Mayer Kathryn M, Lee Seunghyun, Liao Hongwei, Rostro Betty C, Fuentes Amaris, Scully Peter T, Nehl Colleen L, Hafner Jason H
Department of Physics & Astronomy, Rice University, Houston, Texas 77005, USA.
ACS Nano. 2008 Apr;2(4):687-92. doi: 10.1021/nn7003734.
Robust gold nanorod substrates were fabricated for refractive index sensing based on localized surface plasmon resonance (LSPR). The substrate sensitivity was 170 nm/RIU with a figure of merit of 1.3. To monitor biomolecular interactions, the nanorod surfaces were covered with a self-assembled monolayer and conjugated to antibodies by carbodiimide cross-linking. Interactions with a specific secondary antibody were monitored through shifts in the LSPR spectral extinction peak. The resulting binding rates and equilibrium constant were in good agreement with literature values for an antibody-antigen system. The nanorod LSPR sensors were also shown to be sensitive and specific. These results demonstrate that given a sufficiently stable nanoparticle substrate with a well defined chemical interface, LSPR sensing yields similar results to the surface plasmon resonance technique, yet with much simpler instrumentation.
基于局域表面等离子体共振(LSPR)制备了用于折射率传感的坚固金纳米棒基底。该基底灵敏度为170 nm/RIU,品质因数为1.3。为监测生物分子相互作用,纳米棒表面覆盖有自组装单分子层,并通过碳二亚胺交联与抗体共轭。通过LSPR光谱消光峰的位移监测与特异性二抗的相互作用。所得结合速率和平衡常数与抗体-抗原系统的文献值高度一致。纳米棒LSPR传感器也显示出灵敏性和特异性。这些结果表明,给定具有明确化学界面的足够稳定的纳米颗粒基底,LSPR传感产生的结果与表面等离子体共振技术相似,但仪器要简单得多。