Department of Chemistry, Inha University, Nam-Gu, Inchon-City, Republic of Korea.
Talanta. 2011 Sep 15;85(3):1566-74. doi: 10.1016/j.talanta.2011.06.052. Epub 2011 Jun 24.
Fluorescent sensor (DMH) based on dipeptide was efficiently synthesized in solid phase synthesis. The dipeptide sensor shows sensitive response to Ag(I), Hg(II), and Cu(II) among 14 metal ions in 100% aqueous solution. The fluorescent sensor differentiates three heavy metal ions by response type; turn on response to Ag(I), ratiometric response to Hg(II), and turn off detection of Cu(II). The detection limits of the sensor for Ag(I) and Cu(II) were much lower than the EPA's drinking water maximum contaminant levels (MCL). Specially, DMH penetrated live cells and detected intracellular Ag(+) by turn on response. We described the fluorescent change, binding affinity, detection limit for the metal ions. The study of a heavy metal-responsive sensor based on dipeptide demonstrates its potential utility in the environment field.
基于二肽的荧光传感器(DMH)在固相合成中被有效地合成。该二肽传感器在 100%水溶液中对 14 种金属离子中的 Ag(I)、Hg(II)和 Cu(II)表现出灵敏的响应。荧光传感器通过响应类型区分三种重金属离子:对 Ag(I)的开响应、对 Hg(II)的比率响应和对 Cu(II)的关闭检测。该传感器对 Ag(I)和 Cu(II)的检测限远低于 EPA 的饮用水最大污染物水平(MCL)。特别地,DMH 穿透活细胞并通过开响应检测细胞内的 Ag(+)。我们描述了荧光变化、金属离子的结合亲和力和检测限。基于二肽的重金属响应传感器的研究表明了其在环境领域的潜在应用。