Ko Jaehan, Ham Jeongwoo, Lee Hwajung, Lee Kangwon, Koh Won-Gun
Program in Nanoscience and Technology, Graduate School of Convergence Science and Technology, Seoul National University, Seoul, 08826, Republic of Korea.
Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Biosens Bioelectron. 2021 Dec 1;193:113531. doi: 10.1016/j.bios.2021.113531. Epub 2021 Jul 24.
We propose a new platform that can integrate three-dimensional cell culture scaffold and a surface-enhanced Raman spectroscopy (SERS)-based biosensor by stacking them to form a multilayer system, which would allow monitoring of the protein markers secreted from cultured stem cells without periodic cell and/or media collection. The cell culture scaffold supported the proliferation and osteogenic differentiation of adipose-derived mesenchymal stem cells (ADSCs). The SERS capture substrate detected protein markers in combination with SERS tag made with Au-Ag alloy nanoboxes. Incorporating the different Raman reporters into the SERS tag allowed easy identification of target proteins for multiplex assays. The resultant SERS-based immunoassay could detect the pg/mL levels of protein markers without crosstalk and interference. When one ADSC culture scaffold and multiple SERS capture substrates were integrated and incubated in differentiation culture media, our system was sufficiently sensitive to monitor time-dependent secretion of three different osteogenic protein markers from ADSCs during their osteogenic differentiation. Since the sensor and cell culture scaffold can be manipulated independently, various cell and biomarker combinations are possible to obtain relevant information regarding the actual state of the different types of cells.
我们提出了一种新平台,该平台可以通过将三维细胞培养支架和基于表面增强拉曼光谱(SERS)的生物传感器堆叠形成多层系统来进行整合,这将允许在不进行定期细胞和/或培养基收集的情况下监测培养的干细胞分泌的蛋白质标志物。细胞培养支架支持脂肪来源间充质干细胞(ADSCs)的增殖和成骨分化。SERS捕获底物与由金-银合金纳米盒制成的SERS标签结合检测蛋白质标志物。将不同的拉曼报告分子纳入SERS标签可便于在多重分析中识别目标蛋白质。所得的基于SERS的免疫分析可以检测到pg/mL水平的蛋白质标志物,而不会产生串扰和干扰。当一个ADSC培养支架和多个SERS捕获底物整合并在分化培养基中孵育时,我们的系统足够灵敏,能够监测ADSCs在成骨分化过程中三种不同成骨蛋白标志物随时间的分泌情况。由于传感器和细胞培养支架可以独立操作,因此可以采用各种细胞和生物标志物组合来获取有关不同类型细胞实际状态的相关信息。