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The plasma alpha-synuclein levels in patients with Parkinson's disease and multiple system atrophy.

alpha-Synuclein, a synaptic protein of unknown function, is a major component of Lewy bodies and may play a role in the pathophysiological process of Parkinson's disease (PD). In this study, we measured the plasma alpha-synuclein levels in 105 patients with PD, 38 patients with multiple system atrophy (MSA), and 51 age-matched controls. The alpha-synuclein level was significantly elevated in patients with PD (79.9 +/- 4.0 pg/ml, p < 0.001) and in those with MSA (78.1 +/- 3.5 pg/ml, p = 0.019) compared with the level in controls (76.1 +/- 3.9 pg/ml). The alpha-synuclein level was higher in patients with PD than in those with MSA (79.9 +/- 4.0 vs 78.1 +/- 3.5, p = 0.016). Our study demonstrated that the alpha-synuclein level in plasma is elevated in patients with PD and MSA.

Adult↗

Neuropathological and behavioral changes induced by various treatment paradigms with MPTP and 3-nitropropionic acid in mice: towards a model of striatonigral degeneration (multiple system atrophy).

We characterized two models of dual nigral and striatal lesions replicating the lesion pattern of striatonigral degeneration, the neuropathological hallmark of parkinsonism associated with multiple system atrophy (SND/MSA-P). For this purpose, we used systemic administration of 1-methyl-4-phenyl-1, 2, 3, 6-tetrahydropyridine (MPTP) and 3-nitropropionic acid (3-NP) in C57BL mice. One group of animals was first injected with MPTP followed by 3NP (MPTP+3-NP model). In the second group 3-NP was injected first, followed by MPTP (3-NP+MPTP model). The behavioral and neuropathological characteristics of these two models were compared to those observed after single 3-NP or MPTP intoxication. Results showed that, compared to control mice, spontaneous nocturnal locomotor activity was preserved in the MPTP+3-NP model, whereas it was reduced by 27% ( P<0.05) in the 3-NP+MPTP model and in animals treated with either 3-NP (27%, P<0.05) or MPTP (23%, P<0.05) alone. Quantitative histological evaluation based on Nissl staining and DARPP-32 immunohistochemistry revealed that 3-NP alone and 3-NP+MPTP treatment produced a marked (greater than 50%) loss of striatal neurons, whereas MPTP+3-NP treatment attenuated loss of striatal neurons by 43%. Further, loss of tyrosine hydroxylase-positive neurons in substantia nigra pars compacta (SNc) was attenuated after 3-NP+MPTP treatment compared to that observed after MPTP (40% vs 74%, P<0.001) and MPTP+3NP treatment (55% vs 74%, P<0.01). Our results show that MPTP-induced nigral lesions attenuate 3-NP toxicity and, reciprocally, that 3-NP-induced striatal lesions reduce MPTP toxicity. This suggests that complex integrative mechanisms are likely to regulate the vulnerability of the striatum and SNc to cell death in SND/MSA-P.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Postprandial hypotension: hemodynamic differences between multiple system atrophy and peripheral autonomic neuropathy.

To clarify the mechanism of postprandial hypotension (PPH), we performed hemodynamic investigation after oral glucose ingestion in ten patients with multiple system atrophy (MSA), three patients with peripheral autonomic neuropathy (PN) and 16 normal controls. Blood pressure (BP) and heart rate (HR) were measured with an automatic sphygmomanometer; cardiac out (CO) and lower leg blood flow (LBF) with impedance plethysmography; and portal blood flow (PBF) using a B-mode pulse Doppler. In normal subjects, BP, LBF and vascular resistance of the lower leg (LVR) were not changed, but HR slightly increased, and PBF and CO significantly increased after oral ingestion of 75 g glucose. In the patients with MSA, BP fell significantly 15 min after glucose ingestion, and HR and CO did not increase. PBF and LBF increased and LVR fell significantly. In PN patients, BP decreased at 15 min after glucose ingestion, but soon recovered. Increase of PBF and decrease of LVR in them were almost similar to those in the MSA group, and increase of CO was greater than that in the controls. These results suggest that both systemic vasodilatation (presumably due to gastrointestinal vasodilatatory peptides) and lack of compensatory increase of CO and LVR play important roles in PPH.

Administration, Oral↗

Multiple system atrophy: new developments in pathophysiology and therapy.

There have been substantial advances in the last five years in understanding the basic and clinical pathophysiology underlying multiple system atrophy (MSA). Identification of glial cytoplasmic inclusions has been the most important organizing principle for further elucidation of underlying mechanisms. Recently, several unexpected developments at the clinical level have been reported. In this article, we will focus on two of these: (1) the recognition that substantial autonomic function is retained in MSA but not modulated appropriately, and (2) a potent pressor effect from ingestion of water, which cannot be explained by currently understood physiologic and pathophysiologic mechanisms. In some patients, water has elicited a 50% increase in blood pressure and been more therapeutically effective than any available pressor drug. By careful coordination of the pressor effect of water and the depressor effect of carbohydrate-rich food, many patients with MSA can now have their blood pressure controlled without pharmacological intervention.

Journal Article↗

Peculiar snoring in patients with multiple system atrophy: its sound source, acoustic characteristics, and diagnostic significance.

It is known that abductor paralysis (AP) of the vocal folds sometimes occurs in patients with multiple system atrophy (MSA), and some of them have sleep apnea and loud snoring during sleep. However, the site of obstruction and the sound source of the snoring are still unknown. We performed fiberscopic examinations under diazepam sedation in 8 MSA patients with AP and analyzed the snoring sound. We found that the peculiar snoring occurred with inspiratory vibration of the vocal folds, and there was no obstruction in this portion. Acoustic analysis showed that the fundamental frequency of vocal fold snoring was 260 to 330 Hz, which is different from that of ordinary soft palate snoring. Recognition of vocal fold snoring is important in the early diagnosis of MSA and sleep-related breathing disorders.

Adult↗

Asymmetrical FDG-PET and MRI findings of striatonigral system in multiple system atrophy with hemiparkinsonism.

The asymmetry of the local cerebral metabolic rate for glucose (lCMRglc) and magnetic resonance (MR) imaging was studied in five patients with multiple system atrophy (MSA) presenting hemiparkinsonism. lCMRglc was measured with 18F-2-fluoro-2-deoxy-D-glucose and positron emission tomography (PET) in these patients and five normal control subjects. MR images were obtained in five patients and 11 control subjects. In all patients, T2-weighted MR images showed hypointense areas in the posterior lateral putamen. They were bigger or lower in intensity on the contralateral side than on the ipsilateral side. Significant glucose hypometabolism was found in the posterior putamen on the contralateral side to hemiparkinsonism. A significant decrease in size was found in the contralateral putamen, caudate nucleus, and pars compacta of the substantia nigra. However, no significant correlation was seen between PET and MRI data. In the control subjects, no apparent asymmetry was observed. PET and MR imaging demonstrated the characteristic asymmetry corresponding to the pathological findings reported in MSA.

Brain↗

Adverse effects of subthalamic nucleus DBS in a patient with multiple system atrophy.

A 59-year-old woman with levodopa-responsive parkinsonism complicated by motor fluctuations and generalized levodopa dyskinesia underwent bilateral subthalamic deep brain stimulation (STN DBS) 7 years after symptom onset. DBS improved levodopa-responsive upper extremity bradykinesia but aggravated speech, swallowing, and gait. Motor fluctuations were not improved and levodopa dose remained unchanged. Pulse generators were turned off. Clinical features and brain MRI in this case were indicative of multiple system atrophy (MSA). STN DBS is not recommended for patients with MSA.

Antiparkinson Agents↗

Degeneration of cardiac sympathetic nerve can occur in multiple system atrophy.

Decreased cardiac uptake of meta-iodobenzylguanidine (MIBG) on [(123)I] MIBG myocardial scintigraphy, a sensitive biological marker for Parkinson's disease (PD), is related to cardiac sympathetic denervation in patients with PD. A slight decrease in cardiac uptake of MIBG has also been reported in some patients with multiple system atrophy (MSA). However, the pathophysiological mechanism accounting for the slight decrease in MIBG uptake in MSA remains to be elucidated. For confirmation, we examined cardiac tissue and sympathetic ganglia from patients with MSA. We immunohistochemically examined each specimen of 15 patients with MSA together with 10 control subjects using antibodies against tyrosine hydroxylase (TH) and neurofilament (NF). The number of TH-immunoreactive nerve fibers in the epicardium was preserved in 8 of 15 patients with MSA as well as in 10 control subjects. The number of TH-immunoreactive, but not of NF-immunoreactive nerve fibers in the epicardium was mildly or moderately decreased in six patients with MSA, of whom four showed a decrease of TH immunoreactivity in the neuronal somata in the sympathetic ganglia. Moreover, TH- and NF-immunoreactive nerve fibers almost entirely disappeared in the heart of one patient with MSA, in whom Lewy body pathology was present in the sympathetic ganglia. These findings suggest that mild degeneration of the cardiac sympathetic nerve can occur in MSA which is closely related to the pathological change of neurons in the sympathetic ganglia, accounting for the slight decrease in cardiac uptake of MIBG. Moreover, concurrent Lewy body pathology in the sympathetic ganglia might accelerate cardiac sympathetic denervation even in MSA.

Adrenergic Fibers↗

Assessment of cardiovascular autonomic dysfunction in multiple system atrophy.

Because heart rate is controlled mainly by the autonomic nervous system, cardiovascular autonomic dysfunction may contribute to the prognosis of patients with multiple system atrophy (MSA). To clarify cardiovascular autonomic dysfunctions in MSA, the authors investigated the relation between blood pressure (BP) and pulse rate (PR), and assessed a power spectral analysis of heart rate variability (HRV) during the clinical course using ambulatory BP and a heart rate monitor for 24 hours. The authors studied seven patients with MSA (five men and two women, aged 61.0 +/- 5.8 years) and seven healthy volunteers (four men and three women, aged 58.0 +/- 6.6 years) without hypertension, heart disease, or intracranial lesions. The MSA group showed abnormal circadian variations of BP and PR and a significantly decreased correlation coefficient between BP and PR. A significant decrease and altered circadian variation also existed in the number of changes in successive R-R intervals greater than 50 msec (RR50) and in the power of the high- and low-frequency component of HRV. The authors observed a significant negative correlation between the duration of illness and the number of changes in successive R-R intervals greater than 50 msec. The characteristic dysautonomia in MSA was a decrease in sympathetic and parasympathetic activity, with an abnormal circadian rhythm of BP and HRV. The balance between sympathetic and parasympathetic activity was also impaired. The parasympathetic modulation represented by RR50 worsened according to the development of the illness. Those autonomic dysfunctions may have affected the cardiovascular systems, which may indicate a poor prognosis in patients with MSA. An analysis of HRV and the circadian rhythm of BP and HRV are useful in evaluating cardiac autonomic dysfunctions in MSA.

Aged↗

Marked depletion of dorsal spinal cord substance P and calcitonin gene-related peptide with intact skin flare responses in multiple system atrophy.

In view of the presence of neuropeptides in spinal cord autonomic pathways, their regional concentration was studied in post mortem thoracic cord from four cases of multiple system atrophy with progressive autonomic failure (MSA). A marked depletion was observed of substance P, its related peptide substance K, and of calcitonin gene-related peptide (CGRP), particularly in dorsal regions where peptide-containing sensory fibres terminate. As substance P and CGRP in primary sensory fibres are considered mediators of skin flares in Lewis' triple response, histamine-induced skin flares were measured in 12 MSA patients and were found to be preserved. These results provide a new key to the classification and aetiology of autonomic and multiple system degenerations, as well as a model to study the role of sensory neuropeptides in man.

Aged↗

Apraxia in Parkinson's disease, progressive supranuclear palsy, multiple system atrophy and neuroleptic-induced parkinsonism.

We studied 45 non-demented patients with Parkinson's disease (PD), 12 with progressive supranuclear palsy (PSP), 10 with multiple system atrophy (MSA) and 12 with neuroleptic-induced parkinsonism (NIP) for the presence of apraxia. Our aim was to determine whether a standard comprehensive assessment of different praxic functions would demonstrate specific types of errors not attributable to bradykinesia, rigidity, tremor or any other abnormal elementary motor deficit. PD patients on chronic levodopa treatment were examined in the 'on' and 'off' (treatment) states. Based on apraxia assessment scores, bilateral ideomotor apraxia for transitive movements was found in eight (75%) and 12 (27%) of PSP and PD patients, respectively. Ideomotor apraxia was mainly characterized by spatial errors (i.e., external and internal configuration, body-part-as-object and trajectory). Four PSP but no PD patients exhibited ideomotor apraxia for intransitive movements. PSP as well as PD patients with ideomotor apraxia also had difficulties in imitating hand and finger postures, but none of them failed on pantomime comprehension and pantomime recognition/discrimination. Some PSP patients exhibited, in addition, a limbkinetic type of apraxia and a minority of them displayed deficits on tasks involving multiple steps. Neither MSA nor NIP patients showed any disturbance of praxic functions. There were no differences in age, disease duration, Mini Mental State Examination (MMSE), Unified Parkinson's disease Rating Scale and Hoehn-Yahr scores between apraxic and non-apraxic PD patients, and ideomotor apraxia scores were similar in the 'on' and 'off' states. A correlation was found between ideomotor apraxia scores in PD patients and deficits in frontal lobe-related neuropsychological tasks such as the Tower of Hanoi, verbal fluency and the Trail Making Test. Furthermore, PD patients with apraxia showed higher Hamilton depression scores than non-apraxic PD patients. In PSP patients, ideomotor apraxia scores correlated significantly with cognitive deficit as measured with MMSE. The presence or absence of cortical involvement, and its severity and distribution might determine the presence and type of apraxia in PD and PSP. Apraxia in these conditions would therefore reflect combined cortico-striatal dysfunction.

Adult↗

Differences in overshoot of blood pressure after head-up tilt in two groups with chronic autonomic failure: pure autonomic failure and multiple system atrophy.

On head down tilt to the supine horizontal position (tilt reversal) after head up tilt (HUT), patients with orthostatic hypotension may show an increase in blood pressure (BP) relative to baseline readings. We assessed this BP overshoot in 8 patients with pure autonomic failure (PAF, 64+/-13 years) and 8 patients with multiple system atrophy (MSA, 66+/-10 years). BP was intermittently measured during pre-tilt supine, HUT (60 degrees , 10 min), and post-tilt supine periods. In addition, beat-to-beat BP was measured continuously using the Portapres model 2 device to calculate stroke volume (SV), cardiac output (CO) and total peripheral resistance (TPR). There was systolic BP overshoot of > or = 15 mmHg after tilt reversal in 5 out of 8 PAF, but in only one of 8 MSA. A mean increase of systolic BP in PAF was significantly higher than that in MSA (p<0.01). TPR increased over baseline level after tilt reversal, although there was no significant difference. SV and CO levels during the post-tilt supine period were similar to baseline levels. In conclusion, BP overshoot was prominent in the PAF group but not in the MSA group. The phenomenon of BP overshoot while supine, especially in PAF, may have implications for long term cardiac and vascular damage in such patients.

Aged↗

The cardiovascular effects of metoclopramide in multiple system atrophy and pure autonomic failure.

Metoclopramide (MCP), a central and peripheral dopaminergic blocker with cholinergic activity, has been proposed to treat orthostatic hypotension (OH) on the basis that it could antagonize the vasodilator and natriuretic effects of dopamine. The authors evaluated cardiovascular responses to MCP in 11 subjects with OH: 6 with multiple system atrophy (MSA) and 5 with pure autonomic failure (PAF), along with 6 healthy control subjects. Supine blood pressure (BP), heart rate (HR), and breathing were continuously monitored before, during, and after MCP infusion. The pre-MCP head-up tilt test was tolerated at 65 degrees for 10 minutes in all subjects except in one with PAF, who tolerated 30 degrees for only 5 minutes. Tilting confirmed the OH in patients with MSA (change in mean arterial pressure [deltaMAP] = -31 +/- 13 mm Hg) and PAF (AMAP = -34 +/- 8 mm Hg). Infusion of MCP was given in four 5-mg doses every 5 minutes, with the subject in a supine position. Infusion of MCP induced the following effects: (1) A transient hypotensive effect occurred after each infusion in both patients and control subjects, the fall in MAP being counteracted by an increase in HR in control subjects but not in patients; this acute MAP fall was mo resevere in patients. (2) A progressive reduction of MAP occurred during the test,which never returned to preinfusion levels in patients; this effect was so pronounced in two PAF patients as to prevent them from receiving the last dose. Post-MCP tilting was tolerated in control subjects but in only in 5 MSA patients and 4 PAF patients. In those patients who tolerated the test, the MAP fall was similar to, or worse than, that before MCP (MSA: deltaMAP = -28 +/- 16 mm Hg; PAF: deltaMAP = -38 +/- 16 mm Hg). The cardiovascular effect of MCP in normal subjects was a transient hypotension counterbalanced by reflex tachycardia. The lack of an HR increase and the progressive fall in supine BP in MSA and PAF patients, together with worsening orthostatic tolerance after MCP infusion, are effects that should strongly discourage the use of this drug in the treatment of OH.

Aged↗

Glucose metabolism in the cortical and subcortical brain structures in multiple system atrophy and Parkinson's disease: a positron emission tomographic study.

The brain glucose metabolism was studied by PET with 18F-FDG in 11 patients with multiple system atrophy (MSA) and 12 patients with idiopathic Parkinson's disease (PD). Seven of the 11 MSA patients were diagnosed as having olivopontocerebellar atrophy, two had striatonigral degeneration, while two demonstrated Shy-Drager syndrome. The glucose metabolic rates for each region in the PD patients showed no difference from the normal controls. The frontal, temporal and parietal cortical glucose metabolic rates and the caudate, the putaminal, the cerebellar and the brainstem glucose metabolic rates in the MSA patients decreased significantly from the controls. The atrophy of the cerebellum and the brainstem in the MSA patients were scored by MRI. The cerebellar and brainstem glucose metabolism in the MSA patients decreased as the atrophy score in such regions advanced in each group; however, some patients with no atrophy showed a decreased glucose metabolism. Although the cerebellar and the brainstem glucose metabolism decreased in all MSA patients, such a decrease was not observed in the SND patients. The decrease in the glucose metabolism for the non-cortical regions in the MSA patients seems to be due to a diffuse depletion of the neurons not restricted to the nigrostriatal neurons. Deafferentation to the cerebral cortices seems to result in a decreased cortical metabolism. The differences in the glucose metabolism between MSA and PD as assessed by PET may be caused by the pathophysiological differences between MSA and PD, and such differences therefore appear to be useful when making a differential diagnosis between MSA and PD. The relative sparing of the brainstem and cerebellar glucose metabolism is considered to be a feature of patients with SND.

Adult↗

Ambulatory blood pressure monitoring and cardiovascular function tests in multiple system atrophy.

Cardiovascular tests (CT) of autonomic function and non-invasive ambulatory blood pressure (BP) and heart rate (HR) monitoring were performed in 17 patients with multiple system atrophy (MSA) (mean age 61 +/- 9 years) and in 12 healthy subjects matched for sex and age. CT showed severe autonomic dysfunction with orthostatic hypertension (OH) in eight patients with MSA (47%) (Group I). The remaining nine out of the 17 patients didn't show BP abnormalities during CT but an impaired HR reflex response was found (Group II). BP monitoring showed a reversed circadian BP rhythm in Group I with higher night-time than day-time values, a blunted circadian BP pattern in Group II and a normal day-night BP reduction in controls. Day-night HR reduction was poor in Group II and absent in Group I. Post-prandial hypotension was evaluated after a standard meal. In Group I systolic/diastolic BP fell within 30 minutes after meal (from 135 +/- 16/89 +/- 13 to 118 +/- 17/73 +/- 12 mmHg; p < 0.05) and after two hours had not returned to basal levels. In Group II a reduction of only systolic BP was found within 45 minutes after meal and persisted for one hour. OH clinically identifies a subgroup of MSA patients with a more severe BP dysregulation characterized by severe post-prandial hypotension and reversed circadian BP rhythm. CT and ambulatory BP monitoring are useful tools in identifying early stage of cardiovascular autonomic impairment.

Adult↗

Decrease of neurons in the medullary arcuate nucleus of multiple system atrophy: quantitative comparison with Parkinson's disease and amyotrophic lateral sclerosis.

The physiological functions of the medullary arcuate nucleus are supposed to be involved in autonomic cardioventilatory regulation, but neuropathological studies on neurodegenerative diseases have rarely reported about the arcuate nucleus. We quantitatively examined the neuronal density of the arcuate nucleus in patients with multiple system atrophy (MSA, n = 3), Parkinson's disease (PD, n = 3), amyotrophic lateral sclerosis (ALS, n = 2), and control subjects (n = 6), and statistically compared the findings in each group. Although the neuronal densities in PD and ALS patients were not different from that in the controls, MSA patients showed a marked depletion of neurons in the arcuate nucleus. The neuronal density (/mm2, mean +/- SEM) in the arcuate nucleus was 9.27 +/- 10.4 in MSA, and was significantly decreased (P < 0.05; Wilcoxon test), compared with that in control subjects (87.1 +/- 12.2). These results suggest that the lesioned arcuate nucleus is related to the pathogenesis of dysatonomia in MSA.

Aged↗

Depletion of catecholaminergic neurons of the rostral ventrolateral medulla in multiple systems atrophy with autonomic failure.

The ventrolateral portion of the intermediate reticular formation of the medulla (ventrolateral medulla, VLM), including the C1/A1 groups of catecholaminergic neurons, is thought to be involved in control of sympathetic cardiovascular outflow, cardiorespiratory interactions, and reflex control of vasopressin release. As all these functions are affected in patients with multiple systems atrophy (MSA) with autonomic failure, we sought to test the hypothesis that catecholaminergic (tyrosine hydroxylase [TH]-positive) neurons of the VLM are depleted in these patients. Medullas were obtained at autopsy from 4 patients with MSA with prominent autonomic failure and 5 patients with no neurological disease. Patients with MSA had laboratory evidence of severe adrenergic sudomotor and cardiovagal failure. Tissue was immersion fixed in 2% paraformaldehyde at 4 degrees C for 24 hours and cut into 1-cm blocks in the coronal plane from throughout the medulla. Serial 50-microm sections were collected and one section every 300 microm was stained for TH. There was a pronounced depletion of TH neurons in the rostral VLM in all cases of MSA. There was also significant reduction of TH neurons in the caudal VLM in 3 MSA patients compared with 3 control subjects. In 2 MSA cases and in 2 control subjects, the thoracic spinal cord was available for study. There was also depletion of TH fibers and sympathetic preganglionic neurons (SPNs) in the 2 MSA cases examined. Thus, depletion of catecholaminergic neurons in the VLM may provide a substrate for some of the autonomic and endocrine manifestations of MSA.

Aged↗

Voxel-based analysis of multiple-system atrophy of cerebellar type: complementary results by combining voxel-based morphometry and voxel-based relaxometry.

Voxel-based relaxometry (VBR) is a novel morphometric method that analyses the relaxation rate R2 derived from multi-echo T2-weighted images on a voxel-by-voxel basis. We used VBR to study the brain morphology of 14 patients suffering from multiple-system atrophy of cerebellar type (MSA-C) and compared the results with those obtained by voxel-based morphometry (VBM) of T1-weighted images. VBR analysis revealed reduction of relaxation rate R2 in the cerebellum and brainstem reflecting infratentorial brain atrophy. The affected regions largely corresponded to those regions in which VBM showed reductions of grey and white matter. In addition, R2 was increased in the putamen, a region in which VBM did not show abnormalities. Our data show that the combination of VBR and VBM provided convergent and complimentary information about the brain morphology of MSA-C.

Atrophy↗