Dmitriev Ruslan I, Papkovsky Dmitri B
School of Biochemistry and Cell Biology, University College Cork, Cavanagh Pharmacy Building, College Road, Cork, Ireland.
Methods Appl Fluoresc. 2015 Apr 21;3(3):034001. doi: 10.1088/2050-6120/3/3/034001.
In the last decade a number of cell-permeable phosphorescence based probes for imaging of (intra)cellular oxygen (icO) have been described. These small molecule, supramolecular and nanoparticle structures, although allowing analysis of hypoxia, local gradients and fluctuations in O, responses to stimulation and drug treatment at sub-cellular level with high spatial and temporal resolution, differ significantly in their operational performance and applicability to different cell and tissue models. Here we discuss and compare these probes with respect to their staining efficiency, brightness, photostability, toxicity, cell specificity, compatibility with different cell and tissue models, and analytical performance. Merits and limitations of particular probes are highlighted and strategies for development of new high-performance O imaging probes defined. Key application areas in hypoxia research, stem cells, cancer biology and tissue physiology are also discussed.
在过去十年中,已经报道了许多用于细胞内氧(icO)成像的可细胞渗透的磷光探针。这些小分子、超分子和纳米颗粒结构,尽管能够以高空间和时间分辨率在亚细胞水平分析缺氧、局部氧梯度和波动、对刺激的反应以及药物治疗,但它们在操作性能和对不同细胞和组织模型的适用性方面存在显著差异。在此,我们就这些探针的染色效率、亮度、光稳定性、毒性、细胞特异性、与不同细胞和组织模型的兼容性以及分析性能进行讨论和比较。突出了特定探针的优点和局限性,并确定了开发新型高性能氧成像探针的策略。还讨论了缺氧研究、干细胞、癌症生物学和组织生理学中的关键应用领域。