According to both trial and clinical data on direct oral anticoagulants (DOACs) elderly patients are at greatest risk of bleeding. It is unclear whether age intrinsically affects anticoagulation response. To investigate the age-related sensitivity to DOACs, we compared the pharmacological activity of the direct factor Xa inhibitor, rivaroxaban, between young and elderly subjects ex-vivo. 36 fit elderly and 30 fit young subjects [median (IQR) age: 83(75–87) vs 30(26–38) years] provided a blood sample. Clotting parameters were measured in the resultant plasma samples incubated with rivaroxaban (100–500 ng/ml). Parametric, non-parametric tests and regression lines adjusted for rivaroxaban concentration and baseline values were used to compare data. Rivaroxaban produced a greater prolongation of both Prothrombin Time (PT) and modified Prothrombin Time (mPT) (both p < 0.001) in the elderly compared to young subjects (with difference in mean PT increasing from 1.6 to 6.1s and for mPT from 23.5 to 71.1s at 100 ng/ml and 500 ng/ml plasma rivaroxaban concentration, respectively). Factor X and factor II activity was significantly lower in the elderly in the presence of rivaroxaban (p < 0.001 for both). Rivaroxaban prolonged time-based parameters and suppressed the amount of thrombin generation to a significantly greater extent in the elderly compared to young subjects [%change from baseline for Endogenous Thrombin Potential (ETP): − 35.0 ± 4.4 vs − 29.8 ± 7.4 nM*min; p = 0.002]. The use of validated DOAC assays will be of considerable benefit for monitoring elderly patients who, because of their increased sensitivity to rivaroxaban, may require lower doses of the drug for therapeutic anticoagulation.
Objectives: Time within therapeutic INR range (TTR) predicts benefits/risk of warfarin therapy. Identification of individual- and centre-related factors that influence TTR, and addressing them to improve anticoagulation control, are important. This study examined the impact of individual and centre-related factors upon long-term anticoagulation control in atrial fibrillation patients in seven UK-based monitoring services. Methods: Data between 2000 and 2014 on 25 270 patients (equating to 203 220 patient years) [18 120 (71.7%) in general practice, 2348 (9.3%) in hospital-based clinics and 4802 (19.0%) in domiciliary service] were analysed. Results: TTR increased with increasing age, peaking around 77% at 70-75 years, and then declined, was lower in females than males, and in dependent home-monitored patients than those attending clinic (P < 0.0001). TTR, number of dose changes and INR monitoring events and the probability of TTR <= 65%, differed across the centres (P < 0.0001). Conclusions: Although all the participating centres ostensively followed a standard dosing algorithm, our results indicate that variations in practice do occur between different monitoring sites. We suggest feedback on TTR for individual monitoring sites gauged against the average values reported by others would empower the individual centres to improve quality outcomes of anticoagulation therapy by identifying and adjusting contributory factors within their management system.
Introduction: Warfarin therapy is stopped for a fixed period prior to surgery to minimise risk of perioperative bleeding. However, anticoagulation subsides at varying rates among different patients. We evaluated the influence of genetic (CYP2C9 and VKORC1), patient and clinical factors on warfarin clearance and the decline in INR following warfarin withdrawal. Materials and methods: 131 patients completing a course of warfarin provided blood samples over 9 days for initial genotyping, and measurement of INR and plasma warfarin enantiomer concentrations. Results: S-warfarin clearance was significantly lower in patients with either CYP2C9 single (*2 or *3) or double (*2*2 or *2*3) variant alleles compared to those with wild-type genotype (P < 0.001). Regression analysis revealed that patient age (P = 0.037) and CYP2C9 *2*2 & *2*3 genotype (P = 0.005), but not VKORC1 genotype, significantly affected the time taken for the resumption of normal coagulation (INR value declining to <= 1.5). Conclusions: The inter-individual variability in the time needed for normal coagulation to resume following warfarin withdrawal is influenced, in the main, by variance in S-warfarin clearance, which in turn is affected by CYP2C9 polymorphism and age. Cost-effectiveness of pharmacogenetics-based algorithms incorporating CYP2C9 genotype and patient age could be increased if used not only to guide dosing decisions but also estimation of the correct length of time needed for individual patients to stop taking warfarin prior to surgery.
AIMS:Stabilization of anticoagulation control is seminal to reducing the risk of adverse effects of vitamin K antagonists. Reliable information on how ageing influences this is lacking. We set out to assess the true age-related changes in anticoagulation control, how gender and patient setting influence this, and the possible implications of these for patient outcomes and management.METHODS:In atrial fibrillation (AF) patients of a unified anticoagulant service monitoring patients in general practice or hospital-based clinics and housebound patients at home, international normalized ratio (INR) and warfarin dose data between 2000 and 2013 were extracted via the DAWN dosing program. Anticoagulation control was assessed by calculating percentage time spent within target INR (TTR).RESULTS:A total of 2094 AF patients [938 (44.8%) in general practice (GP) and 531 (25.4%) in hospital (H)-based clinics and 625 (29.8%) through the domiciliary service (D)] were evaluated. The frequency of warfarin dose changes and INR monitoring events declined until about age 67, then increased as patients got older. The TTR according to age was significantly lower and the probability of having a TTR ≤65% according to age was higher for D than for H and GP, and females had a greater probability of having a TTR ≤65% than age-matched males.CONCLUSION:Identification of factors underlying poorer anticoagulation control in older housebound patients and the introduction of effective modifications to improve the clinical effectiveness of anticoagulation in such patients is needed.
Two older patients with atrial fibrillation, receiving warfarin for thromboembolic prophylaxis, with a target range of 2.0-3.0, were significantly over anticoagulated prior to elective intervention, in spite of having adhered to the standard protocol of 5 days of warfarin interruption. Neither patient had any abnormality of liver function nor was taking any interacting drug known to inhibit warfarin metabolism or affect sensitivity to warfarin. Both had variant cytochrome P2C9 (CYP2C9) alleles which reduce the metabolic capacity of the CYP2C9 enzyme responsible for the metabolism of the S-warfarin enantiomer. Need for preoperative administration of vitamin K or postponement of an operation because of an INR >1.5 could be explained by variant alleles for CYP2C9 and age.
BackgroundPatients on warfarin are normally required to stop treatment for a fixed number of days prior to an invasive procedure. However, the anticoagulant activity of warfarin subsides at different rates among different patients.ObjectivesThe aim of this study was to investigate the potential influence of CYP2C9 polymorphism on the variable rate of fall in the International Normalized Ratio (INR) in patients withdrawing from warfarin treatment prior to elective surgery.Patients/MethodsOne hundred and fifty-two patients aged 43-93years were recruited. Demographic data on age, height, weight, gender, daily warfarin dose, indication for anticoagulation therapy, medical diagnosis, surgical operation planned and concomitant medication were recorded. A blood sample was taken for later CYP2C9 genotyping.ResultsFor patients with two CYP2C9 variant alleles (CYP2C9*2*2 or CYP2C9*2*3), the odds of having an INR of 1.5 before the planned day of surgery were 8.64 times greater (95% confidence interval [CI]2.25-33.25) than for other patients. Multiple regression analysis revealed that the rate of fall in the INR was reduced in the presence of two CYP2C9 variant alleles, as well as increasing patient age, weight and number of comorbidities, and increased with increasing initial INR (F-5,F-132=242.9, P<0.0001), all of which accounted for similar to 90% of the interindividual variability in the fall in INR.ConclusionA genotype-guided protocol to tailor warfarin withdrawal according to an individual patient's CYP2C9 genotype could reduce cancellation or delays of planned procedures, and could also be beneficial when transitioning patients from warfarin to one of the new oral anticoagulants.
BACKGROUNDnovel oral anticoagulants may be particularly cost-effective when INR control (TTR) with warfarin is poor or monitoring difficult.SETTINGthe Newcastle upon Tyne monitoring service, set in hospital or general practice and a domiciliary-based service for housebound patients.OBJECTIVESto examine anticoagulation stability and costs of monitoring.SUBJECTSthree hundred and twenty-six atrial fibrillation patients, 75 years and over, with target INR of two to three, accessing hospital (n = 100), general practice (n = 122) and domiciliary (n = 104) service.METHODSage, co-morbidities, length of warfarin treatment, medications, INR values and dose changes from January to December 2011 were recorded, and costs analysed.RESULTShome-monitored patients had taken warfarin for longer, mean 5.2 years, than hospital (3.7) or general practice (3.1) patients. Age and total number of drugs prescribed chronically were negatively related to TTR. INR measurements and dose changes were negatively associated with the duration of treatment, positively correlated with co-morbidities. The mean TTR was 78% in hospital, 71% in general practice and 68% in domiciliary monitored patients. INR was monitored more often in hospital and domiciliary groups than in general practice and more dose changes occurred in the domiciliary group than in others. Costs of warfarin and monitoring were £128 per patient per year for hospital, £126 for general practice and £222 for domiciliary patients.CONCLUSIONSfurther exploration of the clinical effectiveness of novel anticoagulants in dependent patients is warranted to determine to what extent trial outcomes so far achieved in a fitter elderly population are influenced by the chronic co-morbidities of old age.
Introduction/Background Over several decades, warfarin has been used as the drug of choice for prevention and treatment of thromboembolic disorders. The impact of dietary vitamin K intake on anticoagulation response to warfarin is well established. However, the effect of dietary vitamin K on the activity of the novel oral anticoagulants is less well known. Since the activation of both factor X and thrombin is inextricably linked to the vitamin K cycle in the coagulation cascade, there is the possibility that the pharmacological activity of agents that inhibit these proteins could be influenced by alterations in vitamin K availability.Aim To examine the influence of dietary vitamin K intake on the pharmacological activity of rivaroxaban in man.Methods The pharmacological activity of rivaroxaban was evaluated ex-vivo. Thirty one medically stable elderly inpatients (12 males) with a poor dietary intake in terms of calories and nutrients including vitamin K (12 males) and 28 healthy subjects (7 males) with adequate diets were enrolled into the study. An overnight fasted venous blood sample (20 ml) was taken from each subject. The plasma was stored at -80 degree C for the later measurement of the effects of rivaroxaban on clotting times and clotting factor activity. Each subject completed a validated dietary questionnaire for quantification of vitamin K content of foods eaten in the past week. The plasma samples from each subject were incubated with a range of rivaroxaban concentrations (100 - 500 ng/ml) in order to simulate the therapeutic drug plasma concentrations. Normal prothrombin time (PT), modified prothrombin time (mPT), and vitamin K dependent clotting factors activity were measured according to established in-house methods.Results The mean±SD age of elderly patients and healthy subjects was 87±6 and 36±10 years, respectively. Rivaroxaban produced a greater prolongation of both PT (P=0.01) and m-PT (P=0.02) in the plasma of elderly subjects than the younger healthy subjects over the drug concentration range studied. The mean difference in PT between the two groups ranged from 1.8s to 5.0s at 100 ng/ml and 500 ng/ml plasma rivaroxaban concentrations respectively. The mean difference in m-PT between the two groups ranged from 10.0s to 34.0s at 100 ng/ml and 500 ng/ml plasma rivaroxaban concentrations respectively. There was also a greater inhibition of factor Xa (P=0.005) activity by rivaroxaban in the elderly subjects compared to the healthy subjects, whereas factor IXa (P=0.03) activity was significantly inhibited in the healthy subjects compared to the elderly subjects. However, there were no significant differences between the two groups in factors II and VII activity and fibrinogen concentration. The analysis of dietary questionnaires for vitamin K intake and plasma for fasting vitamin K levels is in progress and the results will be presented.Conclusion We have previously demonstrated in a proof-of-concept study in rats that vitamin K deficiency significantly enhanced the pharmacological activity of the prototype DTI, ximelagatran [1]. The present study findings suggest that the anticoagulation response to rivaroxaban may be influenced by poor dietary vitamin K intake. Assessment of whether dietary vitamin K influences anticoagulation response as well as any influence of age, co morbidities and drug intake in patients taking rivaroxaban is warranted.[1] Kamali F, Wood P, Ward A. Vitamin K deficiency amplifies anticoagulation response to ximelagatran: possible implications for direct thrombin inhibitors and their clinical safety. Annals of Hematology 2009; 88:141-149.Disclosures: No relevant conflicts of interest to declare.