Administration of nitric oxide synthase inhibitors does not alter disease course of amyotrophic lateral sclerosis SOD1 mutant transgenic mice.
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Biomedical subjects
Publications and source records attributed to M E Cudkowicz.
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We conducted a 6-week open-label trial of riluzole (50 mg twice a day) in eight subjects with Huntington's disease. Subjects were evaluated before riluzole treatment, on treatment, and off treatment with the chorea, dystonia, and total functional capacity (TFC) scores from the Unified Huntington's Disease Rating Scale and magnetic resonance spectroscopy measurements of occipital cortex and basal ganglia lactate levels. Adverse events and safety blood and urine tests were assessed throughout the study. All subjects completed the study and riluzole was well tolerated. The age was 45+/-10.2 years (mean +/- standard deviation) and the disease duration was 6.1+/-4.1 years. The chorea rating score improved by 35% on treatment (p = 0.013) and worsened after discontinuation of treatment (p = 0.026). There were no significant treatment effects on the dystonia or TFC scores. The baseline occipital and basal ganglia lactate levels were elevated in all subjects; there was a trend toward lower lactate/creatine ratios during riluzole treatment in the basal ganglia spectra but not in occipital cortex spectra. Additional clinical studies of riluzole for both symptomatic and neuroprotective benefit in Huntington's disease are warranted.
OBJECTIVE: To quantify F2-isoprostane levels in CSF obtained from the lumbar cistern of patients with AD, ALS, and controls. BACKGROUND: Studies of human postmortem tissue and experimental models have suggested a role for oxidative damage in the pathogenesis of several neurodegenerative diseases, especially AD and ALS. F2-isoprostanes are exclusive products of free-radical-mediated peroxidation of arachidonic acid that have been widely used as quantitative biomarkers of lipid peroxidation in vivo in humans. Recently, we showed that F2-isoprostane concentrations are significantly elevated in CSF obtained postmortem from the lateral ventricles of patients with definite AD compared with controls. METHODS: F2-isoprostanes were quantified by gas chromatography/negative ion chemical ionization mass spectrometry. RESULTS: CSF F2-isoprostanes were increased significantly in patients with probable AD, but not in ALS patients, compared with controls. CONCLUSIONS: Increased CSF F2-isoprostanes are not an inevitable consequence of neurodegeneration and suggest that increased brain oxidative damage may occur early in the course of AD.
We examined 11 subjects with inherited amyotrophic lateral sclerosis (familial amyotrophic lateral sclerosis, FALS) associated with the most common copper/zinc superoxide dismutase 1 (SOD1) mutation, an alanine for valine substitution in codon 4 (A4V). Autopsies were performed on 5 subjects. The clinical and pathological findings are described and compared with those of 9 sporadic ALS (SALS) subjects. There was no clinical evidence of upper motor neuron (UMN) involvement in 10 FALS A4V subjects. All subjects had lower motor neuron (LMN) signs and electrophysiological evidence of denervation in at least three limbs. All SALS subjects had signs of both UMN and LMN involvement. Pathological studies found severe abnormalities of LMNs in all FALS and SALS subjects. UMN involvement was either absent or mild in the A4V SOD1 FALS subjects and severe in the SALS subjects. Pathological abnormalities in systems other than the motor neurons were more frequent in the FALS A4V subjects. This information suggests that current diagnostic criteria for ALS, requiring dinical evidence for both upper and lower motor neuron involvement, should be modified; ie, the diagnosis should be deemed established when there is evidence of denervation in three or more limbs and a mutation in the gene for SOD1, even without dinical signs of UMN involvement.
The basal ganglia are thought to play an important role in regulating motor programs involved in gait and in the fluidity and sequencing of movement. We postulated that the ability to maintain a steady gait, with low stride-to-stride variability of gait cycle timing and its subphases, would be diminished with both Parkinson's disease (PD) and Huntington's disease (HD). To test this hypothesis, we obtained quantitative measures of stride-to-stride variability of gait cycle timing in subjects with PD (n = 15), HD (n = 20), and disease-free controls (n = 16). All measures of gait variability were significantly increased in PD and HD. In subjects with PD and HD, gait variability measures were two and three times that observed in control subjects, respectively. The degree of gait variability correlated with disease severity. In contrast, gait speed was significantly lower in PD, but not in HD, and average gait cycle duration and the time spent in many subphases of the gait cycle were similar in control subjects, HD subjects, and PD subjects. These findings are consistent with a differential control of gait variability, speed, and average gait cycle timing that may have implications for understanding the role of the basal ganglia in locomotor control and for quantitatively assessing gait in clinical settings.
We registered 366 families in a study of dominantly inherited amyotrophic lateral sclerosis. Two hundred ninety families were screened for mutations in the gene encoding copper-zinc cytosolic superoxide dismutase (SOD1). Mutations were detected in 68 families. The most common SOD1 mutation is an alanine for valine substitution in codon 4 (50%). We present clinical and genetic data concerning 112 families with 395 affected individuals. The clinical characteristics of patients with familial amyotrophic lateral sclerosis arising from SOD1 mutations are similar to those lacking SOD1 defects. Mean age at onset was earlier (Wilcoxon test, p = 0.004) in the SOD1 group (46.9 years [standard deviation, 12.5] vs 50.5 years [11.5] in the non-SOD1 group). Bulbar onset was associated with a later onset age. The presence of either of two mutations, G37R and L38V, predicted an earlier age at onset. Kaplan-Meier plots demonstrated shorter survival in the SOD1 group compared with the non-SOD1 group at early survival times (Wilcoxon test, p = 0.0007). The presence of one mutation, A4V, correlated with shorter survival. G37R, G41D, and G93C mutations predicted longer survival. This information suggests it will be productive to investigate other genetic determinants in amyotrophic lateral sclerosis and to use epidemiological characteristics of the disease to help discern molecular mechanisms of motor neuron cell death.
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Fluctuations in the duration of the gait cycle (the stride interval) display fractal dynamics and long-range correlations in healthy young adults. We hypothesized that these stride-interval correlations would be altered by changes in neurological function associated with aging and certain disease states. To test this hypothesis, we compared the stride-interval time series of 1) healthy elderly subjects and young controls and of 2) subjects with Huntington's disease and healthy controls. Using detrended fluctuation analysis we computed alpha, a measure of the degree to which one stride interval is correlated with previous and subsequent intervals over different time scales. The scaling exponent alpha was significantly lower in elderly subjects compared with young subjects (elderly: 0.68 +/- 0.14; young: 0.87 +/- 0.15; P < 0.003). The scaling exponent alpha was also smaller in the subjects with Huntington's disease compared with disease-free controls (Huntington's disease: 0.60 +/- 0.24; controls: 0.88 +/-0.17; P < 0.005). Moreover, alpha was linearly related to degree of functional impairment in subjects with Huntington's disease (r = 0.78, P < 0.0005). These findings demonstrate that strike-interval fluctuations are more random (i.e., less correlated) in elderly subjects and in subjects with Huntington's disease. Abnormal alterations in the fractal properties of gait dynamics are apparently associated with changes in central nervous system control.
We undertook a safety and pharmacokinetic study of intrathecal (i.t.) recombinant human superoxide dismutase (rhSOD1). We administered rhSOD1 as an acute bolus in three sheep and 16 human subjects with amyotrophic lateral sclerosis (ALS). Two sheep received chronic i.t. infusion of rhSOD1 (one at 17.7 mg per day, the second at 38.0 mg per day) for six months. Two of the 16 subjects had familial ALS and mutations in the gene for Cu/Zn SOD1. They both received i.t. infusion of rhSOD1 (5 to 10 mg per day) for 3 to 6 months. Intrathecal rhSOD1 administration was safe. Bolus i.t. administration of 0.25 mg rhSOD1 in sheep revealed a mean elimination half-life of 0.4 (SD +/- 0.06) hours, clearance of 12.2 +/- 3.2 ml per hour, and volume of distribution of 7.3 +/- 0.9 ml. After chronic i.t. infusion, the initial alpha-phase half-life was estimated as 1.2 hours and the extended beta-phase half-life was 15.0 hours. The mean clearance rate was 25.9 ml per hour and the steady-state volume of distribution was 920.6 ml. Bolus i.t. administration of 20 micrograms of rhSOD1 in ALS subjects revealed a mean elimination half-life of 2.2 +/- 0.8 hours, clearance of 1.2 +/- 0.6 ml per hour, and volume of distribution of 3.5 +/- 0.4 ml. With chronic i.t. infusion of 5 mg per day, cerebrospinal SOD1 levels increased approximately fortyfold. We detected no benefit of this treatment in the two patients with familial ALS.
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Early recognition of trimethoprim and sulfonamide-induced aseptic meningitis is important because drug cessation leads to rapid clinical improvement. We present clinical and laboratory findings in two typical cases. In both cases, MRI revealed previously undescribed diffuse white matter abnormalities that resolved within a few months. These MRI findings are important because they may aid in early diagnosis of this condition in the appropriate clinical setting. In addition, the white matter abnormalities suggest an encephalitic component in addition to the meningitis.
Cocaine use is associated with a variety of serious neurological complications, including cerebral infarction, intracerebral and subarachnoid hemorrhage, transient ischemic attacks, migraines, and seizures. We report two cases of intracerebral hemorrhage with biopsy-proven cerebral vasculitis associated with the use of cocaine. The first case involved a 32-year-old man who presented with headache, left-sided hemiparesis, and severe hypertension and who was found to have a large right putaminal hemorrhage on cranial tomographic (CT) scan. Cerebral angiography did not show vasculitic changes, but brain tissue obtained during hematoma evacuation revealed a nonnecrotizing leukocytoclastic angiitis of the small vessels. The second case involved a 20-year-old man who presented with headache, agitation, and speech difficulty that progressed to disorientation and dysphasia. He had a large left temporoparietal hematoma seen on CT scan. Cerebral angiography was consistent with vasculitis, and brain tissue obtained during hematoma evacuation revealed a small vessel vasculitis. In both cases, thorough clinical and laboratory investigations found no evidence of systemic vasculitis or an etiologic agent other than cocaine. We also critically reviewed the previously reported cases of cocaine-associated cerebral vasculitis and the relevant medical literature to discuss the "cocaine-associated vasculitis syndrome" in the context of more established vasculitidies, including hypersensitivity vasculitis. In addition, we outline a diagnostic and therapeutic approach to patients with possible cocaine-associated vasculitis.
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