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Mitochondrial respiratory failure in skeletal muscle from patients with Parkinson's disease and multiple system atrophy.

We studied mitochondrial respiratory chain function in skeletal muscle taken from 27 patients with idiopathic Parkinson's disease (PD; 21 Dopa-treated PD patients and 6 de novo patients), 5 patients with multiple system atrophy (MSA) and from 43 age-matched controls in order to determine the occurrence of mitochondrial respiratory chain abnormalities in parkinsonian syndromes. In our control subjects, we found a significant age-related decrease in the activity of respiratory chain complex I. As compared to carefully age-matched control subjects, activity of complex (NADH:ubiquinone reductase) was significantly lower in muscle mitochondria from patients with PD and MSA and a mean remaining activity < 30% of controls was observed. Mean activities of complexes III (ubiquinol:cytochrome c reductase) and IV (cytochrome c oxidase) were also lower in PD patients than controls, but a low activity (remaining activity < 30% of controls) was observed in only 5 PD patients for complex I and III or I and IV. No deficit in complex II activity (succinate:ubiquinone reductase) was observed. Our results support the hypothesis of a wide-spread mitochondrial complex I deficiency in PD and MSA as compared to age-matched controls, who showed age-related deficiency. This deficit can be found in de novo PD patients as well as in treated patients. The observed respiratory enzyme chain deficiency could not be explained by the dose and duration of L-Dopa or dopaminergic agonist treatment, the severity of the disease, anxiety or depression since no significant correlation was found between these parameters and enzyme complexes activities.

Adult

Differentiation of multiple system atrophy from idiopathic Parkinson's disease using proton magnetic resonance spectroscopy.

Proton magnetic resonance spectroscopy, localized to the lentiform nucleus, was carried out in 7 patients with the pure or predominantly striatonigral variant (SND) of multiple system atrophy (MSA), 5 patients with the olivopontocerebellar variant of MSA, 9 patients with a clinical diagnosis of idiopathic Parkinson's disease (IPD), and 9 healthy age-matched controls. The MSA group with predominantly striatonigral involvement showed a significant reduction in the N-acetylaspartate (NAA)/creatine ratio (median, 1.19; range, 0.96-2.0; p < 0.02) compared with the NAA/creatine ratio from the control group (median, 1.76; range, 1.61-2.0). In contrast, the IPD group had a normal NAA/creatine ratio (median, 1.82; range, 1.19-2.31; p > 0.05). The NAA/creatine ratio was markedly reduced in 6 of the SND patients and in only 1 IPD patient. The choline/creatine ratio was also significantly lower in the SND group (median, 1.02; range, 0.91-1.23; p < 0.04) compared with the control group (median, 1.22; range, 1.05-1.65). The IPD group showed a normal lentiform choline/creatine ratio (median, 1.13; range, 0.89-1.65; p = 0.25) compared with controls. The olivopontocerebellar group also showed a significant reduction in the NAA/creatine ratio from the lentiform nucleus (median, 1.47; range, 1.22-1.68; p < 0.01) compared with the controls as well as a nonsignificant reduction in the choline/creatine ratio (median, 0.93; range, 0.85-1.27; p < 0.4).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Somatic motor efferents in multiple system atrophy with autonomic failure: a clinico-pathological study.

The myelinated fibers in the corticospinal tracts, ventral spinal roots, and the neurons in the ventral spinal horns were quantitatively examined in 8 autopsied cases of multiple system atrophy associated with autonomic failure. In these structures consisting of the somatic motor efferents, the main pathological feature was the size dependent-involvement of predominantly small-sized fibers and neurons. The small myelinated fibers were significantly depopulated, while the large myelinated fibers were well populated in the corticospinal tract. Neurons in the ventral horns were also involved, but those with a small diameter and located in the intermediate zone (Rexed's lamina VII, VIII) were markedly diminished. In the ventral spinal roots, in the fourth lumbar segments containing essentially no autonomic efferents, small myelinated fibers were also preferentially involved. These pathological changes in the small-sized fiber and neuron loss were examined in relation to the somatic and autonomic motor symptoms, particularly of pyramidal signs.

Aged

Immunohistochemical quantification of substance P in spinal dorsal horns of patients with multiple system atrophy.

Using a computer-assisted image analyser, an immunohistochemical quantification method of substance P-like immunoreactivity (SPLI) in laminae I + II of spinal dorsal horn was established and applied to 13 patients with multiple system atrophy (MSA) with no disturbance of pain sensation, including olivo-ponto-cerebellar atrophy and striatonigral degeneration, and 13 neurologically normal controls. To investigate whether alteration of SPLI is related to an autonomic disorder, myelinated fibre counts of the fourth thoracic ventral roots were performed. Eleven of 13 MSA patients showed a significant decrease in small and large myelinated fibres, and were diagnosed with definite Shy-Drager syndrome (SDS), with the exception of two who had no apparent history of autonomic dysfunction. SPLIs in laminae I + II in 10 of these 11 patients, when adjusted for age, were significantly decreased at both levels of the fourth thoracic and third lumbar spinal segments. The results suggest the disorder of SP-containing synapses of primary afferent neurons and/or those of interneurons in SDS.

Adult

Multiple system atrophy. Clinical aspects, pathophysiology, and treatment.

Progressive autonomic failure is a clinical syndrome of autonomic dysfunction that may occur in isolation as in idiopathic orthostatic hypotension (IOH) or in association with a central neurologic disorder, multiple system atrophy (MSA). MSA and IOH can be distinguished on the basis of biochemical and pharmacologic tests. Plasma norepinephrine levels are low in IOH and normal in MSA; neither group increases the plasma norepinephrine level adequately in response to postural change. Both MSA and IOH manifest an exaggerated pressor response to administered norepinephrine. However, only patients with IOH have true adrenergic receptor supersensitivity. The autonomic dysfunction in IOH primarily involves the peripheral autonomic neurons whereas the defect in MSA is the failure to activate appropriately an intact distal sympathetic nervous system. Neuropathologic studies reveal a multisystem degeneration in MSA; the few postmortem examinations of the central nervous system in IOH reveal lesions confined to the intermediolateral columns of the spinal cord. Orthostatic hypotension may be treated with a number of medications although supine hypertension limits the usefulness of these drugs. Further development and testing of a sympathetic neural prosthesis may help to resolve this therapeutic dilemma. Only the parkinsonian features in MSA respond to treatment with anticholinergic drugs.

Arrhythmia, Sinus

Immunohistochemical expression of microtubule-associated protein 5 (MAP5) in glial cells in multiple system atrophy.

An immunohistochemical study focusing on glial cells was performed using monoclonal antibodies against microtubule-associated proteins (MAP1, MAP2 and MAP5), transferrin, leukocyte common antigen (LCA) and glial fibrillary acidic protein (GFAP) in 5 cases of multiple system atrophy (MSA) exhibiting olivopontocerebellar atrophy and striatonigral degeneration. An antibody to MAP5, a fetal antigen in developing brain, was strongly demonstrated in the glial cytoplasmic inclusions (GCIs) which have recently drawn a great deal of attention and were observed in all 5 cases of MSA. Moreover, MAP5-positive glial cells (MAP5-Gs) were present in significantly higher number than in the controls in various regions where GCIs were found, predominantly in putamen, substantia nigra, cerebellar white matter and internal capsule. LCA and transferrin, markers of microglia and oligodendroglia, respectively, were immunohistochemically detected in some MAP5-Gs. GFAP, on the other hand, was not expressed in MAP5-Gs at all. These findings suggest that MAP5-Gs consist of reactive microglia and oligodendroglia. Our study is the first to demonstrate immunohistochemical detection of MAP5 in glial pathological changes in MSA.

Aged

Cerebellar syndrome in myxoedema revisited: a published case with carcinomatosis and multiple system atrophy at necropsy.

One of six patients in a 1960 paper on "Cerebellar syndrome in myxoedema" was subsequently found to have adenocarcinoma. General post-mortem revealed carcinomatosis and basal pneumonia. Neuropathological examination revealed the changes of multiple system atrophy. The relationship between hypothyroidism, carcinoma, and cerebellar, pontine and striatonigral degeneration is discussed.

Adenocarcinoma

Abnormal vestibuloocular reflex cancellation in multiple system atrophy and progressive supranuclear palsy but not in Parkinson's disease.

We have measured the gain of the vestibuloocular reflex (VOR) in darkness and its cancellation by fixation in 37 patients with Parkinson's disease (PD), 26 patients with multiple system atrophy (MSA), 11 patients with progressive supranuclear palsy (PSP), and 19 normal volunteers. The capacity to cancel the VOR by fixation (VOR cancellation) was significantly reduced in the MSA and PSP patients compared with the PD and normal subjects (p < 10(-4)). A VOR cancellation < 90% (i.e., the mean VOR cancellation of the normals--2 SD) was present in four PD patients, 23 MSA patients, and 11 PSP patients. This criteria distinguished PD and MSA with a 89% sensitivity and a 89% specificity. Our results demonstrate that the VOR cancellation is impaired in most patients with MSA and PSP but not with PD. In MSA patients, the abnormal VOR cancellation is probably not related to the nigrostriatal dopaminergic deficit and more likely reflects a cerebellar dysfunction. Impaired VOR cancellation is a clinical criteria to differentiate MSA and PSP from PD.

Age Factors

Cerebrospinal fluid ferritin levels of patients with Parkinson's disease, Alzheimer's disease, and multiple system atrophy.

Iron is believed to play a role in the pathogenesis of both Parkinson's disease (PD) and Alzheimer's disease (AD). We measured ferritin, which is considered to be the iron storage protein, in CSF of patients with PD, AD, and multiple system atrophy (MSA) as well as control subjects. We found a significant increase in CSF ferritin in AD compared with both PD and age-matched controls. No significant differences were found between PD patients with dementia (PDD) and non-demented PD patients. For non-demented PD patients a positive correlation between CSF ferritin and age was found. Our results may indicate that iron has a role in the pathophysiology of AD.

Age Distribution

Phosphorylated high molecular weight neurofilament protein in the peripheral motor, sensory and sympathetic neuronal perikarya: system-dependent normal variations and changes in amyotrophic lateral sclerosis and multiple system atrophy.

Using monoclonal antibody (Ta-51) that specifically binds phosphorylated high molecular weight neurofilament (pNFH) proteins, we investigated the occurrence of perikaryal pNFH in the spinal ventral horn motoneurons, intermediolateral column (ILC) neurons, sympathetic ganglion neurons and dorsal root ganglion (DRG) neurons obtained from patients with amyotrophic lateral sclerosis (ALS) and multiple system atrophy (MSA) and from control cases. In the controls, a system-dependent variation in perikaryal Ta-51 immunoreactivity was observed. Very few ventral horn cells and ILC neurons were stained with Ta-51, while large population of DRG neurons and sympathetic neurons were Ta-51 positive. The incidence of perikaryal immunoreactivity in the ventral horn cells was significantly increased in ALS and MSA. Some ILC neurons in ALS were Ta-51 positive and their incidence was significantly higher than that of the controls. These data suggest that both ILC neurons and ventral horn cells are affected with respect to pNFH metabolism in ALS and MSA. No significant difference was, however, detected in the Ta-51 immunoreactivity of both DRG and sympathetic ganglion neurons in ALS and MSA as compared with the controls.

Adult

Correlation of cardiovascular autonomic function tests, magnetic resonance brain imaging and clinical features in suspect cases of multiple system atrophy.

Nine patients presenting with parkinsonian features and no other clinical abnormalities were studied. These patients were evaluated for dopaminergic responsiveness, for cardiovascular reflex autonomic function, and underwent high field magnetic resonance scan. A 0 to 5 point probability score was used to evaluate the possibility that parkinsonian signs were the presenting symptoms of multiple system atrophy (MSA). Five patients were considered at risk for having MSA: three of them were classified as possible MSA cases (score 2-3), two of them were classified as probable cases of MSA (score 4-5). In patients at risk for MSA, no specific pattern of combination of clinical and laboratory data was found; all patients had different combinations of positive findings.

Adult

CYP2D6-debrisoquine hydroxylase gene polymorphism in multiple system atrophy.

Molecular genetic studies of the cytochrome P450 system enzyme CYP2D6, which hydroxylates debrisoquine, have indicated an excess of mutant alleles in large series of patients with Parkinson's disease (PD) when compared with controls. We have investigated CYP2D6 polymorphism in 91 patients with multiple system atrophy (MSA) in order to determine if this finding is specific to PD or if there is similar evidence of genetic susceptibility to neurotoxicity in MSA. The distribution of CYP2D6 alleles was not significantly different between MSA patients and controls, and there were fewer poor metabolisers in the MSA group than in the control group.

Alleles

Multiple system atrophy with autonomic failure: clinical, histological and neurochemical observations on four cases.

Four cases of progressive autonomic failure are described, in all of which there were additional non-autonomic neurological abnormalities, including pyramidal, extra-pyramidal and cerebellar features. Histological examination revealed cell degeneration in the substantia nigra, putamen and intermediolateral columns of the spinal cord as a common pathological finding. In addition, 3 cases showed loss of Purkinje cells in the cerebellum and degeneration of pontine nuclei and inferior olivary nuclei. In one case there was cell loss from the locus coeruleus, caudate nucleus, vestibular nuclei and dorsal vagal nuclei. These were, therefore, cases of multiple system atrophy. Neurochemically, a common feature was a profound depletion in dopamine and noradrenaline from brain regions which are normally rich in these catecholamines. Central cholinergic systems appeared to be involved also, but to a variable degree.

Aged

[Pseudotransitory ischemic attacks as the initial symptom of multiple system atrophy].

A 59-year-old man presented with an 18-month history of episodes of visual disturbance and dysphagia in association with gait unsteadiness and leg weakness lasting between 45 and 120 min. These episodes were interpreted as vertebrobasilar transitory ischemic attacks. However, they had been preceded by impotence for 6 months. Autonomic function tests remained normal until the age of 62 years when the patient developed documented orthostatic hypotension. Parkinsonism was precipitated by neuroleptic treatment at the age of 59 years, at which time pyramidal signs were evident. The patient was unable to tolerate levodopa preparations and subsequently developed the full clinical picture of pathologically proven multiple system atrophy, dying at age 65, 7 years after his first symptom.

Aged

Cerebrospinal fluid norepinephrine, 3-methoxy-4-hydroxyphenylglycol and neuropeptide Y levels in Parkinson's disease, multiple system atrophy and dementia of the Alzheimer type.

Neuropeptide Y, one of the most abundant polypeptides within the nervous system, is co-stored with catecholamines, especially norepinephrine (NE), thus suggesting its possible involvement in pathologies characterized by a noradrenergic impairment. In Parkinson's disease (PD), as well as in multiple system atrophy (MSA), a central noradrenergic deficit has been demonstrated, and in the dementia of Alzheimer type (DAT) an impaired noradrenergic transmission has been postulated. In this study we determined CSF NE and MHPG levels in 29 PD, 15 MSA, 22 DAT patients and in 36 controls, while CSF NPY-immunoreactivity (NPY-ir) levels were measured in 10 PD, 7 MSA, 10 DAT patients and 20 controls. PD, MSA, and DAT patients showed a significant reduction in CSF NPY-ir and NE levels compared with controls, while CSF MHPG levels resulted in a reduction in only the MSA group. Furthermore, an inverse correlation between either NE or MHPG levels and the duration of the orthostatic hypotension was found in MSA patients while for DAT patients the MHPG levels were directly correlated to the severity of cognitive impairment, and inversely to the duration of illness.

Adult

The relationship between locomotor disability, autonomic dysfunction, and the integrity of the striatal dopaminergic system in patients with multiple system atrophy, pure autonomic failure, and Parkinson's disease, studied with PET.

18F-dopa and S-11C-nomifensine (NMF) are positron emitting tracers whose caudate and putamen uptake reflects striatal dopamine storage capacity and the integrity of dopamine reuptake sites, respectively. Using these two tracers, the integrity of the presynaptic striatal dopaminergic system has been studied with positron emission tomography (PET) in 10 subjects with multiple system atrophy (MSA, Shy-Drager syndrome) who had an akinetic-rigid syndrome that was poorly responsive to L-dopa, autonomic failure, and cerebellar ataxia. PET findings for the 10 MSA patients were compared with those for 13 age-matched controls, 8 subjects with L-dopa responsive Parkinson's disease (PD), and 7 subjects with pure autonomic failure (PAF). Influx constants, Ki, reflecting specific 18F-dopa uptake into striatal tissue, were severely reduced in the putamen and caudate of the 10 MSA subjects (mean putamen Ki 0.005 min-1 MSA vs 0.013 min-1 controls; mean caudate Ki 0.007 min-1 MSA vs 0.013 min-1 controls). Reduction of putamen, but not caudate, 18F-dopa uptake correlated with severity and duration of locomotor disability. Eight patients with PD, and a similar degree and duration of locomotor disability to the patients with MSA, demonstrated equal impairment of mean putamen 18F-dopa uptake, but significant preservation of mean caudate function. The 7 PAF patients had normal mean levels of putamen and caudate 18F-dopa uptake, although 1 individual PAF patient had significantly impaired striatal function. The MSA and PD groups of subjects both showed significantly reduced levels of specific striatal S-11C-NMF binding, again caudate function being relatively preserved in PD. It is concluded that in both MSA and PD there is a parallel decline of striatal dopamine storage capacity and reuptake site integrity, probably reflecting a loss of nigrostriatal nerve terminals. Caudate function is relatively preserved in PD compared with MSA. The majority of PAF patients have an intact nigrostriatal dopaminergic system, suggesting that PAF is a condition distinct from PD and MSA in spite of some pathological similarities. PET is capable of detecting subclinical nigrostriatal involvement in PAF patients when this is present.

Adult

Glial cytoplasmic inclusions in the CNS of patients with multiple system atrophy (striatonigral degeneration, olivopontocerebellar atrophy and Shy-Drager syndrome).

Glial cytoplasmic inclusions (GCIs) were demonstrated by silver staining, immunocytochemistry and by electron microscopy in the central nervous system (CNS) of 11 patients with various combinations of striatonigral degeneration, olivopontocerebellar atrophy and Shy-Drager syndrome. Although their configuration in light microscope can sometimes resemble neurofibrillary tangles, their cellular localisation, measurements, ultrastructure, immunocytochemical characteristics and regional distribution all differ from these Alzheimer type changes. The majority of GCIs were localized in the white matter and appeared to be accompanied by an increase in the number of interfascicular oligodendroglial cells and pallor or loss of myelin staining. Our histological, ultrastructural and immunocytochemical findings all indicate that the cells which contain GCIs are oligodendrocytes and the inclusions themselves are composed of tubular structures. The presence of the until now unknown GCIs in all the 11 CNS, but not in age- and sex-matched control brains, indicates that GCI is a cellular change characteristic of multiple system atrophy and the three syndromes are various manifestations of the same disease.

Adult

[An autopsy case of multiple system atrophy with many senile plaques].

A 60 year-old man was admitted to our hospital because of gait disturbance and dizziness. At 57 years of age, he noticed his walking unstable. After then, he had dizziness due to orthostatic hypotension, urinary difficulty, loss of livid, and forgetfulness. Neurological examination revealed he had severe orthostatic hypotension, cerebellar ataxia, dysarthria, hyperreflexia of four limbs, myoclonus of right leg, and atonic bladder. His brain CT showed cerebellar atrophy. Thereafter he had recurrent syncopic attacks. His gait disturbance progressed steadily, so he became bedridden. In his terminal stage, his limbs showed rigidity. About 3 years later he died of pneumonia and sepsis. At autopsy brain weighted 1,230 g. Glossly the putamens was bilaterally shrunken, the color of the substantia nigra and locus ceruleus became pale. Base of the pons and the cerebellum were atrophic. Microscopical examination confirmed the degeneration of striato-nigral and olivo-ponto-cerebellar systems without Lewy body. In the spinal cord there was depletion of neuronal cells in the intermediolateral nuclei and Onufrowitz nuclei. In addition to the conventional neuropathological staining methods, we performed the immunohistochemical studies using monoclonal antibody against synthetic peptide of beta protein which detected senile plaque of every stages with formic acid pretreatment, and compared to the modified Bielschowsky method and Congo red method. Our case showed many very primitive and primitive senile plaque in neocortices and hippocampal region. A few neurofibrally tangle were seen in hippocampus. We supposed our case might combine multiple system atrophy and Alzheimer' pathology.

Alzheimer Disease