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Microbial investigations in throat swab and tracheal aspirate specimens are beneficial to predict the corresponding endotracheal tube biofilm flora among intubated neonates with ventilator-associated pneumonia

机译:喉咙拭子和气管吸汗标本的微生物研究有利于预测插管新生儿中的相应的气管插管生物膜菌群与呼吸机相关的肺炎

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Ventilator-associated pneumonia (VAP) is a common nosocomial infection in neonatal intensive care units with high morbidity and mortality. Bacterial biofilm in the endotracheal tube (ET) provides a notable and persistent source of pathogens that may cause VAP, and thus is important for VAP detection. However, during intubation microbial investigations in ET, samples are unavailable due to the infeasibility of collecting ET samples during intubation of neonates. It is therefore of great importance to find alternative sources of samples that can help identify the ET biofilm flora. In the present study, the microbial signatures of throat swabs and tracheal aspirates were compared with ET biofilm samples from VAP neonates using 16S ribosomal RNA gene polymerase chain reaction, denaturing gradient gel electrophoresis (DGGE), cloning and sequencing. Sequences were assigned to phylogenetic species using BLAST. Microbial diversity and richness among the three types of specimens were compared based on their DGGE fingerprints, and taxonomic characteristics based on the BLAST results. The microbial richness and diversity of ET biofilms were similar to tracheal aspirate yet significantly different from throat swab samples (P<0.05). Compared with ET biofilms, the overall constituent ratio of microflora was significantly different in throat swab and tracheal aspirate samples (P<0.05). However tracheal aspirate samples were useful for predicting Staphylococcus sp. in ET biofilms with a sensitivity of 85.7% and a specificity of 83.3%. The sensitivity for the combination of tracheal aspirate and throat swab samples to detect Staphylococcus sp. in ET biofilms was 100%. The detection of Pseudomonas sp. in throat swabs assisted its identification in ET biofilms (sensitivity 33.3% and specificity 100%). The results of the present study suggest that microbial investigations in throat swab and tracheal aspirate samples are beneficial for identifying the ET biofilm flora. There may therefore be clinical applications of using substituent samples to identify pathogens in ET biofilms for VAP surveillance among intubated neonates.
机译:呼吸机相关的肺炎(VAP)是新生儿密集型护理单位的常见医院感染,具有高发病率和死亡率。中间气管管(ET)中的细菌生物膜提供了可能导致VAP的显着且持续的病原体源,因此对于VAP检测非常重要。然而,在插管过程中,由于在新生儿插管期间收集ET样品的不可行性,样品不可用。因此,寻找可以帮助识别Et Biofilm Flora的替代样本来源非常重要。在本研究中,使用16S核糖体RNA基因聚合酶链反应,使梯度凝胶电泳(DGGE),克隆和测序比较从VAP Neonates的Et Biofilm样品与Et Biofilm样品进行比较咽拭子和气管吸出物的微生物签名。使用爆炸分配给系统发育物种的序列。基于其DGGE指纹比较了三种样本中的微生物多样性和丰富性,以及基于爆炸结果的分类特征。 Et Biofilms的微生物丰富和多样性类似于气管插气含有显着不同的气管拭子(P <0.05)。与ET生物膜相比,喉咙拭子和气管抽吸样品的微生物的总体构成比显着不同(P <0.05)。然而,气管吸汗样品可用于预测葡萄球菌SP。在Et生物膜中的敏感性为85.7%,特异性为83.3%。气管抽吸物和咽喉拭子样品组合的敏感性检测葡萄球菌SP。在Et Biofilms in 100%。 Pseudomonas sp的检测。在咽拭子中,辅助其鉴定在Et生物膜(敏感度33.3%和100%)中。本研究结果表明,咽喉棉签和气管出血样品中的微生物调查有利于鉴定Et Biofilm Flora。因此,使用取代基样品可以鉴定预热新生儿的VAP监测的ET生物膜中的病原体,可能存在临床应用。

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