Sun Junhong, Vellappan Sangeevan, Akdemir Johnathan, Steier Liviu, Feinbloom Richard E, Yadavalli Srujana S
Waksman Institute of Microbiology, Rutgers University, Piscataway, NJ USA.
Department of Genetics, School of Arts and Sciences, Rutgers University, Piscataway, NJ USA.
bioRxiv. 2024 Nov 1:2024.05.20.595019. doi: 10.1101/2024.05.20.595019.
Fluorescence imaging is an effective method for detecting porphyrin production in bacteria, leveraging the natural fluorescence properties of porphyrins. Here we use a simple, lightweight, hands-free device for rapid, non-invasive assessments in clinical settings, microbial research, and diagnostic applications. Specifically in this study, we examined 15 bacterial and 2 fungal strains commonly associated with skin, oral, and/or multi-site infections at wound sites for their ability to autofluoresce based on their porphyrin production. We utilized Remel Porphyrin Test Agar and blood agar plates to monitor red fluorescence over several days of growth under aerobic or anaerobic conditions using the wearable REVEAL FC imaging system with a 405 nm violet excitation headlight paired with eyewear carrying 430 nm emission lenses. Fourteen of the fifteen bacteria produced red fluorescence when grown on Porphyrin Test Agar and nine of the fifteen bacteria also displayed red fluorescence on blood agar plates, consistent with their ability to synthesize porphyrins. Taken together, our results elucidate the sensitivity, effectiveness, and convenience of using wearable technology to detect pathogens that produce porphyrin-specific fluorescence. Consequently, the REVEAL system has immense potential to help diagnose wound infections, direct clinical procedures, and guide treatment options in real-time using fluorescence imaging all while minimizing the risk of contamination.
荧光成像利用卟啉的天然荧光特性,是检测细菌中卟啉生成的有效方法。在此,我们使用一种简单、轻便、无需手动操作的设备,用于临床环境、微生物研究和诊断应用中的快速、非侵入性评估。具体而言,在本研究中,我们检测了15种通常与皮肤、口腔和/或伤口部位的多部位感染相关的细菌菌株和2种真菌菌株,根据它们产生卟啉的能力来检测其自发荧光。我们使用Remel卟啉测试琼脂和血琼脂平板,在有氧或无氧条件下培养数天,使用可穿戴的REVEAL FC成像系统监测红色荧光,该系统配备405纳米紫光激发头灯和带有430纳米发射透镜的眼镜。15种细菌中的14种在卟啉测试琼脂上生长时产生红色荧光,15种细菌中的9种在血琼脂平板上也显示红色荧光,这与其合成卟啉的能力一致。综上所述,我们的结果阐明了使用可穿戴技术检测产生卟啉特异性荧光的病原体的敏感性、有效性和便利性。因此,REVEAL系统具有巨大的潜力,可帮助诊断伤口感染、指导临床操作并实时指导治疗方案,同时将污染风险降至最低。