Polymer Electronics Lab, Department of Bioelectronics and Biosensors, Alagappa University, Karaikudi-630 003, Tamilnadu, India.
Biosens Bioelectron. 2013 Sep 15;47:133-40. doi: 10.1016/j.bios.2013.02.049. Epub 2013 Mar 21.
The electrochemical DNA hybridization sensing of bipolymer polypyrrole and poly(3,4-ethylenedioxythiophene) (PPy-PEDOT) nanotubes functionalized with Ag nanoparticles has been investigated. The bipolymer nanotubes are prepared by simple chemical route and silver nanoparticles (Ag) further deposited over the PPy-PEDOT nanotubes to form PPy-PEDOT-Ag nanocomposite films. DNA labeled at 5'end using 6-mercapto-1-hexhane (HS-ssDNA) is immobilized on the PPy-PEDOT-Ag surface to form PPy-PEDOT-Ag-S-ssDNA and hybridization sensing is done in phosphate buffer. The presence of Ag nanoparticles (~28±5nm) well dispersed in the polymer composite with high surface area, high electrical conductivity and catalytic activity provides desirable microenvironment for the immobilization of probe DNA with controlled orientation leading to increased hybridization efficiency with target DNA. The morphological and structural characterizations by a scanning electron microscope (SEM) and X-ray diffraction (XRD) confirm the nanotube structure of composite polymer while Raman measurements indicate the efficient interactions between the PPy, PEDOT, Ag and HS-ssDNA. The sensor effectively discriminates different target DNA sequences with PPy-PEDOT-Ag-S-ssDNA substrate. The observed dynamic detection range is found between 1×10(-11)M and 1×10(-14)M with the lowest detection limit (3 σ/b) of 5.4×10(-15)M. This observed value is of higher sensitivity than that for MWCNT-Ag, PANi-Au, MWCNT-PPy-Au and PPy-PANi-Au composites reported previously.
Ag 纳米粒子功能化的双聚合物聚吡咯和聚(3,4-亚乙基二氧噻吩)(PPy-PEDOT)纳米管的电化学 DNA 杂交传感研究。通过简单的化学途径制备双聚合物纳米管,进一步在 PPy-PEDOT 纳米管上沉积银纳米粒子(Ag),形成 PPy-PEDOT-Ag 纳米复合材料薄膜。在 5'端标记使用 6-巯基-1-己烷(HS-ssDNA)的 DNA 固定在 PPy-PEDOT-Ag 表面上,形成 PPy-PEDOT-Ag-S-ssDNA,并在磷酸盐缓冲液中进行杂交传感。Ag 纳米粒子(~28±5nm)均匀分散在具有高表面积、高导电性和催化活性的聚合物复合材料中,为探针 DNA 的固定提供了理想的微环境,探针 DNA 具有可控的取向,从而提高了与目标 DNA 的杂交效率。通过扫描电子显微镜(SEM)和 X 射线衍射(XRD)的形貌和结构表征证实了复合材料聚合物的纳米管结构,而拉曼测量则表明 PPy、PEDOT、Ag 和 HS-ssDNA 之间存在有效的相互作用。该传感器有效地对不同的靶 DNA 序列进行区分,使用 PPy-PEDOT-Ag-S-ssDNA 作为基底。观察到的动态检测范围在 1×10(-11)M 至 1×10(-14)M 之间,检测下限(3 σ/b)低至 5.4×10(-15)M。与之前报道的 MWCNT-Ag、PANi-Au、MWCNT-PPy-Au 和 PPy-PANi-Au 复合材料相比,该观察值具有更高的灵敏度。