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利用傅里叶变换红外光谱法分析人体泪液

Analysis of human tear fluid by Fourier transform infrared spectroscopy.

作者信息

Nagase Yasushi, Yoshida Satoshi, Kamiyama Kenji

机构信息

Sun Contact Lens Co., Ltd., 475 Huya-chou Ebisugawa-agaru, Nakagyou-ku, Kyoto, Japan.

出版信息

Biopolymers. 2005 Sep;79(1):18-27. doi: 10.1002/bip.20331.

Abstract

The purpose of this research is to find some useful spectroscopic factors in human tear fluid contents to monitor diurnal changes of the physicochemical ocular conditions noninvasively. All tear fluid samples were collected with glass microcapillary tubes from both eyes of three donors and analyzed by Fourier transform infrared spectroscopy with attenuated total reflectance (FTIR-ATR). We measured the peak intensities at 2852, 1735, 1546, and 1242 cm(-1), and the peak intensity ratios among those peaks in the second derivative spectra. We found significant diurnal and individual variations in those peak intensities for tear fluid obtained from right and left eyes. Among these variations, we observed significant changes in tear samples between right and left eyes. In this case the peak intensity ratio between 1242 (phosphate ester) and 2852 cm(-1) (fatty acid methylene) of right eye tear fluid was increased in the afternoon (1600 to 1900 h), while that of left eye tear fluid did not change significantly. In the ratio between 1242 (phosphate ester) and 1546 cm(-1) (amide II), the difference was not observed between both eyes. We conclude that the difference in diurnal variations of biochemical constituents between right and left eye tear fluids could be monitored noninvasively and nondestructively by FTIR technique and this method could be useful in the future for tear diagnoses.

摘要

本研究的目的是在人泪液成分中找到一些有用的光谱学因素,以无创地监测眼部理化状况的昼夜变化。所有泪液样本均使用玻璃微毛细管从三名供体的双眼采集,并通过衰减全反射傅里叶变换红外光谱(FTIR-ATR)进行分析。我们测量了2852、1735、1546和1242 cm⁻¹处的峰强度,以及二阶导数光谱中这些峰之间的峰强度比。我们发现从右眼和左眼获得的泪液的这些峰强度存在显著的昼夜变化和个体差异。在这些变化中,我们观察到右眼和左眼的泪液样本之间存在显著变化。在这种情况下,右眼泪液中1242(磷酸酯)与2852 cm⁻¹(脂肪酸亚甲基)之间的峰强度比在下午(1600至1900 h)增加,而左眼泪液的该比值没有显著变化。在1242(磷酸酯)与1546 cm⁻¹(酰胺II)之间的比值中,双眼之间未观察到差异。我们得出结论,FTIR技术可以无创、无损地监测右眼和左眼泪液中生化成分昼夜变化的差异,并且这种方法未来可能对泪液诊断有用。

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