺炎链球菌的生物膜形成。方法通过在96孔微孔板中接种1:100稀释的肺炎链球菌细胞悬液来评估体外生物膜形成。用结晶紫染色后,通过测量570 nm处的光密度,用分光光度法定量贴壁细胞。肺炎球菌生物膜的超微结构通过扫描电子显微镜(SEM)评估。为了进行体外生物膜研究,通过鼓膜将含有1×10 7 集落形成单位的肺炎链球菌细胞悬液注射到Sprague Dawley大鼠的中耳腔中。接种1周和2周后,通过SEM观察中耳粘液的超微结构。结果体外研究显示,在高葡萄糖培养基中孵育12-18小时后,肺炎链球菌会形成牢固的生物膜,而与外源提供的能力刺激肽和培养基替代无关。贴壁细胞形成约20-30μm厚的三维结构。体内研究表明,纤毛上皮对生物膜的形成具有相对的抵抗力,并且生物膜的形成主要发生在中耳腔的非纤毛上皮上。接种后一周,生物膜形成在50%的受治疗大鼠中较高,而在25%的大鼠中较低。 2周后,分别在25%和37.5%的大鼠中生物膜形成高和低。结论结果提示葡萄糖水平对肺炎链球菌的生物膜形成很重要,而肺炎链球菌的生物膜形成可能在OM的病理生理中起重要作用。

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