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Oxygen sensing PLIM together with FLIM of intrinsic cellular fluorophores for metabolic mapping

机译:氧感测PLIM与固有细胞荧光团的FLIM一起进行代谢定位

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Otical imaging techniques based on time correlated single photon counting (TCSPC) has found wide applications in medicine and biology. Non-invasive and information-rich fluorescence lifetime imaging microscopy (FLIM) is successfully used for monitoring fluorescent intrinsic metabolic coenzymes as NAD(P)H (nicotinamide adenine dinucleotide (phosphate)) and FAD+ (flavin adenine dinucleotide) in living cells and tissues. The ratio between protein-bound and free coenzymes gives an information about the balance between oxidative phosphorylation and glycolysis in the cells. The changes of the ratio reflects major cellular disorders. A correlation exists between metabolic activity, redox ratio and fluorescence lifetime during stem cell differentiation, neurodegenerative diseases, and carcinogenesis.A multichannel FLIM detection system was designed for monitoring the redox state of NAD(P)H and FAD+ and other intrinsic fluorophores as protoporphyrin IX. In addition, the unique upgrade is useful to perform FLIM and PLIM (phosphorescence lifetime imaging microscopy) simultaneously. PLIM is a promising method to investigate oxygen sensing in biomedical samples. In detail, the oxygen-dependent quenching of phosphorescence of some compounds as transition metal complexes enables measuring of oxygen partial pressure (pO_2). Using a two-channel FLIM/PLIM system we monitored intrinsic pO_2 by PLIM simultaneously with NAD(P)H by FLIM providing complex metabolic and redox imaging of living cells.Physico-chemical properties of oxygen sensitive probes define certain parameters including their localisation. We present results of some ruthenium based complexes including those specifically bound to mitochondria.
机译:基于时间相关单光子计数(TCSPC)的光学成像技术已在医学和生物学领域得到广泛应用。无创且信息丰富的荧光寿命成像显微镜(FLIM)已成功用于监测活细胞和组织中的荧光固有代谢辅酶,如NAD(P)H(烟酰胺腺嘌呤二核苷酸(磷酸盐))和FAD +(黄素腺嘌呤二核苷酸)。结合蛋白质的辅酶和游离辅酶之间的比例提供了有关细胞中氧化磷酸化和糖酵解之间平衡的信息。比率的变化反映出主要的细胞疾病。干细胞分化,神经退行性疾病和致癌过程中的代谢活性,氧化还原比和荧光寿命之间存在相关性。\ r \ n设计了多通道FLIM检测系统来监测NAD(P)H和FAD +以及其他固有荧光团的氧化还原状态作为原卟啉IX。此外,独特的升级对于同时执行FLIM和PLIM(磷光寿命成像显微镜)很有用。 PLIM是研究生物医学样品中氧气感测的一种有前途的方法。详细地,作为过渡金属络合物的某些化合物的磷光依赖氧的猝灭使得能够测量氧分压(pO_2)。使用两通道FLIM / PLIM系统,我们通过PLIM监测了内在的pO_2,同时通过FLIM监测了NAD(P)H,提供了活细胞的复杂代谢和氧化还原成像。\ r \ n氧敏感探针的理化性质定义了某些参数,包括它们的本土化。我们提出了一些基于钌的配合物的结果,包括与线粒体特异性结合的配合物。

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