Kalinina Sviatlana, Breymayer Jasmin, Schäfer Patrick, Calzia Enrico, Shcheslavskiy Vladislav, Becker Wolfgang, Rück Angelika
Ulm University, Core Facility Confocal and Multiphoton Microscopy, N24, Albert Einstein Allee 11, 89081, Ulm, Germany.
Zentrum biomedizinische Forschung (ZBF), Ulm University, Institute of Neurology, Helmholtzstr. 8/1, 89081, Ulm, Germany.
J Biophotonics. 2016 Aug;9(8):800-11. doi: 10.1002/jbio.201500297. Epub 2016 Mar 15.
Cellular responses to oxygen tension have been studied extensively. Oxygen tension can be determined by considering the phosphorescence lifetime of a phosphorescence sensor. The simultaneous usage of FLIM of coenzymes as NAD(P)H and FAD(+) and PLIM of oxygen sensors could provide information about correlation of metabolic pathways and oxygen tension. We investigated correlative NAD(P)H-FLIM and oxygen sensing-PLIM for simultaneously analyzing cell metabolism and oxygen tension. Cell metabolism and pO2 were observed under different hypoxic conditions in squamous carcinoma cell cultures and in complex ex vivo systems. Increased hypoxia induced an increase of the phosphorescence lifetime of Ru(BPY)3 and in most cases a decrease in the lifetime of NAD(P)H which is in agreement to the expected decrease of the protein-bound NAD(P)H during hypoxia. Oxygen was modulated directly in the mitochondrial membrane. Blocking of complex III and accumulation of oxygen could be observed by both the decrease of the phosphorescence lifetime of Ru(BPY)3 and a reduction of the lifetime of NAD(P)H which was a clear indication of acute changes in the redox state of the cells. For the first time simultaneous FLIM/PLIM has been shown to be able to visualize intracellular oxygen tension together with a change from oxidative to glycolytic phenotype.
细胞对氧张力的反应已得到广泛研究。氧张力可通过考虑磷光传感器的磷光寿命来确定。同时使用辅酶如NAD(P)H和FAD(+)的荧光寿命成像(FLIM)以及氧传感器的磷光寿命成像(PLIM),可以提供有关代谢途径与氧张力相关性的信息。我们研究了相关的NAD(P)H-FLIM和氧传感-PLIM,以便同时分析细胞代谢和氧张力。在鳞状癌细胞培养物和复杂的离体系统中,在不同的低氧条件下观察细胞代谢和pO2。缺氧增加导致Ru(BPY)3的磷光寿命增加,并且在大多数情况下,NAD(P)H的寿命减少,这与缺氧期间蛋白质结合的NAD(P)H预期减少一致。氧在线粒体内膜中直接受到调节。通过Ru(BPY)3磷光寿命的降低以及NAD(P)H寿命的减少,可以观察到复合物III的阻断和氧的积累,这清楚地表明了细胞氧化还原状态的急性变化。首次证明同时进行的FLIM/PLIM能够可视化细胞内氧张力以及从氧化型到糖酵解型表型的变化。