Sapsford Kim E, Sun Steven, Francis Jesse, Sharma Shashi, Kostov Yordan, Rasooly Avraham
Division of Biology, Office of Science and Engineering Laboratories, FDA, Silver Spring, MD 20993, USA.
Biosens Bioelectron. 2008 Dec 1;24(4):618-25. doi: 10.1016/j.bios.2008.06.018. Epub 2008 Jun 18.
Current biodetection illumination technologies (laser, LED, tungsten lamp, etc.) are based on spot illumination with additional optics required when spatial excitation is required. Herein we describe a new approach of spatial illumination based on electroluminescence (EL) semiconductor strips available in several wavelengths, greatly simplifying the biosensor design by eliminating the need for additional optics. This work combines EL excitation with charge-coupled device (CCD) based detection (EL-CCD detector) of fluorescence for developing a simple portable detector for botulinum neurotoxin A (BoTN-A) activity analysis. A Förster Resonance Energy Transfer (FRET) activity assay for BoTN-A was used to both characterize and optimize the EL-CCD detector. The system consists of two modules: (1) the detection module which houses the CCD camera and emission filters, and (2) the excitation and sample module, containing the EL strip, the excitation filter and the 9-well sample chip. The FRET activity assay used in this study utilized a FITC/DABCYL-SNAP-25 peptide substrate in which cleavage of the substrate by BoTN-A, or its light chain derivative (LcA), produced an increase in fluorescence emission. EL-CCD detector measured limits of detection (LODs) were similar to those measured using a standard fluorescent plate reader with valves between 0.625 and 1.25 nM (31-62 ng/ml) for LcA and 0.313 nM (45 ng/ml) for the full toxin, BoTN-A. As far as the authors are aware this is the first demonstration of phosphor-based EL strips being used for the spatial illumination/excitation of a surface, coupled with CCD for point of care detection.
当前的生物检测照明技术(激光、发光二极管、钨灯等)基于点照明,当需要空间激发时还需要额外的光学元件。在此,我们描述了一种基于电致发光(EL)半导体条带的空间照明新方法,这种半导体条带可提供多种波长,通过无需额外光学元件大大简化了生物传感器设计。这项工作将EL激发与基于电荷耦合器件(CCD)的荧光检测(EL-CCD探测器)相结合,以开发一种用于肉毒杆菌神经毒素A(BoTN-A)活性分析的简单便携式探测器。用于BoTN-A的荧光共振能量转移(FRET)活性测定法用于表征和优化EL-CCD探测器。该系统由两个模块组成:(1)检测模块,其中装有CCD相机和发射滤光片;(2)激发和样品模块,包含EL条带、激发滤光片和9孔样品芯片。本研究中使用的FRET活性测定法利用了一种FITC/DABCYL-SNAP-25肽底物,其中BoTN-A或其轻链衍生物(LcA)对底物的切割会导致荧光发射增加。EL-CCD探测器测得的检测限(LOD)与使用标准荧光酶标仪测得的结果相似,LcA的检测限在0.625至1.25 nM(31-62 ng/ml)之间,完整毒素BoTN-A的检测限为0.313 nM(45 ng/ml)。据作者所知,这是首次展示基于磷光体的EL条带用于表面的空间照明/激发,并与CCD结合用于即时检测。