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首页> 外文期刊>Seminars in Thrombosis and Hemostasis >Measurement of maximum thrombin generation capacity in blood and plasma using the thrombin generation assay (THROGA).
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Measurement of maximum thrombin generation capacity in blood and plasma using the thrombin generation assay (THROGA).

机译:使用凝血酶生成测定(THROGA)测量血液和血浆中最大凝血酶生成能力。

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摘要

Diagnosis of a hyper- or hypocoagulable state has been very difficult. The first attempt to solve this problem was the method of endogenous thrombin potential (ETP) by Hemker. In ETP, activators and a chromogenic substrate are added to diluted plasma samples and the thrombin generation is measured. By analysis of acquired data, three characteristics of ETP are seen: lag phase, peak thrombin, and velocity index. ETP is not suited for exact determination of maximum activated thrombin. Therefore, a new method was developed: the thrombin generation assay (THROGA). With the use of THROGA, the maximum generated thrombin in a blood or plasma sample can be measured easily. The background of the method is the addition of a certain amount of recombinant hirudin (r-hirudin) to the blood or plasma sample. After activation, the generated thrombin is bound quantitatively and neutralized by r-hirudin so that at the end of the activation phase the amount of generated thrombin can be determined easily and exactly by measurement of residual r-hirudin in the sample.
机译:高凝或低凝状态的诊断非常困难。解决此问题的第一个尝试是Hemker的内源性凝血酶电位(ETP)方法。在ETP中,将活化剂和生色底物添加到稀释的血浆样品中,并测量凝血酶的产生。通过对采集到的数据进行分析,可以看到ETP的三个特征:滞后阶段,峰值凝血酶和速度指数。 ETP不适合精确确定最大活化凝血酶。因此,开发了一种新方法:凝血酶生成测定法(THROGA)。通过使用THROGA,可以轻松测量血液或血浆样品中产生的最大凝血酶。该方法的背景是向血液或血浆样品中添加一定量的重组水rud素(r-hirudin)。激活后,生成的凝血酶被r-hirudin定量结合并中和,因此在激活阶段结束时,可以通过测量样品中残留的r-hirudin轻松,准确地确定生成的凝血酶的量。

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