IEEE Trans Nanobioscience. 2022 Apr;21(2):294-300. doi: 10.1109/TNB.2021.3124055. Epub 2022 Mar 31.
Selective detection and quantification of biomarkers related to human diseases are essential for preventive healthcare. Surface-enhanced Raman scattering (SERS) spectroscopy is a powerful analytical tool offering high sensitivity. However, the success of this promising analytical tool relies on the ability to effectively fabricate SERS substrate. Herein we have demonstrated a plasmonic paper-based flexible substrate (PPFS) for SERS sensing. In situ growth of silver nanostructures (AgNS) on the paper-based substrate was achieved by using a simple one-step silver mirror reaction (SMR). FESEM and TEM results depicts that the increasing silver ion content influences the morphology (growth of multifacets), as well as size of AgNS. Further, the PPFS substrate was tested with Rhodamine-6G (Rh-6G) dye and an attomole sensitivity with a LOD of 4.54 × 10 M was achieved. Further, two biomarkers, lactic acid (LA) and uric acid (UA) were detected on the PPFS substrate, with [Formula: see text] and pM sensitivity, having LOD values of 0.6 × 10 and 0.3 × 10 M respectively. Above detection levels for UA on PPFS is two orders better than reported values, whereas for LA it is comparable with reported substrates. Finally, UA, LA and their mixtures were tested on PPFS and results compared with commercial substrate. The performance of PPFS were found better in all cases, thus, multifaceted AgNS paper based PPFS offers the potential to be used as a biosensor for detection of various biomarkers from body fluids, responsible for the detection of the critical disease for preventive health care.
选择性检测和定量与人类疾病相关的生物标志物对于预防保健至关重要。表面增强拉曼散射(SERS)光谱是一种提供高灵敏度的强大分析工具。然而,这个有前途的分析工具的成功依赖于有效制造 SERS 基底的能力。本文展示了一种用于 SERS 传感的等离子体纸基柔性基底(PPFS)。通过简单的一步银镜反应(SMR),在纸基基底上原位生长了银纳米结构(AgNS)。FESEM 和 TEM 结果表明,增加银离子含量会影响 AgNS 的形态(多面的生长)和尺寸。此外,还测试了 PPFS 基底对 Rhodamine-6G(Rh-6G)染料的性能,实现了 4.54×10-11 M 的检测限和阿摩尔灵敏度。此外,在 PPFS 基底上检测到两种生物标志物,乳酸(LA)和尿酸(UA),其灵敏度分别为[Formula: see text]和 pM,检测限分别为 0.6×10-6和 0.3×10-6 M。在 PPFS 上检测到的 UA 的检测水平比报道的值高出两个数量级,而 LA 的检测水平则与报道的基底相当。最后,在 PPFS 上测试了 UA、LA 及其混合物,并将结果与商业基底进行了比较。在所有情况下,PPFS 的性能都更好,因此,基于多面 AgNS 的 PPFS 具有作为用于从体液中检测各种生物标志物的生物传感器的潜力,从而有助于预防保健的关键疾病的检测。