Department of Otorhinolaryngology, Head and Neck Surgery, Tampere University Hospital, Tampere, Finland.
Faculty of Medicine and Health Technology, Tampere University, Tampere, Pirkanmaa, Finland.
Ann Otol Rhinol Laryngol. 2023 Nov;132(11):1330-1335. doi: 10.1177/00034894231151301. Epub 2023 Jan 24.
Detecting bacteria as a causative pathogen of acute rhinosinusitis (ARS) is a challenging task. Electronic nose technology is a novel method for detecting volatile organic compounds (VOCs) that has also been studied in association with the detection of several diseases. The aim of this pilot study was to analyze maxillary sinus secretion with differential mobility spectrometry (DMS) and to determine whether the secretion demonstrates a different VOC profile when bacteria are present.
Adult patients with ARS symptoms were examined. Maxillary sinus contents were aspirated for bacterial culture and DMS analysis. -Nearest neighbor and linear discriminant analysis were used to classify samples as positive or negative, using bacterial cultures as a reference.
A total of 26 samples from 15 patients were obtained. After leave-one-out cross-validation, -nearest neighbor produced accuracy of 85%, sensitivity of 67%, specificity of 94%, positive predictive value of 86%, and negative predictive value of 84%.
The results of this pilot study suggest that bacterial positive and bacterial negative sinus secretion release different VOCs and that DMS has the potential to detect them. However, as the results are based on limited data, further conclusions cannot be made. DMS is a novel method in disease diagnostics and future studies should examine whether the method can detect bacterial ARS by analyzing exhaled air.
检测急性鼻-鼻窦炎(ARS)的致病菌是一项具有挑战性的任务。电子鼻技术是一种用于检测挥发性有机化合物(VOCs)的新方法,也已被用于研究与多种疾病的检测相关的方法。本初步研究的目的是使用差分迁移谱(DMS)分析上颌窦分泌物,并确定当存在细菌时分泌物是否表现出不同的 VOC 特征。
检查有 ARS 症状的成年患者。对上颌窦内容物进行细菌培养和 DMS 分析。使用细菌培养作为参考,使用最近邻和线性判别分析对样本进行分类,分为阳性或阴性。
共从 15 名患者中获得 26 个样本。经过留一法交叉验证,最近邻的准确率为 85%,灵敏度为 67%,特异性为 94%,阳性预测值为 86%,阴性预测值为 84%。
本初步研究结果表明,细菌阳性和细菌阴性的鼻窦分泌物释放不同的 VOC,DMS 有可能检测到这些 VOC。然而,由于结果基于有限的数据,因此无法得出进一步的结论。DMS 是一种疾病诊断的新方法,未来的研究应检验该方法是否可以通过分析呼气来检测细菌性 ARS。