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Biomedical subjects
Publications and source records attributed to D B Calne.
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Although cognitive impairment is commonly associated with Parkinson's disease, the relative importance of cortical and subcortical pathologic changes to the development of dementia is controversial. Characteristic abnormalities in cortical glucose metabolism have been reported previously in Alzheimer's disease, a disease in which cortical changes predominate. We measured cerebral glucose metabolism with positron emission tomography in 20 control subjects and in 14 patients with PD with mental status ranging from normal to severely demented to determine whether changes in cortical glucose metabolism occur in early PD and whether the degree and pattern of metabolic change relate to the severity of dementia. The patients were divided into demented and nondemented groups according to the results of neuropsychological assessment. Age-adjusted covariance analyses were performed, since the age distribution varied between groups. The nondemented patients with PD showed widespread cortical glucose hypometabolism without any selective temporoparietal defects. The pattern of glucose hypometabolism seen in the demented patients with PD resembled that described in patients with Alzheimer's disease; ie, there was a global decrease in glucose metabolism, with more severe abnormalities observed in the temporoparietal regions.
We report the genetic, clinical, electrophysiological, and imaging studies in a family with bilateral striopallidodentate calcinosis (Fahr's disease). The intracerebral calcium deposits occurred before onset of the symptoms in the third decade of life. Progressive neurological deterioration occurred in the fifth decade of life in the proband. Cerebrospinal fluid homocarnosine, a central nervous system-specific peptide, was increased twofold in patients with autosomal dominant bilateral stripallidodentate calcinosis; in sporadic cases, there was no detectable homocarnosine and a decreased level of histidine. With advancing age, the amount of calcification increases, but it has not been determined if a critical amount must be reached before symptoms occur. Computerized tomography is superior to magnetic resonance imaging for radiological diagnosis. Despite diffuse striatal calcification, striatal 6-[18F]fluoro-L-dopa uptake did not reveal any difference between patients and control subjects, from which we infer persisting integrity of the nigrostriatal dopaminergic pathway.
We describe a family with nearly 300 members over 8 generations with 32 affected individuals who have an autosomal dominant neurodegenerative disease characterized by progressive parkinsonism with dystonia unrelated to medications, dementia, ocular motility abnormalities, pyramidal tract dysfunction, frontal lobe release signs, perseverative vocalizations, and urinary incontinence. The course is exceptionally aggressive; symptom onset and death consistently occur in the fifth decade. Positron emission tomographic studies with [18F]6-fluoro-L-dopa (6FD) were performed in 4 patients and 7 individuals at risk for development of the disease. All affected subjects had markedly reduced striatal uptake of 6FD (p less than 0.001). All individuals at risk had normal striatal uptake, but high 6FD uptake rate constants were noted in 3 of the 7 studied. Autopsy findings revealed severe neuronal loss with gliosis in substantia nigra, pontine tegmentum, and globus pallidus, with less involvement of the caudate and the putamen. There were no plaques, tangles, Lewy bodies, or amyloid bodies. This kindred appears to represent a neurodegenerative disease not heretofore described. We propose the following name for this new genetic disease: autosomal dominant parkinsonism and dementia with pallido-ponto-nigral degeneration.
Dopa-responsive dystonia (DRD) is one form of childhood-onset idiopathic torsion dystonia. Adult-onset parkinsonism has appeared in several previously unaffected members in families with DRD suggesting that this may be an additional phenotypical expression of the disease. We report a family with DRD in which 2 women and 1 man, unaffected by dystonia, developed tremor-onset parkinsonism after age 50 years. The women continue on a low dosage of levodopa after 9 and 13 years of treatment, with a stable, nearly complete, symptomatic response. This contrasts to the typical long-term treatment complications observed in patients with Parkinson's disease. We assessed nigrostriatal dopaminergic function in the proband, with typical DRD, and the 2 women with parkinsonism using 6-[18F]fluoro-L-dopa positron emission tomography. All 3 had normal striatal 6-[18F]fluoro-L-dopa uptake. These observations provide compelling evidence that "benign" adult-onset parkinsonism may be an expression of the disease in some members of families with DRD and does not support consideration of the DRD gene as a risk factor for development of Parkinson's disease. There may be considerable clinical heterogeneity in DRD depending on the age at onset.
We undertook an analysis of the hazard functions derived from results published by the Parkinson Study Group following their investigation of deprenyl. Our findings indicate that the action of deprenyl is transient rather than sustained. We also infer that this effect may be mediated through alleviation of symptoms rather than by neuroprotection.
The free radical hypothesis for the pathogenesis of idiopathic parkinsonism (Parkinson's disease) has many similarities to the argument invoking an autoimmune mechanism. In both cases, cellular and molecular machinery that might be involved in neuronal destruction have been demonstrated. In recent years, the free radical hypothesis has become particularly fashionable; several workers have reported observations which, they infer, support the notion that damage by free radicals is a major factor in the underlying disease process. There is, however, no conclusive evidence that free radicals play a prominent role in the causal chain of events that leads to idiopathic parkinsonism; several findings may be construed as evidence against such a contention.
Parkinson's disease evolves slowly, and there is current interest in exploring the earliest stages of the disorder, because of new approaches to studying pathogenesis and developing potential neuroprotective treatment. Recognizing early Parkinson's disease is not easy. The certainty of diagnosis increases as the disease advances. To address the problem of identifying Parkinson's disease in its initial phases of clinical expression, we propose the following designated levels of confidence for the diagnosis: (1) clinically possible, (2) clinically probable, and (3) clinically definite. Laboratory support for the diagnosis may be applied to each category. Criteria are provided as a framework underpinning this classification.
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PET examinations using L-18F-DOPA were performed on 14 patients with Parkinsonism-plus syndromes (PPLUS). A rate constant Ki was calculated by a graphical method using an arterial input function. Sequential PET images were obtained and no specific activity was measured both in cortical and cerebellar background regions. These results were compared with those in 20 normal controls and tested for intra- and interobserver variability. All patients with PPLUS showed reduced Ki values with a mean of 0.154 (ml/striatum/min), whereas controls exhibited Ki values with a mean of 0.690 (ml/striatum/min) using cortical background regions. The correlation coefficient was calculated to be r = 0.973 for the intraobserver variability and r = 0.879 for the interobserver variability in controls, and r = 0.989 or = 0.973 in PPLUS, resp. There was no significant difference in the Ki values for cortical and cerebellar background regions (p = 0.1). PET examinations using L-18F-DOPA can reliably assess the extent of nigrostriatal degeneration in vivo. Since this radiotracer binds irreversibly within the striatum PET examinations allow the quantification of a disturbed dopaminergic function which is observer-independent.
Positron emission tomography with 6-[18F]fluoro-L-dopa (6-FD) provides in vivo information on the function of nigrostriatal dopaminergic neurons. We used 6-FD and positron emission tomography to investigate the integrity of the nigrostriatal system in seven patients with progressive supranuclear palsy. All patients had axial hypertonia, vertical gaze palsy, and parkinsonian features. Dementia, pyramidal signs, and ataxia were seen in varying proportions. We analyzed the scans with a graphic method to calculate a steady-state 6-FD uptake rate constant for the whole striatum. Results were compared with those obtained in seven age-matched controls. As a group, the patients with progressive supranuclear palsy had reduced 6-FD uptake constants. The 6-FD uptake constant correlated inversely with the duration of the disease. Normal positron emission tographic findings in one patient with the shortest duration of symptoms suggests that in early progressive supranuclear palsy, parkinsonism may relate to dysfunction distal to the dopaminergic neurons.
We performed sequential positron emission tomography scans with 6-[18F]fluoro-L-dopa in 9 patients with idiopathic parkinsonism and 7 age-matched normal control subjects to compare changes in the nigrostriatal dopaminergic pathway over time. The mean interval between the scans was 3.3 years for the group with idiopathic parkinsonism and 3.9 years for the control subjects. The scans were analyzed by calculating the ratio of striatal to background radioactivity. Both groups showed statistically significant reductions of striatal uptake over the interval. The rate of decrease was almost identical in each group (p = 0.6). We infer that the usual rate of loss of integrity of the dopaminergic nigrostriatal pathway in patients with idiopathic parkinsonism is slow and the rate of change between the two groups was comparable.
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Artificial dopamine agonists are widely employed for the treatment of idiopathic parkinsonism. Pleuropulmonary disease has previously been reported to occur with the use of bromocriptine and mesulergine. We report similar adverse effects induced by the newer agonists lisuride and cabergoline. All these agents are tetracyclic ergot derivatives. This suggests a causal link between ergot-derived dopamine agonists and pleuropulmonary disease.
Movement disorders, including Parkinsonism, are prominent features of neurological Wilson's disease (WD). This suggests there may be dysfunction of the nigrostriatal dopaminergic pathway. To explore this possibility, five patients were studied using positron emission tomography (PET) with 18F-6-fluorodopa (6FD), and magnetic resonance imaging (MRI). We calculated striatal 6FD uptake rate constants by a graphical method and compared the results with those of 18 normal subjects. It was found that four patients with symptoms all had abnormally low 6FD uptake, and the one asymptomatic patient had normal uptake. PET evidence for nigrostriatal dopaminergic dysfunction was present even after many years of penicillamine treatment. It is concluded that the nigrostriatal dopaminergic pathway is involved in neurological WD.
Numerous examples exist where neurotoxins have been shown to induce selective death of certain groups of nerve cells. While the peripheral nerves are particularly vulnerable, neurotoxins are also capable of generating models of the major degenerative disorders of the central nervous system: dementia of Alzheimer's type, Parkinsonism, and amyotrophic lateral sclerosis. Important organic toxins, in this context, include certain pyridines, amines, aminoacids, nitriles, hexacarbons, and sulphides. Inorganic toxins include free radicals and certain metals. Toxins may also be classified according to their origin--exogenous or endogenous. This review will not consider neurological damage that can result from exposure to alcohol, or neurological adverse reactions to medications.
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