Faculty of Medicine and Health Technology, Tampere University, Korkeakoulunkatu 3, 33720, Tampere, Finland.
Faculty of Medicine and Health Technology, Tampere University, Arvo Ylpön katu 34, 33520, Tampere, Finland.
Biomed Microdevices. 2020 Jun 3;22(2):41. doi: 10.1007/s10544-020-00495-3.
Luminescence-based oxygen sensing is a widely used tool in cell culture applications. In a typical configuration, the luminescent oxygen indicators are embedded in a solid, oxygen-permeable matrix in contact with the culture medium. However, in sensitive cell cultures even minimal leaching of the potentially cytotoxic indicators can become an issue. One way to prevent the leaching is to immobilize the indicators covalently into the supporting matrix. In this paper, we report on a method where platinum(II)-5,10,15,20-tetrakis-(2,3,4,5,6-pentafluorphenyl)-porphyrin (PtTFPP) oxygen indicators are covalently immobilized into a polymer matrix consisting of polystyrene and poly(pentafluorostyrene). We study how the covalent immobilization influences the sensing material's cytotoxicity to human induced pluripotent stem cell-derived (hiPSC-derived) neurons and cardiomyocytes (CMs) through 7-13 days culturing experiments and various viability analyses. Furthermore, we study the effect of the covalent immobilization on the indicator leaching and the oxygen sensing properties of the material. In addition, we demonstrate the use of the covalently linked oxygen sensing material in real time oxygen tension monitoring in functional hypoxia studies of the hiPSC-derived CMs. The results show that the covalently immobilized indicators substantially reduce indicator leaching and the cytotoxicity of the oxygen sensing material, while the influence on the oxygen sensing properties remains small or nonexistent.
基于发光的氧传感是细胞培养应用中广泛使用的工具。在典型配置中,发光氧指示剂嵌入与培养基接触的固体、透气氧基质中。然而,在敏感细胞培养中,即使是潜在细胞毒性指示剂的最小浸出也可能成为问题。防止浸出的一种方法是将指示剂共价固定在支撑基质中。在本文中,我们报告了一种将铂 (II)-5,10,15,20-四(2,3,4,5,6-五氟苯基)卟啉 (PtTFPP) 氧指示剂共价固定到由聚苯乙烯和聚(五氟苯乙烯)组成的聚合物基质中的方法。我们研究了共价固定如何通过 7-13 天的培养实验和各种活力分析来影响传感材料对人诱导多能干细胞衍生 (hiPSC 衍生) 神经元和心肌细胞 (CM) 的细胞毒性。此外,我们研究了共价固定对指示剂浸出和材料氧传感性能的影响。此外,我们还展示了共价键合氧传感材料在 hiPSC 衍生 CM 的功能缺氧研究中实时氧张力监测中的应用。结果表明,共价固定的指示剂大大减少了指示剂的浸出和氧传感材料的细胞毒性,而对氧传感性能的影响很小或不存在。