Jung Hyukjin, Park Moonseong, Kang Minhee, Jeong Ki-Hun
Department of Bio and Brain Engineering, KAIST Institute for Optical Science and Technology, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Korea.
Light Sci Appl. 2016 Jan 15;5(1):e16009. doi: 10.1038/lsa.2016.9. eCollection 2016 Jan.
High-throughput small-molecule assays play essential roles in biomedical diagnosis, drug discovery, environmental analysis, and physiological function research. Nanoplasmonics holds a great potential for the label-free detection of small molecules at extremely low concentrations. Here, we report the development of nanoplasmonic paper (NP-paper) for the rapid separation and ultrasensitive detection of mixed small molecules. NP-paper employs nanogap-rich silver nanoislands on cellulose fibers, which were simply fabricated at the wafer level by using low-temperature solid-state dewetting of a thin silver film. The nanoplasmonic detection allows for the scalable quantification and identification of small molecules over broad concentration ranges. Moreover, the combination of chromatographic separation and nanoplasmonic detection allows both the highly sensitive fluorescence detection of mixed small molecules at the attogram level and the label-free detection at the sub-nanogram level based on surface-enhanced Raman scattering. This novel material provides a new diagnostic platform for the high-throughput, low-cost, and label-free screening of mixed small molecules as an alternative to conventional paper chromatography.
高通量小分子检测在生物医学诊断、药物发现、环境分析和生理功能研究中发挥着重要作用。纳米等离子体技术在极低浓度下对小分子进行无标记检测方面具有巨大潜力。在此,我们报告了用于快速分离和超灵敏检测混合小分子的纳米等离子体纸(NP纸)的开发。NP纸采用纤维素纤维上富含纳米间隙的银纳米岛,通过对银薄膜进行低温固态去湿在晶圆级简单制备而成。纳米等离子体检测能够在很宽的浓度范围内对小分子进行可扩展的定量和识别。此外,色谱分离与纳米等离子体检测相结合,既能够实现对混合小分子在阿托克级的高灵敏荧光检测,又能够基于表面增强拉曼散射在亚纳克级进行无标记检测。这种新型材料为混合小分子的高通量、低成本和无标记筛选提供了一个新的诊断平台,可作为传统纸色谱的替代方法。