Aubrecht Petr, Smejkal Jiří, Panuška Petr, Španbauerová Klára, Neubertová Viktorie, Kaule Pavel, Matoušek Jindřich, Vinopal Stanislav, Liegertová Michaela, Štofik Marcel, Malý Jan
Centre for Nanomaterials and Biotechnology, Faculty of Science, Jan Evangelista Purkyně University in Ústí nad Labem Pasteurova 3632/15 400 96 Ústí nad Labem Czech Republic
Department of Chemistry, Faculty of Science, Jan Evangelista Purkyně University in Ústí nad Labem Pasteurova 3632/15 400 96 Ústí nad Labem Czech Republic.
RSC Adv. 2024 Jan 23;14(6):3617-3635. doi: 10.1039/d3ra05789e.
The Off-Stoichiometry Thiol-ene and Epoxy (OSTE+) polymer technology has been increasingly utilised in the field of microfluidics and lab-on-a-chip applications. However, the impact of OSTEMER polymers, specifically the OSTEMER 322 formulation, on cell viability has remained limited. In this work, we thoroughly explored the biocompatibility of this commercial OSTEMER formulation, along with various surface modifications, through a broad range of cell types, from fibroblasts to epithelial cells. We employed cell viability and confluence assays to evaluate the performance of the material and its modified variants in cell culturing. The properties of the pristine and modified OSTEMER were also investigated using surface characterization methods including contact angle, zeta potential, and X-ray photoelectron spectroscopy. Mass spectrometry analysis confirmed the absence of leaching constituents from OSTEMER, indicating its safety for cell-based applications. Our findings demonstrated that cell viability on OSTEMER surfaces is sufficient for typical cell culture experiments, suggesting OSTEMER 322 is a suitable material for a variety of cell-based assays in microfluidic devices.
非化学计量比硫醇-烯和环氧(OSTE+)聚合物技术在微流控和芯片实验室应用领域的使用越来越广泛。然而,OSTEMER聚合物,特别是OSTEMER 322配方,对细胞活力的影响仍然有限。在这项工作中,我们通过从成纤维细胞到上皮细胞等多种细胞类型,全面探索了这种商用OSTEMER配方以及各种表面修饰的生物相容性。我们采用细胞活力和汇合度测定法来评估该材料及其修饰变体在细胞培养中的性能。还使用包括接触角、zeta电位和X射线光电子能谱在内的表面表征方法研究了原始和修饰的OSTEMER的特性。质谱分析证实OSTEMER没有可溶出成分,表明其在基于细胞的应用中是安全的。我们的研究结果表明,OSTEMER表面上的细胞活力足以进行典型的细胞培养实验,这表明OSTEMER 322是微流控设备中各种基于细胞的检测的合适材料。