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一种用于测量总可凝纤维蛋白原的96孔微滤测定法。

A 96-well microfiltration assay for measurement of total clottable fibrinogen.

作者信息

Dempfle C E, Keller A, Argirion S, Heene D L

机构信息

University of Heidelberg, Mannheim University Hospital, First Dept. of Medicine, Germany.

出版信息

Thromb Haemost. 1999 Feb;81(2):264-7.

Abstract

In clinical routine use, fibrinogen is measured by clotting-time methods, or by clot turbidity in photometric prothrombin time determination. For calibration of these assays measurement of total thrombin-clottable protein has been recommended. We have now developed a microfiltration assay for total thrombin-clottable protein. Plasma samples were mixed with thrombin in a 96-well microfiltration device. After clot formation, the fluid was extracted by vacuum suction, and fibrin adherent to the filter membranes washed with buffer. Membrane segments with adherent fibrin were recovered from the 96-well manifold with a punch and transferred to tubes containing denaturing buffer solution. After dissolution of fibrin, protein concentration was determined by optical absorption at 280 nm. The microfiltration assay displayed a high correlation with the total clottable protein method (R = 0.95), and fibrinogen antigen (r = 0.96). Correlation with clotting time assays, and PT-derived fibrinogen in 150 clinical plasma samples was in the range of r = 0.84 to r = 0.97. Intraassay and day-to-day variability of the assay was comparable to the conventional total clottable fibrinogen assay. The novel microfiltration assay appears to be well suited for measurement of large series of samples for calibration, screening purposes, and clinical trials.

摘要

在临床常规应用中,纤维蛋白原通过凝血时间法或在光度法测定凝血酶原时间时通过凝块浊度来测量。对于这些检测方法的校准,已建议测量总凝血酶可凝固蛋白。我们现已开发出一种用于测量总凝血酶可凝固蛋白的微滤检测方法。将血浆样本与凝血酶在96孔微滤装置中混合。凝块形成后,通过真空抽吸提取液体,并用缓冲液洗涤附着在滤膜上的纤维蛋白。用打孔器从96孔歧管中取出附着有纤维蛋白的膜段,并转移到含有变性缓冲溶液的试管中。纤维蛋白溶解后,通过在280nm处的光吸收测定蛋白质浓度。微滤检测方法与总可凝固蛋白法(R = 0.95)和纤维蛋白原抗原(r = 0.96)显示出高度相关性。在150份临床血浆样本中,与凝血时间检测方法以及PT衍生的纤维蛋白原的相关性在r = 0.84至r = 0.97范围内。该检测方法的批内和日间变异性与传统的总可凝固纤维蛋白原检测方法相当。这种新型微滤检测方法似乎非常适合用于校准、筛查目的和临床试验中大量样本的测量。

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