Department of Chemistry, Institute for Genomic Biology, and Micro and Nanotechnology Laboratory, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, IL 61801, United States.
Biosens Bioelectron. 2010 Dec 15;26(4):1283-91. doi: 10.1016/j.bios.2010.07.010. Epub 2010 Jul 12.
Silicon photonic microring resonators have emerged as a sensitive and highly multiplexed platform for real-time biomolecule detection. Herein, we profile the evanescent decay of device sensitivity towards molecular binding as a function of distance from the microring surface. By growing multilayers of electrostatically bound polymers extending from the sensor surface, we are able to empirically determine that the evanescent field intensity is characterized by a 1/e response decay distance of 63 nm. We then applied this knowledge to study the growth of biomolecular assemblies consisting of alternating layers of biotinylated antibody and streptavidin, which follow a more complex growth pattern. Additionally, by monitoring the shift in microring resonance wavelength upon the deposition of a radioactively labeled protein, the mass sensitivity of the ring resonator platform was determined to be 14.7±6.7 [pg/mm(2)]/Δpm. By extrapolating to the instrument noise baseline, the mass/area limit of detection is found to be 1.5±0.7 pg/mm(2). Taking the small surface area of the microring sensor into consideration, this value corresponds to an absolute mass detection limit of 125 ag (i.e. 0.8 zmol of IgG), demonstrating the remarkable sensitivity of this promising label-free biomolecular sensing platform.
硅光子微环谐振器已经成为一种用于实时生物分子检测的敏感且高度多路复用的平台。在此,我们分析了器件灵敏度随距离微环表面的消逝场衰减情况。通过在传感器表面生长多层静电结合聚合物,我们能够通过实验确定消逝场强度的特征是 1/e 响应衰减距离为 63nm。然后,我们将这一知识应用于研究由交替的生物素化抗体和链霉亲和素层组成的生物分子组装体的生长,其生长模式更为复杂。此外,通过监测放射性标记蛋白沉积时微环谐振波长的变化,确定了环形谐振器平台的质量灵敏度为 14.7±6.7[pg/mm(2)]/Δpm。通过外推到仪器噪声基线,可以发现质量/面积检测极限为 1.5±0.7pg/mm(2)。考虑到微环传感器的小表面积,这个值对应于绝对质量检测极限为 125ag(即 0.8zmol IgG),证明了这种有前途的无标记生物分子传感平台的极高灵敏度。