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泪液中电化学活性成分的含量,包括水溶性抗氧化剂。

Tear fluid content of electrochemically active components including water soluble antioxidants.

作者信息

Gogia R, Richer S P, Rose R C

机构信息

Department of Physiology and Biophysics, Finch University of Health Sciences, Chicago Medical School, IL, USA.

出版信息

Curr Eye Res. 1998 Mar;17(3):257-63. doi: 10.1076/ceyr.17.3.257.5213.

Abstract

PURPOSE

To describe the content of water-soluble antioxidants in tear fluid.

METHODS

We collected tear fluid from healthy subjects, either into borosilicate glass tubing or by absorption onto Schirmer strips. High pressure liquid chromatography with electrochemical detection provided data on several components in a single assay. The system was sufficiently sensitive to provide reliable values for components present in tear fluid collected at normal (basal) or stimulated rates of secretion.

RESULTS

Tear fluid at basal secretion was found to contain four compounds often considered to function in biology as antioxidants. Ascorbic acid (AA) is found at 665 microM, tyrosine at 45 microM and glutathione (GSH) at 107 microM. Cysteine (48 microM) and uric acid (328 microM) are reported for the first time; the latter is somewhat controversial as a physiologically active antioxidant. One peak on the chromatogram was consistently present but has not been identified. During stimulation of flow by brief inhalation of ammonium hydroxide fumes, the concentration of each compound was lower.

CONCLUSION

This work demonstrates the presence of electro-chemically active components that might function as antioxidants at the anterior surface of the cornea against potential damage from radiation, oxygen toxicity, abrasion and environmental chemicals.

摘要

目的

描述泪液中水溶性抗氧化剂的成分。

方法

我们从健康受试者收集泪液,收集到硼硅酸盐玻璃管中或吸收到泪液试纸条上。采用电化学检测的高压液相色谱法在一次测定中提供了几种成分的数据。该系统灵敏度足够高,可为以正常(基础)或刺激分泌速率收集的泪液中的成分提供可靠值。

结果

发现基础分泌的泪液含有四种通常被认为在生物学中起抗氧化作用的化合物。抗坏血酸(AA)浓度为665微摩尔/升,酪氨酸为45微摩尔/升,谷胱甘肽(GSH)为107微摩尔/升。首次报道了半胱氨酸(48微摩尔/升)和尿酸(328微摩尔/升);后者作为一种生理活性抗氧化剂存在一定争议。色谱图上有一个峰始终存在但尚未鉴定。在通过短暂吸入氢氧化铵烟雾刺激泪液分泌时,每种化合物的浓度都较低。

结论

这项研究表明存在具有电化学活性的成分,这些成分可能在角膜前表面起到抗氧化剂的作用,以抵御辐射、氧毒性、磨损和环境化学物质造成的潜在损害。

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