Kim Jason S, Anderson George P, Erickson Jeffrey S, Golden Joel P, Nasir Mansoor, Ligler Frances S
Center for Bio/Molecular Science and Engineering, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC 20375, USA.
Anal Chem. 2009 Jul 1;81(13):5426-32. doi: 10.1021/ac9005827.
A microfabricated flow cytometer was used to demonstrate multiplexed detection of bacteria and toxins using fluorescent coded microspheres. Antibody-coated microspheres bound biothreat targets in a sandwich immunoassay format. The microfluidic cytometer focused the microspheres in three dimensions within the laser interrogation region using passive groove structures to surround the sample stream with sheath fluid. Optical analysis at four different wavelengths identified the coded microspheres and quantified target bound by the presence of phycoerythrin tracer. The multiplexed assays in the microflow cytometer had performance approaching that of a commercial benchtop flow cytometer. The respective limits of detection for bacteria (Escherichia coli, Listeria, and Salmonella) were found to be 10(3), 10(5), and 10(4) cfu/mL for the microflow cytometer and 10(3), 10(6), and 10(5) cfu/mL for the commercial system. Limits of detection for the toxins (cholera toxin, staphylococcal enterotoxin B, and ricin) were 1.6, 0.064, and 1.6 ng/mL for the microflow cytometer and 1.6, 0.064, and 8.0 ng/mL for the commercial system.
一种微制造流式细胞仪被用于通过荧光编码微球来演示细菌和毒素的多重检测。抗体包被的微球以夹心免疫测定形式结合生物威胁目标。微流控细胞仪利用被动凹槽结构在激光询问区域内将微球在三个维度上聚焦,用鞘液围绕样品流。在四个不同波长处的光学分析识别了编码微球,并通过藻红蛋白示踪剂的存在对结合的目标进行了定量。微流控细胞仪中的多重检测性能接近商用台式流式细胞仪。对于微流控细胞仪,细菌(大肠杆菌、李斯特菌和沙门氏菌)的各自检测限分别为10(3)、10(5)和10(4) cfu/mL,对于商用系统则为10(3)、10(6)和10(5) cfu/mL。毒素(霍乱毒素、葡萄球菌肠毒素B和蓖麻毒素)的检测限对于微流控细胞仪分别为1.6、0.064和1.6 ng/mL,对于商用系统分别为1.6、0.064和8.0 ng/mL。