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慢性中耳炎患者鼓膜附着的致病结构的直接分析。

Direct Analysis of Pathogenic Structures Affixed to the Tympanic Membrane during Chronic Otitis Media.

机构信息

1 Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.

2 Beckman Institute for Advanced Science and Technology, Urbana, Illinois, USA.

出版信息

Otolaryngol Head Neck Surg. 2018 Jul;159(1):117-126. doi: 10.1177/0194599818766320. Epub 2018 Mar 27.

Abstract

Objective To characterize otitis media-associated structures affixed to the mucosal surface of the tympanic membrane (TM) in vivo and in surgically recovered in vitro samples. Study Design Prospective case series without comparison. Setting Outpatient surgical care center. Subjects and Methods Forty pediatric subjects scheduled for tympanostomy tube placement surgery were imaged intraoperatively under general anesthesia. Postmyringotomy, a portable optical coherence tomography (OCT) imaging system assessed for the presence of any biofilm affixed to the mucosal surface of the TM. Samples of suspected microbial infection-related structures were collected through the myringotomy incision. The sampled site was subsequently reimaged with OCT to confirm collection from the original image site on the TM. In vitro analysis based on confocal laser scanning microscope (CLSM) images of fluorescence in situ hybridization-tagged samples and polymerase chain reaction (PCR) provided microbiological characterization and verification of biofilm activity. Results OCT imaging was achieved for 38 of 40 subjects (95%). Images from 38 of 38 (100%) of subjects observed with OCT showed the presence of additional microbial infection-related structures. Thirty-four samples were collected from these 38 subjects. CLSM images provided evidence of clustered bacteria in 32 of 33 (97%) of samples. PCR detected the presence of active bacterial DNA signatures in 20 of 31 (65%) of samples. Conclusion PCR and CLSM analysis of fluorescence in situ hybridization-stained samples validates the presence of active bacteria that have formed into a middle ear biofilm that extends across the mucosal layer of the TM. OCT can rapidly and noninvasively identify middle ear biofilms in subjects with severe and persistent cases of otitis media.

摘要

目的 描述中耳炎相关结构在鼓膜(TM)黏膜表面的体内和体外手术回收样本中的特征。

研究设计 无对照的前瞻性病例系列研究。

设置 门诊手术护理中心。

受试者和方法 40 名计划接受鼓膜造口术的儿科患者在全身麻醉下进行术中成像。鼓膜切开术后,便携式光学相干断层扫描(OCT)成像系统评估是否存在固定在 TM 黏膜表面的任何生物膜。通过鼓膜切开术采集疑似微生物感染相关结构的样本。随后,使用 OCT 对采样部位进行重新成像,以确认其来自 TM 上的原始图像部位。基于荧光原位杂交标记样本的共焦激光扫描显微镜(CLSM)图像和聚合酶链反应(PCR)的体外分析提供微生物特征和生物膜活性的验证。

结果 40 名受试者中的 38 名(95%)成功进行了 OCT 成像。38 名(100%)接受 OCT 观察的受试者的图像显示存在额外的微生物感染相关结构。从这 38 名受试者中采集了 34 个样本。CLSM 图像提供了 33 个样本中的 32 个(97%)存在聚集细菌的证据。PCR 在 31 个样本中的 20 个(65%)中检测到活跃的细菌 DNA 特征。

结论 通过荧光原位杂交染色样本的 PCR 和 CLSM 分析,证实了已形成中耳生物膜的活跃细菌的存在,该生物膜横跨 TM 的黏膜层延伸。OCT 可以快速、非侵入性地识别患有严重和持续性中耳炎的患者中耳生物膜。

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