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Two-photon luminescence lifetime imaging microscopy (LIM) to follow up cell metabolism and oxygen consumption during theranostic applications

机译:双光子发光寿命成像显微镜(LIM)来跟踪诊断治疗期间的细胞代谢和耗氧量

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A common property during tumor development is altered energy metabolism, which could lead to a switch from oxidative phosphorylation and glycolysis. The impact of this switch for theranostic applications could be significant. Interestingly altered metabolism could be correlated with a change in the fluorescence lifetimes of both NAD(P)H and FAD. However, as observed in a variety of investigations, the situation is complex and the result is influenced by parameters like oxidative stress, pH or viscosity. Besides metabolism, oxygen levels and consumption has to be taken into account in order to understand treatment responses. For this, correlated imaging of phosphorescence and fluorescence lifetime parameters has been investigated by us and used to observe metabolic markers simultaneously with oxygen concentrations. The technique is based on time correlated single photon counting to detect the fluorescence lifetime of NAD(P)H and FAD by FLIM and the phosphorescence lifetime of newly developed phosphors and photosensitizers by PLIM. For this, the photosensitizer TLD1433 from Theralase, which is based on a ruthenium (Ⅱ) coordination complex, was used. TLD1433 which acts as a redox indicator was mainly found in cytoplasmatic organelles. The most important observation was that TLD1433 can be used as a phosphor to follow up local oxygen concentration and consumption during photodynamic therapy. Oxygen consumption was accompanied by a change in cell metabolism, observed by simultaneous FLIM/PLIM. The combination of autofluorescence-FLIM and phosphor-PLIM in luminescence lifetime microscopy provides new insights in light induced reactions.
机译:肿瘤发展过程中的一个共同特性是能量代谢改变,这可能导致氧化磷酸化和糖酵解的转变。这种转换对诊断应用的影响可能很大。有趣的是,新陈代谢的改变可能与NAD(P)H和FAD的荧光寿命的变化有关。但是,正如在各种研究中所观察到的那样,情况很复杂,结果受诸如氧化应激,pH或粘度等参数的影响。除了代谢外,还必须考虑氧气水平和消耗量,以了解治疗反应。为此,我们已经研究了磷光和荧光寿命参数的相关成像,并用于与氧浓度同时观察代谢标记。该技术基于时间相关的单光子计数,通过FLIM检测NAD(P)H和FAD的荧光寿命,并通过PLIM检测新开发的荧光粉和光敏剂的荧光寿命。为此,使用了Theralase的光敏剂TLD1433,它是基于钌(Ⅱ)配位化合物的。用作氧化还原指示剂的TLD1433主要存在于细胞质细胞器中。最重要的观察结果是TLD1433可用作荧光粉,以跟踪光动力治疗期间的局部氧气浓度和消耗。通过同时进行FLIM / PLIM观察到,氧气消耗伴随着细胞代谢的改变。自发荧光-FLIM和磷光体-PLIM在发光寿命显微镜中的结合为光诱导反应提供了新的见解。

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