School of Pharmacy, Fujian Medical University, Fuzhou 350004, Fujian Province, China; School of Pharmacy, Nantong University, Nantong 226001, Jiangsu Province, China.
School of Pharmacy, Fujian Medical University, Fuzhou 350004, Fujian Province, China.
Biosens Bioelectron. 2019 Feb 1;126:1-6. doi: 10.1016/j.bios.2018.10.026. Epub 2018 Oct 21.
The fabrication of photosensitive interface and molecular recognition layer at the biosensing surface are of vital importance in photoelectrochemical (PEC) biosensor construction. Developing facial methods with favorable biomolecule immobilization as well as excellent photoelectric activity still need to be explored. In this work, by integration of the merits of tungsten oxide (WO) semiconductor nanomaterial and polydopamine (PDA) polymer, a novel biofunctional PDA/WO nanocomposites (PDA/WO NCs) modified ITO hierarchical architecture was fabricated by simple thermal annealing and self-polymerization methods. The proposed PEC biosensor platform based on PDA/WO/ITO not only have preponderances in simple preparation, but also possesses excellent PEC activity, high specific surface area and good microenvironment for biomolecule immobilization. Utilizing CYFRA 21-1 as a model target, label-free PEC immunosensor was developed successfully, which exhibited great sensitivity and broad dynamic range with four orders of magnitude (10 pg mL to 100 ng mL), and the limit of detection was as low as 2.5 pg mL. Moreover, owing to the great sensitivity and selectivity of the proposed platform, this convenient sensor also performed well in real serum sample analysis. It is worth noting that our work not only helps in gaining a better understanding of the applicability of the PEC properties of PDA/WO NCs, but also sheds novel light on the design and development of PEC biosensing platform based on PDA/WO NCs.
在光电化学(PEC)生物传感器的构建中,在生物传感表面制造光敏界面和分子识别层至关重要。开发具有良好生物分子固定化和优异光电活性的方法仍需要探索。在这项工作中,通过整合氧化钨(WO)半导体纳米材料和聚多巴胺(PDA)聚合物的优点,通过简单的热退火和自聚合方法制备了一种新型的生物功能化 PDA/WO 纳米复合材料(PDA/WO NCs)修饰的 ITO 分级结构。基于 PDA/WO/ITO 的 PEC 生物传感器平台不仅具有制备简单的优势,而且具有优异的 PEC 活性、高比表面积和良好的生物分子固定化微环境。利用 CYFRA 21-1 作为模型靶标,成功开发了无标记 PEC 免疫传感器,其具有四个数量级(10 pg mL 至 100 ng mL)的高灵敏度和宽动态范围,检测限低至 2.5 pg mL。此外,由于该平台具有出色的灵敏度和选择性,这种便捷的传感器在实际血清样本分析中也表现出色。值得注意的是,我们的工作不仅有助于更好地理解 PDA/WO NCs 的 PEC 性能的适用性,而且为基于 PDA/WO NCs 的 PEC 生物传感平台的设计和开发提供了新的思路。