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Spectroscopic studies of autofluorescence substances existing in human tissue: influences of lactic acid and porphyrins

机译:人体组织中自身荧光物质的光谱学研究:乳酸和卟啉的影响

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摘要

The influence of lactic acid or porphyrins on the optical properties of tissue fluorophores is investigated by autofluorescence (AF) spectroscopy measurement with a GaN-based ultraviolet laser diode along with Fourier-transform IR (FTIR) spectroscopy measurement. As the lactic-acid concentration becomes dense, the AF peak intensity from elastin and desmosine solutions become wholly weak. A similar reduction in the AF intensity is observed for nicotinamide adenine dinucleotide (NADH) solutions. FTIR analysis indicates that the lactic acid causes the conformational change in elastin and the oxidation of NADH, which can be related to changes in the AF properties. The peak intensity of the tissue fluorophores also becomes weak when porphyrins are added, although the conformational change in each tissue fluorophore is not confirmed from FTIR analysis. Judging from the change in the scattering-light intensity of the excitation source, the observed change mainly originates from the absorption of the excitation source by porphyrins.
机译:通过使用基于GaN的紫外激光二极管的自发荧光(AF)光谱测量以及傅里叶变换IR(FTIR)光谱测量,研究了乳酸或卟啉对组织荧光团光学特性的影响。随着乳酸浓度的升高,弹性蛋白和去糖胺溶液的AF峰强度变得完全弱。对于烟酰胺腺嘌呤二核苷酸(NADH)溶液,AF强度也有类似的降低。 FTIR分析表明,乳酸会导致弹性蛋白的构象变化和NADH的氧化,这可能与AF性能的变化有关。尽管未通过FTIR分析确认每个组织荧光团的构象变化,但是当添加卟啉时,组织荧光团的峰强度也变弱。从激发源的散射光强度的变化来看,观察到的变化主要源于卟啉对激发源的吸收。

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