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1.
Thromb Res ; 224: 38-45, 2023 04.
Article in English | MEDLINE | ID: mdl-36827954

ABSTRACT

BACKGROUND: The ISTH-SSC guidelines for lupus anticoagulant (LA) testing recommend using in-house determined cut-off values, pooled normal plasma (PNP) for ratio normalization, and a ratio for the mixing test interpretation. They strongly support the mixing step role in the diagnostic process. OBJECTIVES: To investigate and compare the LA testing results and interpretations obtained following the ISTH-SSC guidelines or the available alternatives. PATIENTS/METHODS: Blood samples for LA testing from 462 consecutive patients were evaluated for screening, mixing and confirmatory tests. The analysis focused on the interpretation differences between using (1) the in-house cut-off values versus the manufacturer's cut-off values, (2) a normalized ratio calculated using PNP at each run versus the mean of the reference interval, (3) a normalized ratio versus the index of circulating anticoagulant to interpret the mixing step, and (4) a two-step versus three-step procedure. RESULTS: LA testing outcomes were comparable when using the in-house and manufacturer's cut-off values. More positive dilute Russell's viper venom (DRVV) time results were obtained with the normalized ratio based on PNP than with the mean of the reference interval. Overall, the mixing test results obtained with the normalized ratio and the index of circulating anticoagulant showed a good agreement. Among the 97 DRVV Screen test-positive samples, 33 and 89 were classified as LA-positive with the 3-step and the 2-step procedure, respectively. CONCLUSIONS: The cut-off value used and the way to normalize ratios had a limited impact. Conversely, it is important to understand the mixing test characteristics to maximize its diagnostic potential.


Subject(s)
Antiphospholipid Syndrome , Lupus Coagulation Inhibitor , Humans , Blood Coagulation Tests/methods , Prothrombin Time , Anticoagulants/therapeutic use , Partial Thromboplastin Time
2.
Rev Med Interne ; 41(8): 552-558, 2020 Aug.
Article in French | MEDLINE | ID: mdl-32362366

ABSTRACT

INTRODUCTION: Chronic neutrophilic leukemia (CNL) is a rare myeloproliferative syndrome characterized by a significant increase in mature neutrophils. One of the most serious complications is the occurrence of bleeding events, which may sometimes lead to death. CASE REPORT: A 75-year-old patient presented with CNL, complicated by a severe bleeding phenotype. Biological investigations revealed platelet function defect and increase in neutrophil elastase. The follow-up was marked by an intracranial hemorrhage leading to the patient's death 7 months after diagnosis. CONCLUSION: This bleeding phenotype has been reported several times in patients with CNL. However, the pathophysiological mechanisms that cause bleeding are not yet fully understood.


Subject(s)
Cerebral Hemorrhage/etiology , Leukemia, Neutrophilic, Chronic/complications , Aged , Cerebral Hemorrhage/diagnosis , Cerebral Hemorrhage/pathology , Fatal Outcome , Humans , Leukemia, Neutrophilic, Chronic/diagnosis , Leukemia, Neutrophilic, Chronic/pathology , Male , Platelet Aggregation
3.
J Thromb Haemost ; 16(6): 1132-1140, 2018 06.
Article in English | MEDLINE | ID: mdl-29577605

ABSTRACT

Essentials The role of increased factor VIII in cirrhosis-induced hypercoagulability has never been demonstrated. Factor VIII and protein C effects were characterized by thrombin generation with thrombomodulin. Factor VIII elevation plays a significant role in cirrhosis-induced plasma hypercoagulability. Only protein C and factor VIII normalization led to thrombin generation similar to controls. SUMMARY: Background In cirrhosis, thrombin generation (TG) studied in the presence of thrombomodulin (TM) indicates plasma hypercoagulability. Although the role of protein C (PC) deficiency has been investigated, the influence of an increase in the factor VIII level has never been addressed. Objectives We investigated the roles of high FVIII and low PC levels in increased TG in the presence of TM. Methods Blood samples were prospectively collected from 35 healthy controls and 93 patients with cirrhosis (Child-Turcotte-Pugh [CTP]-A, n = 61; CTP-B, n = 19; and CTP-C, n = 13) and FVIII levels > 150% (n = 48) and/or PC levels < 70% (n = 88). TG was performed with tissue factor (5 pm), phospholipids, and TM (4 nm). FVIII and PC levels were normalized by adding an inhibitory anti-FVIII antibody and exogenous PC, respectively. Results The endogenous thrombin potential (ETP) in the presence of TM was higher in patients than in controls. After FVIII normalization, the ETP (median) decreased from 929 nm min to 621 nm min (CTP-A), 1122 nm min to 1082 nm min (CTP-B), and 1221 nm min to 1143 nm min (CTP-C); after PC normalization, it decreased from 776 nm min to 566 nm min (CTP-A), 1120 nm min to 790 nm min (CTP-B), and 995 nm min to 790 nm min (CTP-C). The ETP was reduced by 17% and 30%, respectively, but normal TG was not restored. When both FVIII and PC levels were normalized, the ETP decreased from 929 nm min to 340 nm min (CTP-A), 1122 nm min to 506 nm min (CTP-B), and 1226 nm min to 586 nm min (CTP-C), becoming similar to control levels. Conclusion Cirrhosis-induced plasma hypercoagulability, as demonstrated in these experimental conditions, can be partly explained by opposite changes in two factors: PC level (decrease) and FVIII level (increase).


Subject(s)
Blood Coagulation , Factor VIII/metabolism , Liver Cirrhosis/complications , Thrombophilia/etiology , Adult , Aged , Biomarkers/blood , Blood Coagulation Tests , Case-Control Studies , Female , Humans , Liver Cirrhosis/blood , Liver Cirrhosis/diagnosis , Male , Middle Aged , Phenotype , Protein C/metabolism , Thrombin/metabolism , Thrombomodulin/metabolism , Thrombophilia/blood , Thrombophilia/diagnosis , Up-Regulation
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