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The influence of UV radiation on silk fibroin

机译:紫外线辐射对丝素蛋白的影响

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An investigation into the influence of UV-irradiation on regenerated silk fibroin dissolved in water was carried out using UV-Vis and fluorescence spectroscopy. It was found that the absorption of regenerated silk fibroin in solution increased during UV-irradiation of the sample, most notably between 250 and 400 nm. Moreover, after UV-irradiation a wide peak emerged between 290 and 340 nm with maximum at about 305 nm. The new peak suggests that new photoproducts are formed during UV-irradiation of regenerated silk fibroin. The fluorescence of regenerated silk fibroin was observed at 305 nm, at 480 nm and at 601 nm after excitation at 275 nm. UV-irradiation caused fluorescence fading at 305 nm and at 601 nm. The increase of fluorescence was observed at 480 nm, probably due to formation of new photoproducts. After excitation at 305 nm the fluorescence of regenerated silk fibroin was observed at 340 nm and at 400 nm. UV-irradiation caused fluorescence fading at 340 nm. FTIR spectroscopy showed that primary structure of regenerated silk fibroin was not significantly affected by UV radiation. SDS-PAGE chromatography showed alterations of molecular weight of silk after UV exposure.
机译:使用UV-Vis和荧光光谱法研究了UV辐射对溶于水中的再生丝素蛋白的影响。发现在样品紫外线照射期间,溶液中再生的丝素蛋白的吸收增加,最显着的是在250至400 nm之间。此外,在紫外线照射后,在290至340 nm之间出现了一个宽峰,最大值出现在305 nm处。新的峰表明,在再生丝素蛋白的紫外线辐射过程中形成了新的光产物。在275nm激发后,在305nm,480nm和601nm观察到再生的丝素蛋白的荧光。紫外线照射导致305 nm和601 nm处的荧光褪色。在480 nm处观察到荧光的增加,可能是由于形成了新的光产物。在305nm激发后,在340nm和400nm观察到再生的丝素蛋白的荧光。紫外线照射导致340 nm处的荧光褪色。 FTIR光谱表明,再生丝素蛋白的一级结构不受紫外线辐射的显着影响。 SDS-PAGE色谱显示紫外线照射后丝绸的分子量发生了变化。

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