Morita Kosei, Mitsuda Yuta, Yoshida Sota, Kiwa Toshihiko, Wang Jin
Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University, Okayama 700-8530, Japan.
Biosensors (Basel). 2025 Jan 13;15(1):46. doi: 10.3390/bios15010046.
In this study, we utilized a terahertz chemical microscope (TCM) to map surface potential changes induced by molecular interactions on silicon-on-sapphire (SOS) substrates. By functionalizing the SOS substrate with DNA aptamers and an ion-selective membrane, we successfully detected and visualized aptamer-neurochemical complexes through the terahertz amplitude. Additionally, comparative studies of DNA aptamers in PBS buffer and artificial cerebrospinal fluid (aCSF) were performed by computational structure modeling and terahertz measurements. Beyond neurochemicals, we also investigated calcium ions, measuring their concentrations in PDMS-fabricated micro-wells using minimal sample volumes. Our results highlight the capability of TCM as a powerful, label-free, and sensitive platform for the probing and mapping of surface potential arising from molecular interactions, with broad implications for biomedical diagnostics and research.
在本研究中,我们利用太赫兹化学显微镜(TCM)来绘制蓝宝石上硅(SOS)衬底上分子相互作用引起的表面电位变化。通过用DNA适体和离子选择性膜对SOS衬底进行功能化,我们成功地通过太赫兹振幅检测并可视化了适体 - 神经化学复合物。此外,通过计算结构建模和太赫兹测量,对DNA适体在磷酸盐缓冲盐水(PBS)缓冲液和人工脑脊液(aCSF)中的情况进行了比较研究。除了神经化学物质,我们还研究了钙离子,使用极少的样品体积测量了它们在聚二甲基硅氧烷(PDMS)制造的微孔中的浓度。我们的结果突出了太赫兹化学显微镜作为一个强大、无标记且灵敏的平台的能力,用于探测和绘制由分子相互作用产生的表面电位,对生物医学诊断和研究具有广泛的意义。