Shankaran Dhesingh Ravi, Kawaguchi Toshikazu, Kim Sook Jin, Matsumoto Kiyoshi, Toko Kiyoshi, Miura Norio
Art, Science and Technology Center for Cooperative Research, Kyushu University, Kasuga-shi, Fukuoka 816-8580, Japan.
Anal Bioanal Chem. 2006 Nov;386(5):1313-20. doi: 10.1007/s00216-006-0699-4. Epub 2006 Aug 10.
Detection of TNT is an important environmental and security concern all over the world. We herein report the performance and comparison of four immunoassays for rapid and label-free detection of 2,4,6-trinitrotoluene (TNT) based on surface plasmon resonance (SPR). The immunosensor surface was constructed by immobilization of a home-made 2,4,6-trinitrophenyl-keyhole limpet hemocyanin (TNPh-KLH) conjugate onto an SPR gold surface by simple physical adsorption within 10 min. The immunoreaction of the TNPh-KLH conjugate with four different antibodies, namely, monoclonal anti-TNT antibody (M-TNT Ab), monoclonal anti-trinitrophenol antibody (M-TNP Ab), polyclonal anti-trinitrophenyl antibody (P-TNPh Ab), and polyclonal anti-TNP antibody (P-TNP Ab), was studied by SPR. The principle of indirect competitive immunoreaction was employed for quantification of TNT. Among the four antibodies, the P-TNPh Ab prepared by our group showed highest sensitivity with a detection limit of 0.002 ng/mL (2 ppt) TNT. The lowest detection limits observed with other commercial antibodies were 0.008 ng/mL (8 ppt), 0.25 ng/mL (250 ppt), and 40 ng/mL (ppb) for M-TNT Ab, P-TNP Ab, and M-TNP Ab, respectively, in the similar assay format. The concentration of the conjugate and the antibodies were optimized for use in the immunoassay. The response time for an immunoreaction was 36 s and a single immunocycle could be done within 2 min, including the sensor surface regeneration using pepsin solution. In addition to the quantification of TNT, all immunoassays were evaluated for robustness and cross-reactivity towards several TNT analogs.
三硝基甲苯(TNT)的检测是全球范围内重要的环境与安全问题。在此,我们报告基于表面等离子体共振(SPR)的四种免疫分析法用于快速、无标记检测2,4,6-三硝基甲苯(TNT)的性能及比较。免疫传感器表面通过在10分钟内将自制的2,4,6-三硝基苯基-钥孔戚血蓝蛋白(TNPh-KLH)偶联物通过简单物理吸附固定到SPR金表面构建而成。通过SPR研究了TNPh-KLH偶联物与四种不同抗体即单克隆抗TNT抗体(M-TNT Ab)、单克隆抗三硝基苯酚抗体(M-TNP Ab)、多克隆抗三硝基苯基抗体(P-TNPh Ab)和多克隆抗TNP抗体(P-TNP Ab)的免疫反应。采用间接竞争免疫反应原理对TNT进行定量。在这四种抗体中,我们小组制备的P-TNPh Ab表现出最高灵敏度,TNT检测限为0.002 ng/mL(2 ppt)。在类似的检测形式中,其他商业抗体观察到的最低检测限分别为:M-TNT Ab为0.008 ng/mL(8 ppt),P-TNP Ab为0.25 ng/mL(250 ppt),M-TNP Ab为40 ng/mL(ppb)。对偶联物和抗体的浓度进行了优化以用于免疫分析。免疫反应的响应时间为36秒,一个免疫循环可在2分钟内完成,包括使用胃蛋白酶溶液进行传感器表面再生。除了对TNT进行定量外,还对所有免疫分析法的稳健性以及对几种TNT类似物的交叉反应性进行了评估。