Pro- and anti-coagulant factors are significantly altered in liver cirrhosis resulting in an increased bleeding and thrombosis risk. The thrombin generation (TG) test often seems unaltered in cirrhosis, indicating that a new hemostatic balance is reached. TG is determined by prothrombin conversion and thrombin inactivation. These processes can be quantified using the computational thrombin dynamics (TD) add-on analysis for the TG test. We studied TD parameters in cirrhosis to explore its predictive potential for bleeding and thrombosis. In the current study, 32 CP-A, 22 CP-B and 41 CP-C cirrhosis patients and 20 healthy controls were enrolled. Cirrhosis was predominantly alcohol-related (52%), while viral and metabolic etiologies accounted for 34% and 14% of cases, respectively. Patients receiving anticoagulant therapy were excluded. TG was measured using PPP Reagent Low in the presence and absence of thrombomodulin. TG peak height and velocity index were higher in patients than controls (+20%,p = 0.039 and +70%,p = 0.002), and time-to-peak was shorter (−18%,p < 0.0001). TD parameters were obtained computationally based on TG and coagulation factor data. The amount of prothrombin converted (PCtot) was significantly reduced in patients (−43%,p < 0.0001), and the magnitude of the reduction was associated with disease severity. The maximum rate of prothrombin conversion (PCmax) showed a trend towards higher levels in CP-A patients. On the anticoagulant slide, the thrombin decay capacity (TDC) was significantly lower in patients (−44%,p < 0.0001), indicating a newly developed balance between pro- and anticoagulant processes that result in a slightly procoagulant TG phenotype. Four patients experienced bleeding and seven experienced thrombosis during follow-up (median = 499 days; CI: 478–524 days). Low maximum prothrombin conversion rates (PCmax) were associated with an increased hazard of bleeding. Patients in the lowest 20% of PCmax had a HR of 12.9 (95% CI 1.34–124.31, p = 0.027) for bleeding. Low thrombin-α2Macroglobulin (T-α2M) complex formation was significantly associated with thrombosis during follow-up. Patients in the lowest quintile of T-α2M had a HR of 6.6 (95% CI 1.47–29.9, p = 0.014) for thrombosis. We conclude that reduced prothrombin conversion and thrombin inactivation result in rebalanced TG in cirrhosis patients. Our results demonstrate the potential clinical usefulness of TD parameters for the stratification of bleeding and thrombotic risk in cirrhosis patients.
R. Willems, A. Zanetto, E. Campello et al.· Frontiers in Cell and Develo...· 0 citations
Background: Less robust diurnal cortisol rhythms are hypothesized to be associated with fatigue, depressive symptoms, psychological distress, sleep disturbances and poorer quality of life. Sedentary behavior and physical activity may influence cortisol rhythmicity, providing mechanistic leads for intervention strategies. We examined longitudinal associations of accelerometer-assessed sedentary behavior and physical activity with diurnal cortisol patterns among patients with colorectal cancer (CRC) up to 12 months post-treatment. Methods: Among 74 CRC survivors, total and prolonged sedentary time (in bouts ≥30 min), total physical activity (TPA), and relative amplitude of physical activity reflecting day-night contrast in activity were determined with 7-day thigh-worn accelerometry at 6 weeks, 6 months, and 12 months after cancer treatment. Salivary cortisol was sampled five times daily over two consecutive days at each follow-up timepoint. As a comprehensive assessment of diurnal cortisol rhythms, the relative amplitude of cortisol concentration (RA_cort), diurnal slope, area under the curve (AUC) and cortisol awakening response (CAR) were derived as comprehensive measures of diurnal cortisol rhythms. We used confounder-adjusted linear mixed models to estimate overall longitudinal associations, with coefficients (β) reflecting differences in SD outcome units. Results: More total sedentary time (per 2 hours/day) was associated with a weaker decline in cortisol over time and thus a flatter slope (β=0.19; 95%CI=0.06,0.33). More prolonged sedentary time (per 2 hours/day) was associated with a lower RA_cort (β=−0.12; 95%CI=0.23, −0.01) and flatter cortisol slope (β=0.16; 95%CI=0.04,0.27). More TPA (per 1 hour/day: β=0.23; 95%CI=0.03,0.43) and a higher relative amplitude of physical activity (per SD: β= 3.51; 95%CI=0.10,6.92) were associated with a higher RA_cort. More total sedentary time (per 2 hours/day) was associated with a higher CAR (β=0.14; 95%CI=0.01,0.27). Conclusion: Higher physical activity levels, a larger RA of physical activity, and less sedentary time were associated with more robust diurnal cortisol rhythms, suggesting these behaviors may be targets for interventions aimed at improving cortisol rhythmicity after CRC. Registration: EnCoRe study (https://www.onderzoekmetmensen.nl/).
Koen G. Frenken, F. Scheer, J. Qian et al.· Research Square· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.