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A 'single toxin-double lesion' rat model of striatonigral degeneration by intrastriatal 1-methyl-4-phenylpyridinium ion injection: a motor behavioural analysis.

Previous attempts to reproduce striatonigral degeneration, the core pathology underlying Parkinsonism in multiple system atrophy, have been impeded by interactions in the neurotoxins used to replicate striatal and nigral degeneration in rodents. To overcome these interactions, we have developed a new model of striatonigral degeneration which uses a single unilateral administration of 1-methyl-4-phenylpyridinium ion (MPP(+)) into the rat striatum. Spontaneous and drug-induced rotational behaviour, thigmotactic scanning, stepping adjusting steps and paw reaching deficits were compared in four groups of animals: group 1 (control), group 2 (20 microg quinolinic acid), group 3 (20 microg 6-hydroxydopamine), and group 4 (90 nmol MPP(+)). MPP(+) administration resulted in the absence of the amphetamine-induced ipsilateral bias observed in the 6-hydroxydopamine group and of the apomorphine-induced ipsilateral bias observed in the quinolinic acid group. There was no thigmotactic scanning asymmetry in the MPP(+)-injected rats compared to the quinolinic acid- and the 6-hydroxydopamine-injected rats. MPP(+) elicited a bilateral stepping adjustment deficit similar to that found in the quinolinic acid group when compared to controls. MPP(+) also elicited a more severe and significant contralateral deficit in paw reaching compared to controls, 6-hydroxydopamine and quinolinic acid groups. Histopathology revealed a significant reduction of the lesioned striatal surface (-47.53%) with neuronal loss and increased astrogliosis in the MPP(+) group grossly similar to that found in the quinolinic acid group. Contrary to the latter group, however, loss of intrastriatal and striatal-crossing fibre bundles was observed in the MPP(+) group as there was also some retrograde degeneration in the ipsilateral thalamic parafascicular nucleus. The mean loss of dopaminergic cells in the ipsilateral substantia nigra pars compacta in MPP(+) rats was less marked (-48.8%) than in the 6-hydroxydopamine rats (-63.6%) and was not significant in quinolinic acid rats (-5.2%). This study shows that a single unilateral intrastriatal administration of MPP(+) induces a unique motor behaviour resulting from both nigral and striatal degeneration, but also from possible extrastriatal damage. This 'single toxin-double lesion' paradigm may thus serve as a rat model of striatonigral degeneration.

1-Methyl-4-phenylpyridinium↗

Late-onset neurodegenerative diseases--the role of protein insolubility.

Recently, mutations of the alpha-synuclein gene were found to cause dominantly inherited Lewy-body Parkinson's disease (PD) and alpha-synuclein was identified as a major component of the Lewy body. However, the cause of the common form of PD, with a multifactorial rather than autosomal dominant inheritance pattern, remains unknown. Alpha-synuclein precipitates slowly and apparently spontaneously at high concentration in solution and the mutations that cause PD accelerate precipitation. Other dominantly inherited late-onset or adult-onset dominantly inherited neurodegenerative diseases are associated with precipitation of proteins. In Alzheimer disease, beta-amyloid and tau abnormalities are present and in prion disorders, prion proteins are found. In Huntington disease, a disorder with expanded CAG repeats, huntingtin precipitates occur. In dominantly inherited spinocerebellar ataxias, also expanded CAG repeat disorders, the corresponding ataxin protein precipitates are found. In multiple system atrophy, alpha-synuclein precipitates are encountered and in progressive supranuclear palsy, tau precipitates occur. In familial amyotrophic lateral sclerosis, a group of dominantly inherited disorders, SOD1 precipitates are found. Most of these disorders can involve the basal ganglia in some way. Since similar processes seem to affect neurons of adults or older individuals and since a relatively limited group of proteins seems to be involved, each producing a form of neurodegeneration, it is possible that certain common features are present that affect this group of proteins. Candidates include a conformational shift, as in prions, an abnormality of the ubiquitin-proteosome pathway, as seen in PD, an abnormality of a pathway preventing precipitation (e.g. chaperonins), or potentiation of a pathway promoting precipitation (e.g. gamma-glutamyl-transpeptidase) or apoptosis. Elucidation of the pathways causing this protein insolubilisation is the first step towards approaching prevention and reversal in these late-onset neurodegenerative diseases.

Adult↗

Syncope due to autonomic insufficiency syndromes associated with orthostatic intolerance.

Recurrent syncope may be either a sign or a symptom and may occur due to a wide variety of very different causes. Extensive investigations into the nature of this disorder soon uncovered that it represents only one aspect of a broad, heterogenous group of disturbances of the autonomic nervous system (ANS) that can result in hypotension, orthostatic intolerance, and often syncope. Disorders of orthostatic regulation may be subgrouped into both primary and secondary forms. In primary autonomic failure syndromes, as opposed to the intermittent periods of hypotension seen in the reflex syncopes, patients could develop orthostatic intolerance due to a failure of the ANS to function under normal circumstances. Chronic autonomic insufficiency has two entities: Pure Autonomic Failure (PAF) and Multiple System Atrophy (MSA). Over the last several years, it has become apparent that a milder form of autonomic insufficiency occurs that is now referred to as the Postural Orthostatic Tachycardia Syndrome (POTS). The secondary forms of autonomic failure occur in association with a particular disease process. One of the most important things to remember are the vast number of pharmacologic agents that may either cause or worsen orthostatic hypotension. The principal feature that all of these conditions share is that normal cardiovascular regulation is disturbed resulting in postural hypotension. The comerstone of evaluation is a detailed history and physical examination. One of the physician's most important tasks is to identify whether hypotensive syncope is primary or secondary in nature, and to determine if there are any potentially reversible causes (i.e., drugs, anemia, volume depletion). It is equally important to educate the patient. Nonpharmacologic therapies are useful. Pharmacotherapy should be used cautiously in selected cases.

Autonomic Nervous System↗

Cardiovascular and renin responses to head-up tilt tests in parkinsonism.

OBJECTIVES: We investigated cardiovascular and renin responses to head-up tilt tests in patients with Parkinson's disease (PD), multiple system atrophy (MSA), and in controls to determine variables for the assignment of parkinsonism to the potential underlying neurologic condition. PATIENTS AND METHODS: Sequential changes in sympathetic-mediated circulatory variables such as heart rate, blood pressure, and plasma renin concentration during head-up tilt tests were studied in 14 patients with PD and 11 patients with MSA. Twelve subjects with normal autonomic functions were studied as controls. RESULTS: Head-up tilt resulted in significant differences in blood pressure and heart rate responses between PD, MSA, and controls. The baseline plasma renin concentration was significantly lower in MSA than in controls. Twenty min head-up tilt revealed significant differences in plasma renin concentration between PD, MSA, and controls. CONCLUSION: We conclude that investigating sequential changes in mean arterial blood pressure, heart rate, and plasma renin concentration during head-up tilt test can potentially support differential diagnosis of PD and MSA.

Adult↗

Clinical and physiological characteristics of autonomic failure with Parkinson's disease.

We analyzed the clinical and physiological features of autonomic failure with Parkinson's disease (AF-PD) in seven patients and compared them with those of autonomic failure with multiple system atrophy (AF-MSA). In AF-PD, parkinsonism was more gradually progressive than in AF-MSA, and symptoms were responsive to L-dopa. All seven patients with AF-PD had orthostatic hypotension, postprandial hypotension, and constipation, but no urinary retention. Of these, three had hypohidrosis and five had frequent urination; five patients had subnormal plasma norepinephrine (NE) concentrations. Supersensitivity to NE infusion was observed in all patients. Head-up tilting (HUT) test resulted in no increase of plasma NE concentrations in both groups, but a significant increase of the plasma arginine vasopressin (AVP) concentrations in the patients with AF-PD. Urodynamic studies revealed that urinary bladder function was relatively well preserved in AF-PD in contrast to AF-MSA. In conclusion, there exists some clinical and physiological differences in autonomic features between AF-PD and AF-MSA, and postganglionic involvement predominates in AF-PD.

Aged↗

Orthostatic hypotension as an early finding in Parkinson's disease.

Patients with Parkinson's disease (PD) commonly have clinically significant orthostatic hypotension (OH). In such patients PD+OH might be confused with multiple system atrophy (MSA), in which OH is a frequent finding, or with pure autonomic failure (PAF), if OH preceded clinical manifestations of the movement disorder. This study addressed whether OH can occur as an early finding in PD+OH. Historical data were analyzed from 35 patients with PD+OH evaluated at the NIH. OH was considered early if the patient had OH before, concurrent with, or starting within 1 year after onset of a symptomatic movement disorder. MSA was excluded by myocardial 6-[(18)F]fluorodopamine-derived radioactivity more than 2 standard deviations below the normal mean. Among the 35 PD+OH patients, 21 (60 %) had documentation of OH as an early finding. In 4 such patients, OH had preceded parkinsonism, and in 4 others, OH had dominated the early clinical picture, even after cessation of levodopa treatment for the movement disorder. In PD, OH can occur early in the disease, occasionally preceding or overshadowing the movement disorder.

Adult↗

Toward a primate model of L-dopa-unresponsive parkinsonism mimicking striatonigral degeneration.

We developed a primate model of striatonigral degeneration (SND), the neuropathology underlying levodopa-unresponsive parkinsonism associated with multiple systemic atrophy (MSA-P), by sequential systemic administration of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) and 3-nitropropionic acid (3NP) in a Macaca fascicularis monkey. L-Dopa-responsive parkinsonian features emerged after MPTP injections. Subsequent chronic 3NP administration aggravated the motor symptoms and abolished the L-dopa response. In vivo magnetic resonance imaging revealed bilateral striatal lesions. Histopathologically, there was severe dopaminergic cell loss in the substantia nigra pars compacta compared with the control monkey. Furthermore, we observed circumscribed areas of severe neuronal degeneration in the motor striatum. These changes were absent in the control monkey, and they were associated with diffuse metabolic failure as demonstrated by cytochrome oxidase histochemistry. The striatal pathology predominantly involved output pre-pro-enkephalin A- and substance P-containing cells, whereas somatostatin (NADPH-diaphorase)-containing interneurons were relatively spared. Our model therefore reproduced levodopa-unresponsive parkinsonism and SND-like pathologic changes characteristic of MSA-P. The double-lesion primate model of SND may serve as a preclinical test-bed for the evaluation of novel therapeutic strategies in MSA-P.

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

Autonomic dysfunction in movement disorders.

Dysfunction of the autonomic nervous system is an under-recognised but important aspect of the aetiological and clinical manifestation of primary degenerative dysautonomias such as multiple system atrophy (MSA) and Parkinson's disease (PD). Although the clinical presentation of dysautonomia in these two disorders may overlap, yet pathological and in vivo imaging studies suggest considerable differences. Functional imaging studies suggest that selective cardiac sympathetic denervation may occur early in PD but not in other parkinsonian syndromes. The clinical implication of this apparently disease specific peripheral dysautonomia is unknown and would be the subject of much interest in future years. Dysautonomia in degenerative disorders also affect respiration, genitourinary function and sleep. Sleep related disorders such as rapid eye movement behaviour disorder and urinary voiding dysfunction appear to precede the development of PD related symptoms while patients with sporadic ataxia have been shown to progress to develop MSA. Dysautonomia has also been recognised in other movement disorders, examples being the combination of dystonia and complex regional pain syndrome with elevated HLA-DR13 and late onset Huntington's disease presenting with dominant parkinsonism and minimal chorea. These studies have helped progress in various diagnostic and management parameters in relation to autonomic dysfunction and movement disorders.

Autonomic Nervous System Diseases↗

Neck and other muscle pains in autonomic failure: their association with orthostatic hypotension.

Neck pain in the suboccipital and paracervical region ('coathanger' configuration) is often reported by patients with autonomic failure and orthostatic hypotension. The frequency of this pain, along with pains in the buttock and calf regions, was determined by questionnaire in two major groups with primary chronic autonomic failure--pure autonomic failure (PAF) and multiple system atrophy (MSA). Comparisons were made with Parkinson's disease, cerebellar degeneration and other disorders in which neurological symptoms overlap but in which there was neither autonomic failure nor orthostatic hypotension. Neck pain was present in 93% of patients with PAF, 51% of patients with MSA and 38-47% of the non-autonomic groups. Buttock pain was present in smaller but similar proportions (8-19%) of each group, like calf pain (23-37%). Neck pain in PAF and MSA differed from that in the other groups in being relieved by sitting or lying flat and in being associated with factors that lower blood pressure in these patients. Buttock pain was posturally related in PAF and MSA; for calf pain there was no difference between groups. Neck pain was related to the degree of orthostatic hypotension; in PAF patients, whose postural blood-pressure fall was greater than that in MSA, there was a greater frequency of neck pain.

Adult↗

Cardiac sympathetic denervation in Parkinson disease.

BACKGROUND: In Parkinson disease, orthostatic hypotension can result from L-dopa treatment or from sympathetic neurocirculatory failure. The latter is detected by abnormal blood pressure responses to the Valsalva maneuver and can be associated with loss of functional cardiac sympathetic nerve terminals. OBJECTIVE: To determine the frequency of cardiac sympathetic denervation in Parkinson disease, with or without sympathetic neurocirculatory failure, and its association with disease duration, severity, and L-dopa treatment DESIGN: Intergroup comparisons in resting patients. SETTING: National Institutes of Health Clinical Center, Bethesda, Maryland. PATIENTS: 29 patients with Parkinson disease (9 with sympathetic neurocirculatory failure, 10 who had stopped receiving or had never been treated with L-dopa), 24 patients with multiple-system atrophy (17 with sympathetic neurocirculatory failure, 8 receiving L-dopa), 7 patients with pure autonomic failure, 33 controls with episodic or persistent orthostatic intolerance without sympathetic neurocirculatory failure, and 19 normal volunteers. MEASUREMENTS: Beat-to-beat blood pressure responses to the Valsalva maneuver, interventricular septal 6-[18F]fluorodopamine-derived radioactivity, cardiac extraction fraction of [3H]norepinephrine, appearance rate of norepinephrine in coronary sinus plasma (cardiac norepinephrine spillover) and venous-arterial differences in levels of dihydroxyphenylglycol (DHPG) and endogenous L-dopa. RESULTS: Of the 29 patients with Parkinson disease, 9 with sympathetic neurocirculatory failure and 11 without had low septal 6-[18F]fluorodopamine-derived radioactivity (2861 +/- 453 Bq/mL per MBq/kg and 5217 +/- 525 Bq/mL per MBq/kg, respectively). All 6 patients with Parkinson disease and decreased 6-[18F]fluorodopamine-derived radioactivity who underwent right-heart catheterization had a decreased cardiac extraction fraction of [3H]norepinephrine and virtually no cardiac norepinephrine spillover or venous-arterial increments in plasma levels of DHPG and L-dopa. Sympathetic neurocirculatory failure and decreased 6-[18F]fluorodopamine-derived radioactivity were unrelated to disease duration, disease severity, or L-dopa treatment CONCLUSIONS: Many patients with Parkinson disease-including all those with sympathetic neurocirculatory failure-have evidence of cardiac sympathetic denervation. This suggests that loss of catecholamine innervation in Parkinson disease occurs in the nigrostriatal system in the brain and in the sympathetic nervous system in the heart

Adult↗

Abnormalities of the QT interval in primary disorders of autonomic failure.

BACKGROUND: Experimental evidence shows that activation of the autonomic nervous system influences ventricular repolarization and, therefore, the QT interval on the ECG. To test the hypothesis that the QT interval is abnormal in autonomic dysfunction, we examined ECGs in patients with severe primary autonomic failure and in patients with congenital dopamine beta-hydroxylase (DbetaH) deficiency who are unable to synthesize norepinephrine and epinephrine. SUBJECTS AND METHODS: Maximal QT and rate-corrected QT (QTc) intervals and adjusted QTc dispersion [(maximal QTc - minimum QTc on 12 lead ECG)/square root of the number of leads measured] were determined in blinded fashion from ECGs of 67 patients with primary autonomic failure (36 patients with multiple system atrophy [MSA], and 31 patients with pure autonomic failure [PAF]) and 17 age- and sex-matched healthy controls. ECGs of 5 patients with congenital DbetaH deficiency and 6 age- and sex-matched controls were also analyzed. RESULTS: Patients with MSA and PAF had significantly prolonged maximum QTc intervals (492+/-58 ms(1/2) and 502+/-61 ms(1/2) [mean +/- SD]), respectively, compared with controls (450+/-18 ms(1/2), P < .05 and P < .01, respectively). A similar but not significant trend was observed for QT. QTc dispersion was also increased in MSA (40+/-20 ms(1/2), P < .05 vs controls) and PAF patients (32+/-19 ms(1/2), NS) compared with controls (21+/-5 ms(1/2)). In contrast, patients with congenital DbetaH deficiency did not have significantly different RR, QT, QTc intervals, or QTc dispersion when compared with controls. CONCLUSIONS: Patients with primary autonomic failure who have combined parasympathetic and sympathetic failure have abnormally prolonged QT interval and increased QT dispersion. However, QT interval in patients with congenital DbetaH deficiency was not significantly different from controls. It is possible, therefore, that QT abnormalities in patients with primary autonomic failure are not solely caused by lesions of the sympathetic nervous system, and that the parasympathetic nervous system is likely to have a modulatory role in ventricular repolarization.

Aged↗

alpha-Synuclein forms a complex with transcription factor Elk-1.

alpha-Synuclein has been identified as a component of Lewy bodies in Parkinson's disease and diffuse Lewy body disease, and glial cytoplasmic inclusions (GCIs) in multiple system atrophy (MSA). To explore the role of alpha-synuclein in the pathogenesis, we searched for molecules interacting with alpha-synuclein and discovered that GCIs are stained by anti-Elk-1 antibody. To seek the role of Elk-1 in synucleinopathies, we cotransfected alpha-synuclein and Elk-1 to cultured cells, and found small granular structure complexes where the two molecules colocalized. Moreover, alpha-synuclein and Elk-1 were co-immunoprecipitated from the cell lysates. For formation of the complex, the presence of both ETS and B-box domains of Elk-1 was required. Although there was no evidence of direct binding between alpha-synuclein and Elk-1, we discovered that alpha-synuclein and Elk-1 both bind to ERK-2, a MAP kinase. The effect of alpha-synuclein on the MAP kinase pathway was assessed using the Pathdetect system, which showed prominent attenuation of Elk-1 phosphorylation with alpha-synuclein, and especially A53T mutant. Our results suggest that alpha-synuclein reacts with the MAP kinase pathway, which might cause dysfunction of neurons and oligodendrocytes and lead to neurodegeneration in Parkinson's disease and MSA.

Amino Acid Motifs↗

Heat-related morbidity in patients with orthostatic hypotension and primary autonomic failure.

We investigated the effects of high-external-temperature exposure on neurogenic orthostatic hypotension (OH). Thirty-one patients with autonomic failure (AF) and pharmacologically treated OH related to probable multiple-system atrophy (n=7), Parkinson's disease (n=10), pure autonomic failure (n=7), and diffuse Lewy body disease (n=7) and 26 parkinsonians without AF were included. Prevalence and severity of clinical events were studied during the August 2003 heat wave and the 2004 summer. The prevalence of OH-related events was significantly higher in 2003 [45.1 vs. 11.5%; P=0.0052; OR=6.31 (1.35--33.53)] and 2004 [42.3 vs. 12.0%; P=0.014; OR=5.40 (1.28--22.68)] in AF than in controls. The mean severity score for clinical events was significantly higher in AF than in controls during 2003 heat wave (1.2+/-1.4 vs. 0.2+/-0.5) but similar in summer 2004 (0.7+/-1.0 vs. 0.1+/-0.3). Severe events (unusual home care, assistance, or hospitalization) were only observed in AF patients. A nonstatistically significant higher prevalence of clinical events was observed in AF patients prescribed fludrocortisone (66.7%) by comparison to heptaminol (42.9%), midodrine (45.5%), or midodrine plus fludrocortisone (28.6%). This study shows that AF patients have a poor clinical outcome when exposed to high temperatures and that heat exposure is a risk factor for OH worsening.

Aged↗

Autonomic failure in neurodegenerative disorders.

Autonomic failure with orthostatic and postprandial hypotension, bowel and bladder disturbances, and sexual dysfunction are frequent, disabling features in patients with the three most prevalent neurodegenerative movement disorders: Parkinson's disease (PD), dementia with Lewy bodies and multiple system atrophy (MSA), and the related neurodegenerative Lewy-body disorder characterized by isolated severe autonomic failure (pure autonomic failure, PAF). All of these disorders have in common the presence of alpha-synuclein in the cytoplasmic precipitates found in neurons in Lewy body disorders or glia in MSA. Autonomic failure with disabling orthostatic hypotension is the clinical hallmark of PAF. It may also be the initial presentation of MSA, making diagnosis difficult. Within a few years, however, MSA patients develop movement disorders, which are differentiated from PD by the paucity of unilateral resting tremor, the lack of response to levodopa, and their rapidly progressive nature, resulting in disability and death in 7 to 8 years. Moderately effective treatment is available for autonomic symptoms, but management of movement disorders remains unsuccessful. Discoveries relevant to physiology and common pathological conditions were initially made in patients with autonomic failure. Meals induce profound hypotension in these patients. Conversely, commonly used nasal decongestants can produce substantial pressor effects. Even 500 mL of water can increase blood pressure by a previously unrecognized sympathetic reflex. Residual sympathetic tone is able to induce sustained supine hypertension in MSA, because it is resolved after ganglionic blockade. These phenomena were not previously recognized because of the buffering capacity of the baroreflex, but were unmasked in autonomic failure patients.

Animals↗

The sympathetic nervous system in hypertension: assessment by blood pressure variability and ganglionic blockade.

OBJECTIVE: To determine if the contribution of the sympathetic nervous system to blood pressure could be evidenced by low-frequency oscillations of systolic blood pressure (LF(SBP)), reflecting vascular sympathetic modulation, or by the decrease in blood pressure after autonomic blockade. DESIGN: We studied multiple system atrophy (MSA) patients, in whom supine hypertension is maintained by residual sympathetic tone ('positive controls'); pure autonomic failure (PAF) patients, in whom supine hypertension is largely independent of sympathetic tone ('negative controls'); essential hypertensive patients (HTN) and normotensive subjects (NTN). RESULTS: Supine systolic blood pressure (SBP) was 204 +/- 8, 185 +/- 6, 177 +/- 9 and 130 +/- 4 mmHg in MSA, PAF, HTN and NTN, respectively. LF(SBP) was higher in MSA and HTN (5.7 +/- 1.5 and 5.8 +/- 1.4 mmHg(2) compared to NTN and PAF (3.3 +/- 0.5 and 1.1 +/- 0.5 mmHg(2). Trimethaphan 2-4 mg/min induced complete autonomic blockade and lowered SBP below 125 mmHg in all NTN and all but one MSA (to 111 +/- 3 and 97 +/- 9 mmHg). SBP remained elevated in PAF (164 +/- 7 mmHg). Responses in HTN were variable; SBP decreased below 125 mmHg in three and remained elevated in four patients. The decrease in LF(SBP) correlated with the reduction in SBP, with a steeper slope in MSA and HTN compared to NTN (29.0 +/- 5.5, 8.4 +/- 1.6 and 3.6 +/- 1.2 mmHg/mmH (2), respectively). CONCLUSION: Ganglionic blockade, alone or coupled to LF(SBP), discriminated between human models of sympathetic-dependent (MSA) and independent (PAF) hypertension. This approach may aid in assessing the contribution of the sympathetic nervous system in essential hypertension, in which sympathetic dependence is variably expressed.

Aged↗

Apparent diffusion coefficient measurements of the middle cerebellar peduncle differentiate the Parkinson variant of MSA from Parkinson's disease and progressive supranuclear palsy.

Clinical differentiation of parkinsonian syndromes such as the Parkinson variant of multiple system atrophy (MSA-P) and progressive supranuclear palsy (PSP) from Parkinson's disease is difficult in the early stage of the disease. In order to identify objective markers for differential diagnosis, we studied these three groups of patients with diffusion-weighted MRI (DWI). Sixteen MSA-P patients, 16 with PSP, 16 with Parkinson's disease and 15 healthy volunteers were studied. Regional apparent diffusion coefficients (rADC) were determined in different brain regions including basal ganglia, thalamus, white matter, pons and middle cerebellar peduncles (MCPs). rADC calculated in the MCP completely differentiated MSA-P patients (median: 0.93 x 10(-3) mm2/s) from PSP patients (median: 0.82 x 10(-3) mm2/s, P < 0.001), Parkinson's disease patients (median: 0.79 x 10(-3) mm2/s, P < 0.001) and healthy volunteers (median: 0.81 x 10(-3) mm2/s, P < 0.001). Other regions considered showed an overlapping among groups. DWI discriminates MSA-P from PSP and Parkinson's disease and healthy volunteers on the basis of MCP rADC values. These in vivo results confirm the pathological findings that the majority of MSA-P patients have moderate or severe degenerative changes not only in the nigrostriatal but also in the olivopontocerebellar systems. Our findings indicate that, in order to substantially contribute to the in vivo differential diagnosis of MSA-P, PSP and Parkinson's disease, rADC measurements should not be limited to the basal ganglia but should also include the MCP.

Aged↗

Cardiovascular and neurohormonal responses to i. v. l-arginine in two groups with primary autonomic failure.

Nitric oxide (NO) is synthesised from the amino-acid l-arginine by the enzyme nitric oxide synthetase (NOS) and modulates a wide variety of neural, cardiovascular and hormonal processes. Cardiovascular autonomic dysfunction and impaired neurohormonal secretion characterise patients with primary chronic autonomic failure (AF). To investigate the role of NO, we studied the cardiovascular and neurohormonal effects of intravenous (i. v.) l-arginine (0.5 g/kg) in 20 patients with AF: [10 with multiple system atrophy (MSA) and 10 patients with pure autonomic failure (PAF)] and compared them with age-matched healthy normal subjects. Basal mean arterial pressure (MAP) was higher in MSA and PAF than controls (p < 0.02). Following l-arginine, MAP fell in MSA (mean: -39 +/- 8 mmHg, 95 % CI -21 to -57, p < 0.05) and PAF (-37 +/- 5,95 % CI -26 to -58, p < 0.05) but not in controls. There were no significant changes in HR between the groups. Basal plasma noradrenaline (NA) was similar in controls and MSA, but lower in PAF (p < 0.05). Following l-arginine the percentage rise in plasma NA was similar in controls and MSA, but not in PAF (p < 0.05). Plasma insulin rose similarly in controls and MSA, but was higher in PAF (p < 0.05). Plasma glucose rose to a similar level in all groups. In conclusion, l-arginine, lowered BP in both MSA and PAF. In PAF a contributory factor may be increased insulin release, without a compensatory increase in sympatho-neural activity to counter its potential vasodilator effects. These studies suggest that reducing NO levels, as with NOS inhibitors, may be of benefit in the treatment of postural hypotension and possibly post-prandial hypotension in chronic primary AF.

Adult↗

Contribution of nitric oxide to exercise-induced hypotension in human sympathetic denervation.

The cardiovascular, catecholamine, and nitrate/nitrite (NO) responses to bicycle exercise were measured in 14 normal subjects (controls) and two groups with sympathetic denervation; 14 with peripheral autonomic failure (pure autonomic failure [PAF]); and 13 with central autonomic failure (multiple system atrophy [MSA]). With exercise, blood pressure increased in control subjects by 40 +/- 7/24 +/- 5 mm Hg (p < 0.001) and fell in PAF by 24 +/- 8/24 +/- 5 mm Hg (p < 0.02 and p < 0.007) and MSA by 31 +/- 7/11 +/- 3 mm Hg (p < 0.005 and p < 0.04). With exercise, the increase in heart rate was greater in control subjects (60 +/- 3 to 111 +/- 4/min; p < 0.0001) than in PAF (69 +/- 3 to 86 +/- 4/min; p < 0.0001) and MSA (70 +/- 4 to 90 +/- 4; p < 0.001). Resting plasma noradrenaline levels were similar in controls (291 +/- 51 pg ml(-1)) and MSA (257 +/- 49 pg ml(-1)), but lower in PAF (82 +/- 14 pg ml(-1)). With exercise, plasma noradrenaline increased in controls but was unchanged in PAF and MSA. Resting NOx was similar in controls (50 +/- 5 nmol/L; range, 23.3-87.6 nmol/L) and PAF patients (59+/-8 nmol/l; range, 19.3-116.4 nmol/L), but was higher in MSA patients (87 +/-14 nmol/L; p <0.025, range 15.4-157.2 nmol/L). With exercise, NOx was unchanged in control subjects and increased by 10% and 17% in PAF and MSA, respectively; these changes were not statistically significant. This study suggests that circulating changes in NOx levels do not exert a major role in exercise-induced hypotension in subjects with sympathetic denervation.

Autonomic Nervous System Diseases↗