BACKGROUND:Prothrombin complex concentrates (PCCs) are frequently used to reverse the effect of vitamin K antagonists (VKAs) in patients with non-traumatic intracerebral hemorrhage (ICH). However, information on the rate of thromboembolic events (TEs) and allergic events after PCC therapy in VKA-ICH patients is limited.METHODS:Consecutive VKA-ICH patients treated with PCC at our institution between December 2004 and June 2014 were included into this retrospective observational study. We recorded international normalized ratio (INR) values before and after PCC treatment, baseline clinical characteristics including the premorbid modified Rankin Scale (pmRS) score, TE and allergic event that occurred during the hospital stay. All events were classified by 3 reviewers as being 'related', 'probably related', 'possibly related', 'unlikely related' or 'not related' to treatment with PCC. To identify factors associated with TEs, log-rank analyses were applied.RESULTS:Two hundred and five patients were included. Median INR was 2.8 (interquartile range (IQR) 2.2-3.8) before and 1.3 (IQR 1.2-1.4) after PCC treatment and a median of 1,500 IU PCC (IQR 1,000-2,500) was administered. Nineteen TEs were observed (9.3%); none were classified 'related' but 9 were classified as 'possibly' or 'probably related' to PCC infusion (4.4%). One allergic reaction (0.5%), 'unlikely related' to PCC, was observed. In the whole cohort, PCC doses >2,000-3,000 IU, ICH volumes >40 ml, National Institute of Health Stroke Scale values >10 and a pmRS >2 were associated with the development of TEs (p = 0.031, p = 0.034, p = 0.050 and p = 0.036, respectively).CONCLUSIONS:Overall, INR reversal with PCC appears safe. Though no clear relationship between higher PCC dosing and TEs was observed, PCC doses between >2,000 and 3,000 IU and higher morbidity at ICH onset were associated with TEs. Hence, individual titration of PCC to avoid exposure to unnecessarily high doses using point-of-care devices should be prospectively explored.
Study objective: Lumbar punctures are frequently necessary in neurologic emergencies, but effective oral anticoagulation with vitamin K antagonists represents a contraindication. We report the effectiveness of prothrombin complex concentrates to reverse vitamin K antagonist to enable emergency lumbar punctures, as well as evaluate lumbar puncture- and prothrombin complex concentrates-related complications.Methods: Consecutive patients treated with prothrombin complex concentrates between December 2004 and June 2014 to enable emergency lumbar puncture were included. International normalized ratio (INR) before and after prothrombin complex concentrates treatment and the time between start of reversal treatment and lumbar puncture were recorded. A target INR of less than or equal to 1.5 was defined as effective prothrombin complex concentrates treatment. Bleeding events, thromboembolic events, and allergic reactions after prothrombin complex concentrates treatment were identified and classified as "related," "probably," "possibly," "unlikely related," or "not related" to the lumbar puncture and prothrombin complex concentrates infusion.Results: Thirty-seven patients were included (64.9% men; median age 76.0 years; interquartile range [IQR] 71.0 to 84.0 years). The intervention with prothrombin complex concentrates was effective in 33 of 37 patients (89.2%; 95% confidence interval [CI], 78.4% to 97.3%). The median INR was 2.2 (IQR 1.8 to 2.9; 95% CI, 1.9 to 2.5) before and 1.3 (IQR 1.2 to 1.4; 95% CI, 1.2 to 1.3) after prothrombin complex concentrates treatment. The median time between start of prothrombin complex concentrates treatment and lumbar puncture was 135 minutes (IQR 76 to 266 minutes; 95% CI, 84 to 198 minutes). One clinically irrelevant intracranial subdural hematoma "related" to the lumbar puncture developed. No allergic reaction was observed, but 2 of 37 patients (5.4%; 95% CI, 0% to 13.5%) experienced a thromboembolic event (1 ischemic stroke, classified "unlikely related," and 1 myocardial infarction, "possibly related" to prothrombin complex concentrates treatment).Conclusion: Reversing the effect of vitamin K antagonist with prothrombin complex concentrates to enable emergency lumbar puncture appears effective and safe, particularly in regard to bleeding events.
Background: Prothrombin complex concentrates (PCCs) are frequently used to reverse the effect of vitamin K antagonists (VKAs) in patients with non-traumatic intracerebral hemorrhage (ICH). However, information on the rate of thromboembolic events (TEs) and allergic events after PCC therapy in VKA-ICH patients is limited. Methods: Consecutive VKA-ICH patients treated with PCC at our institution between December 2004 and June 2014 were included into this retrospective observational study. We recorded international normalized ratio (INR) values before and after PCC treatment, baseline clinical characteristics including the premorbid modified Rankin Scale (pmRS) score, TE and allergic event that occurred during the hospital stay. All events were classified by 3 reviewers as being ‘related', ‘probably related', ‘possibly related', ‘unlikely related' or ‘not related' to treatment with PCC. To identify factors associated with TEs, log-rank analyses were applied. Results: Two hundred and five patients were included. Median INR was 2.8 (interquartile range (IQR) 2.2-3.8) before and 1.3 (IQR 1.2-1.4) after PCC treatment and a median of 1,500 IU PCC (IQR 1,000-2,500) was administered. Nineteen TEs were observed (9.3%); none were classified ‘related' but 9 were classified as ‘possibly' or ‘probably related' to PCC infusion (4.4%). One allergic reaction (0.5%), ‘unlikely related' to PCC, was observed. In the whole cohort, PCC doses >2,000-3,000 IU, ICH volumes >40 ml, National Institute of Health Stroke Scale values >10 and a pmRS >2 were associated with the development of TEs (p = 0.031, p = 0.034, p = 0.050 and p = 0.036, respectively). Conclusions: Overall, INR reversal with PCC appears safe. Though no clear relationship between higher PCC dosing and TEs was observed, PCC doses between >2,000 and 3,000 IU and higher morbidity at ICH onset were associated with TEs. Hence, individual titration of PCC to avoid exposure to unnecessarily high doses using point-of-care devices should be prospectively explored.
The neuropeptide substance P (SP) and its receptor, the neurokinin receptor-1 (NK-1), have been associated with some aspects of the pathophysiology of depression. There is limited information available about the effects of antidepressant treatment on serum and cerebrospinal fluid (CSF) concentrations of SP. We measured serum levels of SP in 78 depressed patients after a 6-day medication washout period, as well as after 14 and 35 days of antidepressant treatment with either paroxetine or amitriptyline. In 11 patients, SP was determined in CSF both before and after treatment. Eleven healthy male subjects served as controls. Baseline SP concentrations were independent of age, gender and severity of depression. Neither the total group nor subgroups showed significant differences in SP serum concentrations. SP concentrations in CSF did not change significantly in the patients during treatment, but there was a trend for an increase in paroxetine-treated patients. Serum SP concentrations were not related to treatment response or the class of antidepressant administered. Our data do not support the hypothesis that changes in SP levels in serum or CSF are related to antidepressant response.