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基于无镜头 CCD 的荧光计,使用微机械加工的光学索勒准直器。

Lensless CCD-based fluorometer using a micromachined optical Söller collimator.

机构信息

University of Maryland College Park (UMCP), College Park, MD 20742, USA.

出版信息

Lab Chip. 2011 Mar 7;11(5):941-9. doi: 10.1039/c0lc00431f. Epub 2011 Jan 17.

Abstract

In this paper, we describe a simple charge-coupled device (CCD) based lensless fluorometer with sensitivity in the range of current ELISA plate readers. In our lensfree fluorometer, a multi-wavelength LED light source was used for fluorophore excitation. To collimate the light, we developed a simple optical Söller collimator based on a "stack of pinholes" (a stack of black PMMA with array of pinholes machined with laser) enabling the light to be collimated from the LED through the filters and the assay's microfluidics directly onto the CCD without a lens. The elimination of the lens that is used in almost all other current CCD based detection systems has four major advantages: (1) It simplifies the device design and fabrication while reducing cost. (2) It reduces the distance between the sample and the measuring device (without a lens the distance needed to focus the image on the CCD is reduced and the fluorometer can be more compact). (3) It couples the CCD and the detected surface by using an optical Söller Collimator which allows the use of filters for fluorescence detection. (4) It also uncouples the CCD and the microfluidics to enable the use of interchangeable fluidics while protecting the delicate CCD. The lensless CCD-based fluorometer is capable of detecting 16 samples simultaneously, and was used for in vitro detection of botulinum neurotoxin serotype A (BoNT-A) activity with a FRET assay that measures cleavage of a fluorophore-tagged peptide substrate specific for BoNT-A (SNAP-25) by the toxin light chain (LcA). The limit of detection (LOD) of our lensless fluorometer is 1.25 nM, which is similar to the LOD of a modern ELISA plate reader. Combined with microfluidics, this simple low cost point-of-care (POC) medical diagnostic system may be useful for the performance of many other complex medical diagnostic assays without a laboratory and thus potentially enhancing the accessibility and the quality of health care delivery in underserved populations.

摘要

本文介绍了一种简单的基于电荷耦合器件(CCD)的无透镜荧光计,其灵敏度与当前 ELISA 板读数器相当。在我们的无透镜荧光计中,使用多波长 LED 光源进行荧光团激发。为了准直光,我们开发了一种简单的光学 Söller 准直器,基于“堆叠的小孔”(堆叠的黑色 PMMA 带有激光加工的孔阵列),使光能够从 LED 通过滤光片和微流控器件直接准直到 CCD 上,而无需透镜。在几乎所有其他当前基于 CCD 的检测系统中使用的透镜的消除具有四个主要优点:(1)它简化了设备设计和制造,同时降低了成本。(2)它减小了样品和测量设备之间的距离(没有透镜,聚焦图像到 CCD 的距离减小,荧光计可以更紧凑)。(3)它通过使用光学 Söller 准直器将 CCD 和检测表面耦合在一起,允许使用滤波器进行荧光检测。(4)它还将 CCD 和微流控器件解耦,以实现可互换的流控,同时保护敏感的 CCD。无透镜 CCD 基荧光计能够同时检测 16 个样本,并用于使用荧光各向异性共振能量转移(FRET)测定法体外检测肉毒神经毒素 A 型(BoNT-A)的活性,该测定法测量毒素轻链(LcA)对荧光标记肽底物(BoNT-A 特异性 SNAP-25)的切割。我们无透镜荧光计的检测限(LOD)为 1.25 nM,与现代 ELISA 板读数器的 LOD 相似。与微流控技术相结合,这种简单、低成本的即时医疗诊断系统可能有助于在没有实验室的情况下进行许多其他复杂的医疗诊断测定,从而潜在地提高服务不足人群的医疗保健的可及性和质量。

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