Key Lab of Analytical Chemistry for Life Science, Ministry of Education, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, Jiangsu, China.
Analyst. 2011 Feb 7;136(3):540-4. doi: 10.1039/c0an00512f. Epub 2010 Nov 16.
In this work a novel microdevice sensor has been developed by plating gold on the PDMS surface to generate a sandwich-type gap electrode for DNA detection. The microdevice utilizes a gold band electrode-PDMS-gold band electrode configuration and the minimum detectable volume could be as low as 5 μL. The 20 μm PDMS-based gap was chemically modified with DNA capture probes and DNA sandwich hybrids were formed with the addition of DNA target and silver nanoparticle probes. To increase detection sensitivity, parallel detection zones have been developed in which the relevant resistances decrease substantially upon hybridyzation. By measuring the change in electrical conductivity, the DNA target in the concentration range of 1000-0.1 nM can be assayed and the limit of lowest detectable concentration was achieved at 0.01 nM.
在这项工作中,通过在 PDMS 表面镀上金来开发一种新型微器件传感器,以产生用于 DNA 检测的三明治式间隙电极。该微器件利用金带电极-PDMS-金带电极结构,最小可检测体积可低至 5 μL。基于 20 μm PDMS 的间隙用 DNA 捕获探针进行化学修饰,并在添加 DNA 靶标和银纳米颗粒探针后形成 DNA 夹心杂交体。为了提高检测灵敏度,开发了并行检测区,在杂交时相关电阻会大大降低。通过测量电导率的变化,可以检测出浓度范围在 1000-0.1 nM 的 DNA 靶标,最低检测浓度的极限达到 0.01 nM。