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Laboratory Testing for the Evaluation of Phenotypic Activated Protein C Resistance

活化蛋白C抗性 因素五莱顿 蛋白质C 血栓性 因子V 蛋白质S 医学 凝血因子 蛋白质S缺乏症 突变 凝结 免疫学 内科学 生物 遗传学 静脉血栓形成 血栓形成 基因
作者
Laure Morimont,Nathalie Donis,Céline Bouvy,François Mullier,Jean‐Michel Dogné,Jonathan Douxfils
出处
期刊:Seminars in Thrombosis and Hemostasis [Thieme Medical Publishers (Germany)]
卷期号:48 (06): 680-689 被引量:9
标识
DOI:10.1055/s-0042-1753511
摘要

Activated protein C (APC) resistance (APCR) is considered a risk factor of venous thromboembolism (VTE). The most common genetic disorder conferring APCR is a factor (F) V Leiden mutation, but many other factors are also implicated, such as other F5 mutations (e.g., FV Hong-Kong and FV Cambridge), protein S deficiency, elevated factor VIII, exogenous hormone use, pregnancy and postpartum, depending on how APCR is defined. Considering the large population affected, the detection of this phenotype is crucial. Two types of tests are currently available: clotting time-based assays (with several versions) and thrombin generation-based assays with the endogenous thrombin potential (ETP)-based assay. The purpose of this review is therefore to discuss the performances of these tests and the cases in which it would be appropriate to use one over the other. Initially, as APCR was thought to be solely related to the FV Leiden mutation, the objective was to obtain a 100% specific assay. Clotting-time based assays were thus specifically designed to detect this inherited condition. Later on, an APCR condition without a FV Leiden mutation was identified and highlighted as an independent risk factor of VTE. Therefore, the development of a less specific assay was needed and a global coagulation test was proposed, known as the ETP-based APCR assay. In light of the above, these tests should not be used for the same purpose. Clotting time-based assays should only be recommended as a screening test for the detection of FV mutations prior to confirmation by genetic testing. On the other hand, the ETP-based APC resistance assay, in addition to being able to detect any type of APCR, could be proposed as a global screening test as it assesses the entire coagulation process.
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