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Biomedical subjects

K R Lees

Publications and source records attributed to K R Lees.

At least 55 records · Page 3Linked to original sources

Selfotel in acute ischemic stroke : possible neurotoxic effects of an NMDA antagonist.

BACKGROUND AND PURPOSE: Based on neuroprotective efficacy in animal models, we evaluated the N-methyl D-aspartate antagonist Selfotel in patients with ischemic stroke, after doses up to 1.5 mg/kg were shown to be safe in phase 1 and phase 2a studies. METHODS: Two pivotal phase 3 ischemic stroke trials tested the hypothesis, by double-blind, randomized, placebo-controlled parallel design, that a single intravenous 1.5 mg/kg dose of Selfotel, administered within 6 hours of stroke onset, would improve functional outcome at 90 days, defined as the proportion of patients achieving a Barthel Index score of >/=60. The trials were performed in patients aged 40 to 85 years with acute ischemic hemispheric stroke and a motor deficit. RESULTS: The 2 trials were suspended on advice of the independent Data Safety Monitoring Board because of an imbalance in mortality after a total enrollment of 567 patients. The groups were well matched for initial stroke severity and time from stroke onset to therapy. There was no difference in the 90-day mortality rate, with 62 deaths (22%) in the Selfotel group and 49 (17%) in the placebo-treated group (RR=1.3; 95% CI 0.92 to 1.83; P=0.15). However, early mortality was higher in the Selfotel-treated patients (day 30: 54 of 280 versus 37 of 286; P=0.05). In patients with severe stroke, mortality imbalance was significant throughout the trial (P=0.05). CONCLUSIONS: Selfotel was not an effective treatment for acute ischemic stroke. Furthermore, a trend toward increased mortality, particularly within the first 30 days and in patients with severe stroke, suggests that the drug might have a neurotoxic effect in brain ischemia.

Adult↗

Identification of echocardiographic "smoke" in a bench model with transcranial Doppler ultrasound.

BACKGROUND AND PURPOSE: Spontaneous echo contrast in cardiac chamber has been indicated as a source of cerebral embolism. The nature of the echocardiographic smokelike signal is still not fully understood. This study was designed to regenerate spontaneous echo contrast and verify its thromboembolic characters in an in vitro model. METHODS: Spontaneous echo contrast was reproduced in an expansion chamber under low flow conditions in a close circulation system. The spontaneous echo contrast was monitored and recorded with a 2-dimensional cardiosonography system and a transcranial Doppler device. Meanwhile, clinically commonly encountered embolic materials such as whole-blood clots, platelet aggregate-rich plasma, air bubbles, and 100-mL normal saline were injected into this monitored circuit. The differentiation of spontaneous echo contrast from emboli was performed by both visual observations of the echo images and offline Doppler signal intensity analysis. Average signal intensities produced by spontaneous contrast and injection of embolic materials and saline were compared. Furthermore, the effect of Doppler-detected flow velocity on generation of spontaneous contrast was also evaluated. RESULTS: Spontaneous echo contrast was reproduced at low flow settings (90 to 120 mL/min) in this model. There was no significant difference in average signal intensity between the flow with spontaneous echo contrast and that without the echo (P=0.71). However, injection of embolic materials or normal saline did not generate smokelike image but caused much higher average signal intensity than the flow with spontaneous contrast (P<0.001). Injection of normal saline also increased average signal intensity. CONCLUSIONS: Our results suggest that smokelike echo is a special echo phenomenon occurring at low flow situations and does not itself produce material capable of embolizing into the systemic circulation.

Blood Flow Velocity↗

Streptokinase in acute ischemic stroke: an individual patient data meta-analysis : The Thrombolysis in Acute Stroke Pooling Project.

BACKGROUND AND PURPOSE: Three major randomized controlled trials of streptokinase in acute ischemic stroke were curtailed because of safety concerns. The prospective Thrombolysis in Acute Stroke Pooling Project (TAS-PP) was established to examine the aggregate data to identify factors influencing the effect of streptokinase. METHODS: Individual patient data from the Australian Streptokinase Trial (ASK), Multicentre Acute Stroke Trial-Europe (MAST-E), Multicentre Acute Stroke Trial-Italy (MAST-I), and Glasgow Trial (Glasgow) were pooled. Multivariate modeling determined the interaction between treatment effect and delay from symptom onset to treatment, predicted baseline risk, age, concomitant aspirin or heparin use, and the presence of early CT signs on the outcomes of 10-day death, death and disability, or death alone at 3 or 6 months. RESULTS: Patients' records were pooled (total 1292 patients; streptokinase, n=653, no streptokinase n=639). The subgroup analysis of treatment effect according to delay from symptoms to inclusion shows only a trend toward a better treatment effect with shorter delay, which is not statistically significant for any outcome. Heavier patients in MAST-E may have had a lower (non significant) risk from the fixed dose of 1.5 million units of streptokinase. Concomitant aspirin increased the excess mortality rates in streptokinase-treated patients (17% without aspirin versus 91% with aspirin, P=0.005). The presence of early CT scan signs did not increase the detrimental effect of streptokinase. CONCLUSIONS: Few factors influenced the response to streptokinase. However, earlier administration, lower doses of streptokinase, and avoidance of concomitant aspirin should be considered if further streptokinase trials in acute stroke are planned.

Acute Disease↗

Thrombolysis.

The most widely studied thrombolytic drugs in stroke have been streptokinase (SK) and alteplase. The three large trials with streptokinase were terminated prematurely. The combined results reveal an early increased risk of cerebral haemorrhage and death, with no net benefit at final follow-up, even in subgroups. Some controversy persists, however. The dose may have been inappropriately high, very early treatment has not been fully tested, and concomitant use of aspirin or heparin may have contributed to the deleterious effect. Even so, there is no evidence to guide the choice of a lower dose, streptokinase predisposes to a prolonged anticoagulant effect, and is associated with hypotension which may offset any benefit. The four large alteplase trials in acute stroke were more encouraging. The NINDS study was clearly positive and supporting evidence comes from the two ECASS trials when subjected to meta-analysis. The trials have shown additional functional recovery in 0.6% of patients receiving SK within 6 h and in 7.6% with alteplase, at the expense of excess mortality of 1.1% for alteplase and 11.7% for SK. There was an absolute cerebral haemorrhage excess of 10.7% with SK and 8% for alteplase. If alteplase use is restricted to < 3 h from stroke onset, the NNT is 10.7 with no excess mortality; later treatment (3-6 h) gives an NNT of 26 and absolute mortality of 3.4%. Finally, early fibrinogen depletion with ancrod also appears to have beneficial effects when treatment is started within 3 h of stroke onset. Further trials are still required to establish, inter alia, the outer limit of the therapeutic window, to identify sub-groups of patients in whom clear benefit (or harm) exists and to establish appropriate management protocols for concomitant treatment. Thrombolysis with alteplase within 3 h of stroke onset may be considered for patients in whom haemorrhage and established infarction have been excluded. Trained assessment is essential, since there is an increased risk of haemorrhagic conversion that may be fatal. Patients considering thrombolytic treatment should appreciate that 1 in 10 patients have improved outcome, 1 in 20 suffer haemorrhagic conversion and 1 in 100 may die as a result of treatment. Treatment much later than 3 h from stroke onset in unselected patients is as likely to kill as to cure.

Clinical Trials as Topic↗

Neuroprotection.

Thrombolysis improves stroke outcome, but is applicable to a limited number of patients. Neuroprotection has the prospect to be universally offered, either alone or in combination with thrombolysis. Potential drug targets include elements of the excitotoxic glutamate cascade, calcium entry, intracellular protease activation, free radical damage, the inflammatory response and membrane repair. Clinical trials with many agents have so far been disappointing, but hindsight reveals flaws in the choice of compound, the dose that was administered or trial design. A further crop of trials has recently been initiated or completed, with results expected from 2000 to 2003. More selective, potent or better tolerated neuroprotective strategies are still being developed for clinical use, and approaches to trial conduct are advancing: increased use of computer randomisation algorithms or diffusion-weighted magnetic resonance imaging should improve trial power. The prospects for a safe and effective treatment to improve stroke outcome remain good.

Clinical Trials as Topic↗

Safety and tolerability study of aptiganel hydrochloride in patients with an acute ischemic stroke.

BACKGROUND AND PURPOSE: Aptiganel (CNS 1102) is a selective, noncompetitive antagonist that acts on the ion channel associated with the N-methyl-D-aspartate (NMDA) receptor and is neuroprotective in experimental focal cerebral ischemia models at a plasma concentration of 10 ng/mL. In human volunteers, dose-limiting effects of aptiganel are blood pressure increases and central nervous system (CNS) excitation or depression. This study assessed the safety and tolerability of non-weight-adjusted doses of aptiganel in patients with acute ischemic stroke. METHODS: This was a double-blind, randomized, placebo-controlled multicenter study in patients presenting within 24 hours of acute ischemic stroke. Ascending single intravenous bolus doses of aptiganel (3, 4.5, 6, and 7.5 mg) were assessed in 21 patients with a 3:1 active drug:placebo randomization schedule. In 15 subsequent patients, selected bolus doses were followed by constant intravenous infusion for 6 to 12 hours (6 mg plus 1 mg/h, n=10; then 4.5 mg plus 0.75 mg/h, n=15) in a 4:1 randomization schedule. Prospectively collected pharmacokinetic data guided selection of infusion rates. Neurological and functional status were recorded at entry and after 1 week, although the study was not designed to test efficacy. RESULTS: Forty-six patients were randomized from 4 centers (3 in the United States and 1 in the United Kingdom): 36 received aptiganel HCl, and 10 were given placebo. Hypertension and CNS events were commonly reported after a bolus dose of 7.5 mg and after a 6-mg bolus followed by an infusion of 1 mg/h. The lower regimen of 4.5-mg bolus followed by infusion of 0.75 mg/h achieved plasma aptiganel concentrations of >10 ng/mL and was well tolerated by patients but still raised systolic blood pressure by approximately 30 mm Hg over baseline. CONCLUSIONS: A 4.5-mg intravenous bolus of aptiganel HCl followed by infusion of 0.75 mg/h for 12 hours is a tolerable dose that can produce plasma drug concentrations shown to be neuroprotective in animal models. However, increases in systolic blood pressure and an excess of CNS effects were both observed at this dose.

Adult↗

Prevention of shoulder subluxation after stroke with electrical stimulation.

BACKGROUND AND PURPOSE: Subluxation is a significant problem in poststroke hemiplegia, resulting in pain and loss of function. Current treatments are not proved and not considered effective. It has been demonstrated that cyclical electrical stimulation of the shoulder muscles can reduce existing subluxation. The purpose of this study was to determine whether electrical stimulation could prevent subluxation in both the short and long terms. METHODS: A prospective, randomized controlled study was used to determine the efficacy of electrical stimulation in preventing shoulder subluxation in patients after cerebrovascular accidents. Forty patients were selected and randomly assigned to a control or treatment group. They had their first assessment within 48 hours of their stroke, and those in the treatment group were immediately put on a regimen of electrical stimulation for 4 weeks. All patients were assessed at 4 weeks after stroke and then again at 12 weeks after stroke. Assessments were made of shoulder subluxation, pain, and motor control. RESULTS: The treatment group had significantly less subluxation and pain after the treatment period, but at the end of the follow-up period there were no significant differences between the 2 groups. CONCLUSIONS: Electrical stimulation can prevent shoulder subluxation, but this effect was not maintained after the withdrawal of treatment.

Aged↗

C-reactive protein and outcome after ischemic stroke.

BACKGROUND AND PURPOSE: Elevated concentrations of the acute-phase reactant C-reactive protein (CRP) predict ischemic cardiac events in both hospital- and population-based studies and may signify a role for inflammation in the destabilization of cardiovascular disease. We examined the relationship between CRP and outcome after acute ischemic stroke. METHODS: This was a subgroup analysis from a prospective observational study based in a University Hospital Acute Stroke Unit serving a population of approximately 260 000. Survival time and cause of death for up to 4 years after the index stroke were determined and related to CRP concentration within 72 hours of stroke and known prognostic variables by a Cox proportional hazards regression model. RESULTS: Ischemic stroke was diagnosed in 228 of 283 consecutive admissions. Median follow-up was 959 days. Geometric mean CRP concentration was 10.1 mg/L. Survival in those with CRP >10.1 mg/L was significantly worse than in those with CRP </=10.1 mg/L (P=0.00009, log-rank test). Higher CRP concentration was an independent predictor of mortality (hazard ratio, 1.23 per additional natural log unit; 95% CI, 1.13 to 1.35; P=0.02), together with age and stroke severity on the National Institutes of Health Stroke Scale. Cardiovascular disease accounted for 76% of deaths in those with CRP >10.1 mg/L and 63% of deaths in those with CRP </=10. 1 mg/L. CONCLUSIONS: CRP concentration is an independent predictor of survival after ischemic stroke. These findings are consistent with a role for inflammation in acute ischemic stroke, as well as with the hypothesis that elevated CRP may predict future cardiovascular mortality.

Acute-Phase Reaction↗

Safety and tolerability of GV150526 (a glycine site antagonist at the N-methyl-D-aspartate receptor) in patients with acute stroke.

BACKGROUND AND PURPOSE: GV150526 is a novel glycine site antagonist at the N-methyl-D-aspartate receptor complex. It is a potent neuroprotective agent in animal models of stroke, including permanent middle cerebral artery occlusion in the rat. Unlike antagonists at the glutamate ligand binding site, GV150526 appears to be free of hemodynamic and central nervous system adverse effects. The purpose of this study was to assess the safety, tolerability, and pharmacokinetics of loading and maintenance infusions of GV150526 in patients with acute stroke. METHODS: This was a randomized, placebo-controlled, parallel-group, ascending-dose study conducted in 2 phases. In part A of the study, loading doses of 50, 100, 200, 400, or 800 mg were administered. In part B, the maximum loading dose from part A was followed by maintenance infusions (5 infusions at 12-hour intervals), aiming to maintain neuroprotective levels. Safety data were collected throughout. The study was not designed to test efficacy, but outcome data (Barthel Index and National Institutes of Health Stroke Scale) were collected. RESULTS: Sixty-six patients were recruited to the study over 11 months; 18 patients received placebo. GV150526 was well tolerated by the 48 patients who received it. There was no excess of central nervous system or hemodynamic adverse events compared with placebo. Minor abnormalities in liver function tests were observed in association with the higher maintenance doses tested. Four of 7 patients receiving the 800-mg loading dose followed by 400 mg BID and 1 of 6 patients who received the 200-mg BID maintenance dose showed a small rise in bilirubin, and 3 patients had increases in transaminases; the mean values at 72 hours remained under twice the upper limit of normal. These changes were asymptomatic and resolved within 10 days. CONCLUSIONS: GV150526 is an emerging neuroprotective agent, with no apparent significant central nervous system or hemodynamic effects. Dose-limiting effects appear to be restricted to mild transient and asymptomatic rises in bilirubin and/or transaminases, primarily observed at high maintenance doses, and there were no findings that should preclude further clinical development.

Acute Disease↗

Hemorrhagic transformation in acute ischemic stroke. The MAST-E study. MAST-E Group.

BACKGROUND AND PURPOSE: Hemorrhagic transformation (HT) is the most critical complication of thrombolytics in clinical trials in acute stroke. The aim of this study was to determine the rates and the predictors of HT in the Multicenter Acute Stroke Trial-Europe (MAST-E) study. METHODS: We performed a post hoc analysis of MAST-E data designed to assess the safety and efficacy of streptokinase administered intravenously within 6 hours of stroke onset. HT included all intracerebral hemorrhages and symptomatic hemorrhages (SHT) associated with clinical worsening. The predictors of HT and SHT were determined using multivariate modeling. RESULTS: Among the 310 patients included, 159 patients had HT and 37 SHT (97 and 33 in the streptokinase group and 62 and 4 in the placebo group, respectively). Patients with SHT had significantly more atrial fibrillation, diabetes mellitus, no heparin use, streptokinase treatment, and early CT signs. In the multivariate analysis, HT was predicted by early CT signs and streptokinase treatment. SHT was predicted by diabetes mellitus, early CT signs, streptokinase treatment, and the interaction between streptokinase treatment and decreased level of consciousness. Among the streptokinase-treated patients, the same predictors remained. CONCLUSIONS: The relative risks of HT after streptokinase were in the same range in MAST-E as in other streptokinase and tPA trials. Early CT signs were strong predictors of both HT and SHT, stressing that these patients are at high risk of bleeding. In our study, the predictors of HT and SHT were similar to those of tPA trials in acute stroke.

Acute Disease↗

Remacemide hydrochloride: a double-blind, placebo-controlled, safety and tolerability study in patients with acute ischemic stroke.

BACKGROUND AND PURPOSE: Remacemide hydrochloride and its principal active desglycinyl metabolite are low-affinity noncompetitive N-methyl-D-aspartate (NMDA)-receptor channel blockers. Remacemide hydrochloride has demonstrated neuroprotection in animal models of hypoxia and ischemic stroke. This study assessed the safety, tolerability, and pharmacokinetics of ascending doses of remacemide hydrochloride in patients with recent onset (within 12 hours) ischemic stroke. METHODS: This was a placebo-controlled, dose escalating, parallel group study. Groups of 8 patients (6 active, 2 placebo) were planned to receive twice-daily treatment, with l00 mg, 200 mg, 300 mg, 400 mg, 500 mg, or 600 mg remacemide hydrochloride given as 2 intravenous infusions followed by 6 days' oral treatment. Patients who were unable to swallow discontinued study medication but continued to be monitored for safety; these patients were replaced. A CT or MRI scan was performed within 48 hours of admission to establish the cause of focal neurological deficit. Patients with ischemic stroke continued in the study. Patients with other causes of focal neurological deficit were withdrawn and replaced. Because the frequency of dysphagia after stroke in the first dose group (100 mg BID) was higher than had been anticipated, the protocol was amended so that subsequent dose groups received 6 intravenous infusions (2 doses per day for 3 days). Neurological and functional outcome data were collected, but the study was not powered to demonstrate drug efficacy. Patient safety was assessed by clinical observation, laboratory tests, and ECGs, while tolerability was assessed by recording adverse events. Blood sampling was included to determine plasma concentrations of remacemide and the desglycinyl metabolite at fixed points during the dosing period. RESULTS: The most common adverse events considered by the investigator to be possibly treatment related were related to the central nervous system (CNS), and these events appeared to increase with dose. Four patients were withdrawn from the study because of CNS-related events: 1 in the placebo group, 1 in the 500 mg BID group, and 2 in the 600 mg BID group. Infusion site reactions and gastrointestinal upset were also reported and considered to be treatment related. One patient in the placebo group and 4 patients in the 600 mg BID dose group experienced vomiting, whereas this event was not reported by patients in the other dose groups. CONCLUSIONS: On the evidence of this study, the maximum well-tolerated dose for remacemide hydrochloride in acute stroke is 400 mg BID. Doses of 200 mg BID or higher attained the putative neuroprotective plasma concentrations of remacemide predicted from animal models (250 to 600 ng/mL). The expected gradual accumulation of active metabolite might suggest that optimal neuroprotective concentrations are unlikely to be achieved within the early hours of treatment at this dose. However, plasma concentrations do not directly reflect brain concentrations, because studies in rats show that remacemide and the desglycinyl metabolite rapidly reach comparable brain concentrations within 1 hour, despite a lower plasma concentration of the metabolite.

Acetamides↗

Determinants of the blood pressure response to the first dose of ACE inhibitor in mild to moderate congestive heart failure.

AIMS: To investigate the relationship in patients with heart failure between BP response to the first dose of ACE inhibitor and (1) plasma drug concentration and (2) baseline clinical and laboratory variables. METHODS: We studied individual placebo-corrected BP responses to initiation of treatment with one of a number ACE inhibitor preparations in 132 patients with mild to moderate CHF. Various pharmacokinetic/pharmacodynamic models were compared. We assessed the strength of association between baseline physiological and laboratory variables and the BP response as assessed directly from the AUC(0,10 h) and indirectly from the slope of the PK/PD relationship. Predictive models for response variables were developing using regression analysis. RESULTS: BP response was primarily related to plasma drug concentration. The association between the fall in BP and baseline variables was weak. The strongest single predictor of BP response was baseline mean arterial pressure (r2 = 5.8%, P = 0.02). The best combinations of predictor variables contained mean arterial pressure, plasma renin activity, creatinine concentration and age (r2 = 14.4%, P = 0.37). When the choice of ACE inhibitor was added, the predictive power of the model increased (r = 23.6%, P < 0.01) but left the majority of the variability in response unexplained. CONCLUSIONS: The first-dose blood pressure response to ACE inhibition cannot be accurately predicted from baseline pathophysiological variables in patients with mild to moderate CHF. The choice of ACE inhibitor accounts for a small proportion of the variability in response but wide inter-individual variability exists in the response to each treatment.

Aged↗

Duration of neuroprotective treatment for ischemic stroke.

BACKGROUND: The therapeutic time window for thrombolysis appears to be extremely short, probably because of the hemorrhagic complications associated with late reperfusion of ischemic brain tissue. Other neuroprotective forms of treatment continue to be developed, although their efficacy has yet to be conclusively proved in patients. The duration of treatment in recent phase 3 trials ranges from a single bolus injection to 12 weeks of oral therapy. SUMMARY OF REVIEW: In this article we discuss the factors that should influence the choice of route and duration of treatment. Excitotoxic injury following stroke evolves over at least 4 hours in rodents and possibly beyond 48 hours in humans. In addition, autoregulation and local cerebral perfusion are deranged for approximately 72 hours in patients with stroke. Neuroprotection should provide cover during this critical time. CONCLUSIONS: Important considerations influencing drug administration should include the pharmacology of the compound (pharmacokinetics, mechanism of action, preclinical toxicity, and pharmaceutical properties), its safety and tolerability in patients, and the likelihood of continuing or recurrent cerebral ischemia, along with practical issues such as ease of administration and interactions with early rehabilitation and other therapies. Optimization of treatment will be possible only when neuroprotection is confirmed to be effective.

Animals↗

Susceptibility to cerebral infarction in the stroke-prone spontaneously hypertensive rat is inherited as a dominant trait.

BACKGROUND AND PURPOSE: Susceptibility to cerebral infarction was compared in stroke-prone spontaneously hypertensive (SHRSP), normotensive Wistar-Kyoto (WKY) rats, and F1 hybrids derived from a SHRSP/WKY cross. METHODS: The proximal left middle cerebral artery (MCA) was occluded under anesthesia and infarct volume assessed 24 hours later by magnetic resonance imaging and confirmed 5 days later by quantitative histopathology. Total hemispheric infarct volume was expressed as a percentage of the total brain volume. RESULTS: Infarct volumes measured by MRI in adult SHRSP (19.5 +/- 2.0%) and F1 hybrid rats (19.4 +/- 1.9%) were significantly greater than in WKY (11.1 +/- 2.4; CI [6.07, 10.76]) and (5.93, 10.52), respectively, P<.001). Sensitivity to an ischemic insult was unrelated to blood pressure: although systolic blood pressures differed between young versus adult male SHRSP and between female versus male SHRSP and F1 hybrids, infarct volumes were equal. A close correlation was found between infarct volumes measured by MRI and histology (r=.92, P<.0001). CONCLUSIONS: Outcome to MCA occlusion (MCAO) measured with MRI provides a reproducible and nonterminal quantitative phenotypic marker of stroke susceptibility in the SHRSP. This is the first study to employ MCAO with MRI to quantify stroke susceptibility in F1 hybrid rats and indicates a dominant mode of inheritance for this phenotype.

Animals↗