Department of Chemistry, Louisiana State University, 232 Choppin Hall, Baton Rouge, LA 70803, USA.
Analyst. 2012 Jan 7;137(1):87-97. doi: 10.1039/c1an15658f. Epub 2011 Oct 18.
Single-molecule detection (SMD) has demonstrated some attractive benefits for many types of biomolecular analyses including enhanced processing speed by eliminating processing steps, elimination of ensemble averaging and single-molecule sensitivity. However, it's wide spread use has been hampered by the complex instrumentation required for its implementation when using fluorescence as the readout modality. We report herein a simple and compact fluorescence single-molecule instrument that is straightforward to operate and consisted of fiber optics directly coupled to a microfluidic device. The integrated fiber optics served as waveguides to deliver the laser excitation light to the sample and collecting the resulting emission, simplifying the optical requirements associated with traditional SMD instruments by eliminating the need for optical alignment and simplification of the optical train. Additionally, the use of a vertical cavity surface emitting laser and a single photon avalanche diode serving as the excitation source and photon transducer, respectively, as well as a field programmable gate array (FPGA) integrated into the processing electronics assisted in reducing the instrument footprint. This small footprint SMD platform was tested using fluorescent microspheres and single AlexaFluor 660 molecules to determine the optimal operating parameters and system performance. As a demonstration of the utility of this instrument for biomolecular analyses, molecular beacons (MBs) were designed to probe bacterial cells for the gene encoding Gram-positive species. The ability to monitor biomarkers using this simple and portable instrument will have a number of important applications, such as strain-specific detection of pathogenic bacteria or the molecular diagnosis of diseases requiring rapid turn-around-times directly at the point-of-use.
单分子检测 (SMD) 在许多类型的生物分子分析中表现出一些吸引人的优势,包括通过消除处理步骤、消除整体平均和单分子灵敏度来提高处理速度。然而,由于使用荧光作为读出模式时需要复杂的仪器,其广泛应用受到了阻碍。我们在此报告一种简单紧凑的荧光单分子仪器,它易于操作,由直接耦合到微流控器件的光纤组成。集成光纤用作波导,将激光激发光传输到样品,并收集产生的发射光,通过消除光学对准的需要和简化光学器件,简化了与传统 SMD 仪器相关的光学要求。此外,使用垂直腔面发射激光器和单光子雪崩二极管分别作为激发源和光子传感器,以及现场可编程门阵列 (FPGA) 集成到处理电子设备中,有助于减小仪器占地面积。使用荧光微球和单个 AlexaFluor 660 分子对这个小占地面积的 SMD 平台进行了测试,以确定最佳操作参数和系统性能。作为该仪器在生物分子分析中应用的演示,设计了分子信标 (MB) 来探测细菌细胞中编码革兰氏阳性菌的基因。使用这种简单便携的仪器监测生物标志物的能力将有许多重要的应用,例如对致病菌的特异性检测,或对需要快速周转时间的疾病的分子诊断,直接在使用点进行。