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Bilirubin photoconversion induced by monochromatic laser radiation. Comparison between aerobic and anaerobic experiments in vitro.

机译:单色激光辐射引起的胆红素光转换。有氧和无氧体外实验的比较。

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摘要

Structural and geometric photoisomerization of bilirubin bound to human serum albumin was investigated. Solutions were irradiated with monochromatic light emitted by an Ar ion laser, the 457.9, 488.0 and 514.5 nm wavelengths being selected. Photoproducts were separated and analysed by h.p.l.c. Visible-absorption spectra of pure ZZ-bilirubin, ZE-bilirubin and lumirubin in the eluent were registered in the 350-550 nm region by collecting single fractions by h.p.l.c. Wavelength-dependence of bilirubin photoconversion was studied within photoequilibrium and up to a large decrement of the total concentration. Experiments were performed in aerobic and anaerobic conditions in order to assess the contribution of the photo-oxidation to the overall process. The presence of O2 was found to increase the rate of bilirubin degradation and unexpectedly to favour lumirubin production. The ability of 514.5 nm irradiation to induce bilirubin cyclization was definitively confirmed.
机译:研究了与人血清白蛋白结合的胆红素的结构和几何光异构化。用Ar离子激光器发出的单色光照射溶液,选择457.9、488.0和514.5 nm波长。分离光产物并通过h.p.l.c分析。通过h.p.l.c收集单个级分,洗脱液中纯ZZ-胆红素,ZE-胆红素和鲁米红的可见吸收光谱记录在350-550nm区域。胆红素光转换的波长依赖性已在光平衡范围内进行了研究,并在总浓度大幅度降低的情况下进行了研究。为了评估光氧化对整个过程的贡献,在有氧和厌氧条件下进行了实验。发现氧气的存在会增加胆红素的降解速度,并出乎意料地有利于鲁米红的生产。确认了514.5 nm辐射诱导胆红素环化的能力。

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