Related Experiment Video
Updated: Aug 9, 2026

Measurement of Factor V Activity in Human Plasma Using a Microplate Coagulation Assay
Published on: September 9, 2012
Genetic determination of coagulation factor VIIc levels among healthy middle-aged women
1University of Pittsburgh, Dept. of Epidemiology, Graduate School of Public Health, PA, USA.
A recent study (1) reported variation among men in clotting factor VIIc levels is associated with a genetic polymorphism detected by the restriction enzyme Msp I. The present study determined the Msp I genotype (Arg353, Gln353 alleles) for 189 women (mean age 53) who were subjects in the Healthy Women Study, a population study of CHD risk factor change at menopause. Women with the Arg/Arg genotype (n = 147) had an 16% higher (geometric) mean FVIIc level than those with the Arg/Gln (n = 41) genotype (1.21 vs 1.04 U/ml, p < 0.01), while the one subject with the Gln/Gln genotype had an FVIIc level of 1.00 U/ml. These results are consistent with those previously found in healthy men (1). In addition, women carrying the Gln allele did not exhibit the elevation in FVIIc with menopause and use of hormone therapy found among those with the Arg allele, suggesting that genotype may modify the observed rise in factor VIIc at menopause. Possibly because of the small sample size this interaction did not reach conventional levels of statistical significance. Results of multiple linear regression analyses controlling for age, hormone use, obesity, (ln) triglyceride levels, and family history of CHD found FVIIc levels to be significantly (p < 0.001) related to genotype. Thus, genotype appears to be a major determinant of FVIIc levels among women.
A recent study (1) reported variation among men in clotting factor VIIc levels is associated with a genetic polymorphism detected by the restriction enzyme Msp I. The present study determined the Msp I genotype (Arg353, Gln353 alleles) for 189 women (mean age 53) who were subjects in the Healthy Women Study, a population study of CHD risk factor change at menopause. Women with the Arg/Arg genotype (n = 147) had an 16% higher (geometric) mean FVIIc level than those with the Arg/Gln (n = 41) genotype (1.21 vs 1.04 U/ml, p < 0.01), while the one subject with the Gln/Gln genotype had an FVIIc level of 1.00 U/ml. These results are consistent with those previously found in healthy men (1). In addition, women carrying the Gln allele did not exhibit the elevation in FVIIc with menopause and use of hormone therapy found among those with the Arg allele, suggesting that genotype may modify the observed rise in factor VIIc at menopause. Possibly because of the small sample size this interaction did not reach conventional levels of statistical significance. Results of multiple linear regression analyses controlling for age, hormone use, obesity, (ln) triglyceride levels, and family history of CHD found FVIIc levels to be significantly (p < 0.001) related to genotype. Thus, genotype appears to be a major determinant of FVIIc levels among women.
More Related Videos
04:56Determination of the Procoagulant Activity of Extracellular Vesicle (EV) Using EV-Activated Clotting Time (EV-ACT)
Published on: August 4, 2023
08:01The Nijmegen Hemostasis Assay: Simultaneous Fluorogenic Measurement of Thrombin and Plasmin Generation in a Single Well
Published on: February 27, 2026
Related Concept Videos
Factors Affecting Illness
For instance, risk factors are connected to illness, disability,...
Coagulation
Anticoagulant Drugs: Low-Molecular-Weight Heparins
Coagulation
During the coagulation phase, clotting factors, or procoagulants, play a vital role in initiating and progressing the coagulation cascade. This cascade is a series of reactions...
Disorders of Hemostasis
Thromboembolic Disorders
Two factors primarily cause thromboembolic conditions.
Venous Thrombosis II: Clinical Manifestations and Diagnostic Studies