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光谱分布对胆红素体内异构化的影响。

Effect of spectral distribution on isomerization of bilirubin in vivo.

作者信息

Costarino A T, Ennever J F, Baumgart S, Speck W T, Polin R A

出版信息

J Pediatr. 1985 Jul;107(1):125-8. doi: 10.1016/s0022-3476(85)80633-8.

Abstract

The purpose of our study was to compare the effects of narrow-spectrum blue light and broad-spectrum white light on the production of bilirubin photo-isomers in human infants with jaundice. Twelve preterm infants were studied under both white and blue light. Irradiance at 450 nm was controlled at 12 microW/cm2/nm for both light sources. Each light condition (white or blue) was administered for 12 hours. Bilirubin isomers (4Z,15E-bilirubin and lumirubin) were measured before therapy and after 12 hours of each sequential light condition. The percentage of 4Z,15E-bilirubin was greater under blue light than under white light (P less than 0.01) phototherapy. There was no significant difference in percentage lumirubin under white or blue light therapy. Our data indicate that blue light is more effective than white light in producing 4Z,15E-bilirubin in vivo. Our study demonstrates that when irradiance in the bilirubin absorbance spectrum is constant, the color of light (spectral distribution) will determine the relative concentrations of photo-isomers produced.

摘要

我们研究的目的是比较窄谱蓝光和广谱白光对黄疸人类婴儿胆红素光异构体生成的影响。对12名早产儿进行了白光和蓝光照射研究。两种光源在450nm处的辐照度均控制在12微瓦/平方厘米/纳米。每种光照条件(白光或蓝光)照射12小时。在每次连续光照条件治疗前和12小时后测量胆红素异构体(4Z,15E-胆红素和光红素)。蓝光照射下4Z,15E-胆红素的百分比高于白光照射(P<0.01)光疗。白光或蓝光治疗下光红素的百分比无显著差异。我们的数据表明,蓝光在体内生成4Z,15E-胆红素方面比白光更有效。我们的研究表明,当胆红素吸收光谱中的辐照度恒定时,光的颜色(光谱分布)将决定产生光异构体的相对浓度。

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