Label-free detection of C-reactive protein using reflectometric interference spectroscopy-based sensing system

被引:37
|
作者
Choi, Hyung Woo [1 ]
Sakata, Yasuhiko [1 ]
Kurihara, Yoshikazu [1 ,2 ]
Ooya, Tooru [1 ]
Takeuchi, Toshifumi [1 ]
机构
[1] Kobe Univ, Grad Sch Engn, Nada Ku, Kobe, Hyogo 6578501, Japan
[2] KONICA MINOLTA OPTO Inc, Hino, Tokyo 1918511, Japan
关键词
Reflectometric interference spectroscopy (RIfS); C-reactive protein (CRP); Protein A; Carboxymethyl dextran (CMD); Label-free biosensing; SURFACE-PLASMON RESONANCE; THIN-FILM; IMMOBILIZATION; IMMUNOASSAY; DEXTRAN; DISEASE; DESIGN; ARRAY; ASSAY;
D O I
10.1016/j.aca.2012.03.030
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Reflectometric interference spectroscopy (RIfS) is a label-free, time-resolved technique, and suitable for detecting antibody-antigen interaction. This work describes a continuous flow biosensor for C-reactive protein (CRP), involving an effective immobilization method of a monoclonal antibody against CRP (anti-CRP) to achieve highly sensitive RIfS-based detection of CRP. The silicon nitride-coated silicon chip (SiN chip) for the RIfS sensing was first treated with trimethylsilylchloride (TMS), followed by UV-light irradiation to in situ generation of homogeneous silanols on the surface. Following amination by 3-aminopropyltriethoxysilane, carboxymethyldextran (CMD) was grafted, and subsequently, protein A was immobilized to create the oriented anti-CRP surface. The immobilization process of protein A and anti-CRP was monitored with the RIfS system by consecutive injections of an amine coupling reagent, protein A and anti-CRP, respectively, to confirm the progress of each step in real time. The sensitivity was enhanced when all of the processes were adopted, suggesting that the oriented immobilization of anti-CRP via protein A that was coupled with the grafted CMD on the aminated surface of TMS-treated SiN chip. The feasibility of the present sensing system was demonstrated on the detection of CRP, where the silicon-based inexpensive chips and the simple optical setup were employed. It can be applied to other target molecules in various fields of life science as a substitute of surface plasmon resonance-based expensive sensors. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:64 / 68
页数:5
相关论文
共 50 条
  • [21] Fast label-free detection of C-reactive protein using broad-band Mach-Zehnder interferometers integrated on silicon chips
    Psarouli, Aimilia
    Botsialas, Athanasios
    Salapatas, Alexandros
    Stefanitsis, Gerasimos
    Nikita, Dimitra
    Jobst, Gerhard
    Chaniotakis, Nikolaos
    Goustouridis, Dimitrios
    Makarona, Eleni
    Petrou, Panagiota S.
    Raptis, Ioannis
    Misiakos, Konstantinos
    Kakabakos, Sotirios E.
    TALANTA, 2017, 165 : 458 - 465
  • [22] Reflectometric interference spectroscopy-based immunosensing using immobilized antibody via His-tagged recombinant protein A
    Choi, Hyung Woo
    Sakata, Yasuhiko
    Ooya, Tooru
    Takeuchi, Toshifumi
    JOURNAL OF BIOSCIENCE AND BIOENGINEERING, 2015, 119 (02) : 195 - 199
  • [23] Label-free and direct detection of C-reactive protein using reduced graphene oxide-nanoparticle hybrid impedimetric sensor
    Yagati, Ajay Kumar
    Pyun, Jae-Chul
    Min, Junhong
    Cho, Sungbo
    BIOELECTROCHEMISTRY, 2016, 107 : 37 - 44
  • [24] Label-free detection of C-reactive protein using highly dispersible gold nanoparticles synthesized by reducible biomimetic block copolymers
    Iwasaki, Yasuhiko
    Kimura, Toshihiro
    Orisaka, Masaki
    Kawasaki, Hideya
    Goda, Tatsuro
    Yusa, Shin-ichi
    CHEMICAL COMMUNICATIONS, 2014, 50 (42) : 5656 - 5658
  • [25] A Simple Label-Free Aptamer-Based Electrochemical Biosensor for the Sensitive Detection of C-Reactive Proteins
    Gao, Huilin
    Bai, Yongchang
    He, Baixun
    Tan, Cherie S.
    BIOSENSORS-BASEL, 2022, 12 (12):
  • [26] Label-Free Specific Detection and Collection of C-Reactive Protein Using Zwitterionic Phosphorylcholine-Polymer-Protected Magnetic Nanoparticles
    Iwasaki, Sana
    Kawasaki, Hideya
    Iwasaki, Yasuhiko
    LANGMUIR, 2019, 35 (05) : 1749 - 1755
  • [27] Label-free optical detection of C-reactive protein by nanoimprint lithography-based 2D-photonic crystal film
    Endo, Tatsuro
    Kajita, Hiroshi
    Kawaguchi, Yukio
    Kosaka, Terumasa
    Himi, Toshiyuki
    BIOTECHNOLOGY JOURNAL, 2016, 11 (06) : 831 - 837
  • [28] Rapid C-reactive protein determination in whole blood with a White Light Reflectance Spectroscopy label-free immunosensor for Point-of-Care applications
    Koukouvinos, Georgios
    Goustouridis, Dimitrios
    Misiakos, Konstantinos
    Kakabakos, Sotirios
    Raptis, Ioannis
    Petrou, Panagiota
    SENSORS AND ACTUATORS B-CHEMICAL, 2018, 260 : 282 - 288
  • [29] Label-free protein detection using terahertz time-domain spectroscopy
    Han, Xiaohui
    Yan, Shihan
    Zang, Ziyi
    Wei, Dongshan
    Cui, Hong-Liang
    Du, Chunlei
    BIOMEDICAL OPTICS EXPRESS, 2018, 9 (03): : 994 - 1005
  • [30] The Mach-Zehnder Interferometer Based on Silicon Oxides for Label Free Detection of C-reactive Protein (CRP)
    Hong, Jongin
    Yoon, Daesung
    Kim, Tae Song
    BIOCHIP JOURNAL, 2009, 3 (01) : 1 - 11