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首页> 外文期刊>Cornea >A protein dye-binding assay on cellulose membranes for tear protein quantification: use of conventional schirmer strips.
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A protein dye-binding assay on cellulose membranes for tear protein quantification: use of conventional schirmer strips.

机译:在纤维素膜上进行蛋白质染料结合测定以进行泪液蛋白质定量:使用常规的舒默条带。

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PURPOSE: To develop a method to quantify tear protein concentration with the sensitivity to measure this variable in the restricted volumes of single human tear samples. METHODS: Aliquots of tear fluid from healthy subjects and a solution of standard bovine serum albumin (BSA) were spotted on cellulose membranes. Membranes were fixed, stained for protein with Coomassie blue, and washed until they displayed clear backgrounds. Stained spots were excised and eluted in a defined volume of methanol-ammonia, and the absorbance was determined spectrophotometrically at 610 nm. Membranes were calibrated by calculating their apparent thickness from the areas of stained spots and the corresponding aliquot volumes of either tear fluid or BSA solution. RESULTS: In our dye-binding assay, absorbance (0-1.00 OD) was found to have a linear relation with tear fluid volume (1-7 microL). In a study involving samples from 33 healthy subjects, aliquots (3 microL) of tear fluid were found to yield absorbances in the linear range. Protein concentrations in tear fluid were found to be distributed over the range of 2.20-6.37 mg/mL (mean, 4.11 +/- 1.00 mg/mL) with no apparent sex differences. The assay can be applied successfully to quantify protein concentrations in tear fluid by using calibrated Schirmer strips after a tear test. Electrophoretic profiles of proteins present in tear fluid sampled from different healthy individuals were nearly identical when normalized for protein load by using this method. CONCLUSIONS: The protein dye-binding assay we developed by using cellulose membranes or Schirmer strips is an efficient and convenient method for measuring tear protein concentration.
机译:目的:开发一种定量定量泪液蛋白浓度的方法,其灵敏度可以在单个人类泪液样品的受限体积中测量此变量。方法:将健康受试者的泪液等分试样和标准牛血清白蛋白(BSA)溶液点在纤维素膜上。固定膜,用考马斯亮蓝对蛋白质染色,并洗涤直到它们显示出清晰的背景。切下染色的斑点并在确定体积的甲醇-氨中洗脱,并在610 nm处用分光光度法测定吸光度。通过从染色斑点的面积和泪液或BSA溶液的相应等分体积计算膜的表观厚度来校准膜。结果:在我们的染料结合测定中,发现吸光度(0-1.00 OD)与泪液量(1-7 microL)呈线性关系。在一项涉及来自33位健康受试者的样本的研究中,发现等分试样(3微升)的泪液可产生线性范围内的吸光度。发现泪液中的蛋白质浓度分布在2.20-6.37 mg / mL(平均值为4.11 +/- 1.00 mg / mL)范围内,没有明显的性别差异。通过在泪液测试后使用校准的Schirmer试纸条,该测定法可成功应用于定量泪液中的蛋白质浓度。当使用此方法对蛋白质负荷进行标准化时,从不同健康个体采集的泪液中存在的蛋白质的电泳图谱几乎相同。结论:我们通过使用纤维素膜或Schirmer条开发的蛋白质染料结合测定法是测量泪液蛋白质浓度的一种有效而便捷的方法。

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