Aytur Turgut, Foley Jonathan, Anwar Mekhail, Boser Bernhard, Harris Eva, Beatty P Robert
Department of Electrical Engineering and Computer Sciences, University of California at Berkeley, CA 94720-3200, USA.
J Immunol Methods. 2006 Jul 31;314(1-2):21-9. doi: 10.1016/j.jim.2006.05.006. Epub 2006 Jul 3.
New technologies are greatly needed to improve laboratory tests that can be used in point-of-care clinical settings. Here, a biosensor was used to detect micron-scale paramagnetic beads in order to replace the conventional enzymatic label used in ELISAs. This novel biosensor was fabricated through standard complementary metal oxide semiconductor (CMOS) manufacturing and was used to quantify magnetic beads bound to the sensor surface by immunological recognition, analogous to ELISA. CMOS technology can integrate multiple laboratory functions into the sensor chip, potentially enabling inexpensive, compact and sophisticated diagnostic systems for a number of diseases. We present results for two immunological assays: antigen capture of purified mouse IgG and detection of human anti-dengue virus IgG in clinical serum samples. The sensitivity of detecting purified protein with magnetic beads was comparable to ELISA. We found a high correlation between the ELISA optical density and the biosensor output in the clinical assay. We also demonstrate the use of a controlled magnetic field to remove non-specifically bound magnetic beads from the sensor surface, effectively washing the sensor surface. This novel sensor can be mass-produced at low cost and can detect magnetic beads bound to the surface through specific antibody-antigen interactions, making it a potential platform for new simplified and rapid point-of-care diagnostic tests.
在即时医疗临床环境中,亟需新技术来改进可使用的实验室检测方法。在此,一种生物传感器被用于检测微米级顺磁珠,以替代酶联免疫吸附测定(ELISA)中使用的传统酶标记物。这种新型生物传感器是通过标准互补金属氧化物半导体(CMOS)制造工艺制造的,并用于通过免疫识别对结合在传感器表面的磁珠进行定量,类似于ELISA。CMOS技术可将多种实验室功能集成到传感器芯片中,有可能为多种疾病开发出廉价、紧凑且精密的诊断系统。我们展示了两种免疫测定的结果:纯化小鼠IgG的抗原捕获以及临床血清样本中人类抗登革热病毒IgG的检测。用磁珠检测纯化蛋白的灵敏度与ELISA相当。我们发现在临床测定中ELISA光密度与生物传感器输出之间存在高度相关性。我们还展示了使用可控磁场从传感器表面去除非特异性结合的磁珠,从而有效清洗传感器表面。这种新型传感器可以低成本进行大规模生产,并且能够检测通过特异性抗体 - 抗原相互作用结合在表面的磁珠,使其成为新型简化快速即时医疗诊断测试的潜在平台。