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使用基于智能手机的荧光显微镜鉴定复杂样本中的病原菌。

Identification of pathogenic bacteria in complex samples using a smartphone based fluorescence microscope.

作者信息

Müller Vilhelm, Sousa José M, Ceylan Koydemir Hatice, Veli Muhammed, Tseng Derek, Cerqueira Laura, Ozcan Aydogan, Azevedo Nuno F, Westerlund Fredrik

机构信息

Department of Biology and Biological Engineering, Chalmers University of Technology Gothenburg Sweden

Biomode 2, S.A., Edifício GNRation Praça Conde Agrolongo no. 123 4700-312 Braga Portugal.

出版信息

RSC Adv. 2018 Oct 29;8(64):36493-36502. doi: 10.1039/c8ra06473c. eCollection 2018 Oct 26.

Abstract

Diagnostics based on fluorescence imaging of biomolecules is typically performed in well-equipped laboratories and is in general not suitable for remote and resource limited settings. Here we demonstrate the development of a compact, lightweight and cost-effective smartphone-based fluorescence microscope, capable of detecting signals from fluorescently labeled bacteria. By optimizing a peptide nucleic acid (PNA) based fluorescence hybridization (FISH) assay, we demonstrate the use of the smartphone-based microscope for rapid identification of pathogenic bacteria. We evaluated the use of both a general nucleic acid stain as well as species-specific PNA probes and demonstrated that the mobile platform can detect bacteria with a sensitivity comparable to that of a conventional fluorescence microscope. The PNA-based FISH assay, in combination with the smartphone-based fluorescence microscope, allowed us to qualitatively analyze pathogenic bacteria in contaminated powdered infant formula (PIF) at initial concentrations prior to cultivation as low as 10 CFU per 30 g of PIF. Importantly, the detection can be done directly on the smartphone screen, without the need for additional image analysis. The assay should be straightforward to adapt for bacterial identification also in clinical samples. The cost-effectiveness, field-portability and simplicity of this platform will create various opportunities for its use in resource limited settings and point-of-care offices, opening up a myriad of additional applications based on other fluorescence-based diagnostic assays.

摘要

基于生物分子荧光成像的诊断通常在设备精良的实验室中进行,一般不适用于偏远和资源有限的环境。在此,我们展示了一种基于智能手机的紧凑型、轻便且经济高效的荧光显微镜的开发,该显微镜能够检测来自荧光标记细菌的信号。通过优化基于肽核酸(PNA)的荧光杂交(FISH)检测方法,我们展示了基于智能手机的显微镜在快速鉴定病原菌方面的应用。我们评估了通用核酸染色剂以及物种特异性PNA探针的使用,并证明该移动平台检测细菌的灵敏度与传统荧光显微镜相当。基于PNA的FISH检测方法与基于智能手机的荧光显微镜相结合,使我们能够在培养前对受污染的婴儿配方奶粉(PIF)中初始浓度低至每30克PIF含10个菌落形成单位(CFU)的病原菌进行定性分析。重要的是,检测可以直接在智能手机屏幕上完成,无需额外的图像分析。该检测方法也应易于适用于临床样本中的细菌鉴定。该平台的成本效益、现场便携性和简单性将为其在资源有限的环境和即时护理办公室中的使用创造各种机会,基于其他基于荧光的诊断检测方法开辟无数其他应用。

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