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E E Benarroch

Publications and source records attributed to E E Benarroch.

At least 19 recordsLinked to original sources

Insights into REM sleep behavior disorder pathophysiology in brainstem-predominant Lewy body disease.

BACKGROUND AND PURPOSE: Rapid eye movement (REM) sleep behavior disorder (RBD) is a parasomnia reflecting changes in the brain, but which specific neuronal networks are involved in human RBD pathogenesis has not yet been determined. To date, only one case of idiopathic RBD has undergone autopsy, in which "incidental Lewy body disease" was found. Due to the severe neuronal loss and gliosis in the substantia nigra (SN) and locus ceruleus (LC) in this case, degeneration of brainstem monoaminergic neurons was postulated as the underlying substrate for RBD. Additional cases of idiopathic RBD with neuropathologic examination may help clarify which key brainstem structures are involved. PATIENT AND METHODS: Case report with neuropathologic analysis. RESULTS: A man with polysomnographically proven RBD (onset age 57 years), but no other neurologic signs or symptoms, underwent neuropathologic examination upon his death at age 72. Histopathologic analysis showed Lewy body disease, but no significant neuronal loss or gliosis was present in the SN or LC. CONCLUSIONS: This case represents another example of Lewy body disease associated with RBD. The minimal degenerative changes in the SN and LC call into question the role of these nuclei in RBD, at least in our case. We suggest additional cases of idiopathic RBD undergo neuropathologic analyses to better delineate the neurologic substrate of this intriguing parasomnia.

Aged↗

Involvement of vagal autonomic nuclei in multiple system atrophy and Lewy body disease.

BACKGROUND: Multiple system atrophy (MSA) and Lewy body disorders (LBDs) are associated with impaired control of gastrointestinal and cardiac functions. The dorsal vagal nucleus (DMV) innervates enteric neurons, whereas the ventrolateral nucleus ambiguus (NAmb) innervates the heart. The relationship between DMV and NAmb involvement and the gastrointestinal or cardiovagal manifestations in MSA and LBD is unclear. METHODS: The authors counted the cholinergic neurons in the DMV and NAmb in 15 cases of neuropathologically confirmed MSA, 14 of LBD (4 brainstem, 3 limbic, and 7 neocortical), and 12 control cases. All MSA and 8 of the 14 LBD cases had gastrointestinal symptoms; 8 of 12 MSA and 1 of 4 LBD cases had laboratory evidence of cardiovagal failure; 5 of the MSA and no LBD cases had laryngeal stridor. RESULTS: There was loss of cholinergic DMV neurons in all MSA and LBD cases. The degree of DMV cell loss was similar in LBD patient with or without gastrointestinal symptoms. In MSA but not in LBD cases, there was neuronal loss in the ventrolateral NAmb, with lower counts in patients with cardiovagal failure. CONCLUSIONS: There is comparable involvement of the dorsal vagal nucleus (DMV) in multiple system atrophy (MSA) and different stages of Lewy body disorders (LBDs). The relationship of DMV involvement and gastrointestinal symptoms is uncertain. Loss of neurons in the ventrolateral nucleus ambiguus may explain the more consistent cardiovagal failure in MSA than in LBD.

Aged↗

Pain-autonomic interactions.

There are extensive interactions between the neural structures involved in pain sensation and autonomic control. The insular and anterior cingulate cortices, amygdala, hypothalamus, periaqueductal grey, parabrachial nucleus, nucleus of the solitary tract, ventrolateral medulla and raphe nuclei receive converging nociceptive and visceral inputs from the spinal and trigeminal dorsal horns and initiate arousal, affective, autonomic, motor and pain modulatory responses to painful stimuli. This review will focus on some central pain-autonomic interactions potentially relevant for the pathophysiology of primary headache.

Autonomic Nervous System↗

A randomized controlled crossover trial of aspirin for fatigue in multiple sclerosis.

Pharmacotherapeutic options for multiple sclerosis (MS)-related fatigue are limited. Thirty patients were randomly assigned to aspirin (ASA) 1,300 mg/day or placebo in a double-blind crossover study. Results favored ASA for the main clinical outcomes: Modified Fatigue Impact Scale scores (p = 0.043) and treatment preference (p = 0.012). There were no significant adverse effects. The results warrant further study and support a role for ASA-influenced mechanisms, perhaps immunologic, in the generation of MS-related chronic fatigue.

Administration, Oral↗

Autonomic dysfunction in dementia with Lewy bodies.

OBJECTIVE: To assess autonomic function in patients with dementia with Lewy bodies (DLB). METHODS: The authors compared data from 20 DLB patients evaluated from 1995 to 2000 to 20 age-matched multiple system atrophy (MSA) and Parkinson disease (PD) patients evaluated from 1999 to 2002. Analysis of variance, Fisher exact test, and Student t-test were applied to compare disease characteristics, autonomic symptoms, and function tests on the Composite Autonomic Scoring Scale (CASS) and Thermoregulatory Sweat Test (TST). RESULTS: In DLB, mean age at onset of autonomic symptoms was 70.3 +/- 8.9 years. Orthostatic symptoms were common and orthostatic hypotension occurred in 10/20 DLB, 17/20 MSA, and 1/20 PD patients (p = 0.023, 0.003). CASS-sudomotor for DLB, MSA, and PD were 1.6 +/- 1.2, 2.5 +/- 0.7, and 0.9 +/- 0.8 (p < 0.00001). CASS-cardiovagal were 1.4 +/- 0.9, 2.1 +/- 0.8, and 0.7 +/- 0.6 (p < 0.00001). CASS-adrenergic function were 2.4 +/- 1.2, 3.5 +/- 0.9, and 0.5 +/- 0.6 (p < 0.00001). Total CASS were 5.2 +/- 2.0, 8.1 +/- 1.3, and 2.2 +/- 1.2 (p < 0.00001). The most common pattern of TST in DLB was distal anhidrosis. Mean duration of follow-up was 3.0 +/- 1.8 years. Six patients needed medication to maintain blood pressure and five had good response. CONCLUSIONS: Autonomic dysfunction is frequent in dementia with Lewy bodies and the severity is intermediate between that of multiple system atrophy and Parkinson disease.

Acetylcholine↗

Synucleinopathy pathology and REM sleep behavior disorder plus dementia or parkinsonism.

OBJECTIVE: To determine if synucleinopathy pathology is related to REM sleep behavior disorder (RBD) plus dementia or parkinsonism. METHODS: The clinical and neuropathologic findings were analyzed on all autopsied cases evaluated at Mayo Clinic Rochester from January 1990 to April 2002 who were diagnosed with RBD and a neurodegenerative disorder. Ubiquitin and/or alpha-synuclein immunocytochemistry was used in all cases. The clinical and neuropathologic diagnoses were based on published criteria. RESULTS: Fifteen cases were identified (14 men). All had clear histories of dream enactment behavior, and 10 had RBD confirmed by polysomnography. RBD preceded dementia or parkinsonism in 10 (66.7%) patients by a median of 10 (range 2 to 29) years. The clinical diagnoses included dementia with Lewy bodies (DLB) (n = 6); multiple-system atrophy (MSA) (n = 2); combined DLB, AD, and vascular dementia (n = 1); dementia (n = 1); dementia with parkinsonism (n = 1); PD (n = 1); PD with dementia (n = 1); dementia/parkinsonism/motor neuron disease (n = 1); and AD/Binswanger's disease (n = 1). The neuropathologic diagnoses were Lewy body disease (LBD) in 12 (neocortical in 11 and limbic in 1) and MSA in 3. Three also had argyrophilic grain pathology. In the LBD cases, concomitant AD pathology was present in six (one also with Binswanger's pathology, and one also with multiple subcortical infarcts). CONCLUSION: In the setting of degenerative dementia or parkinsonism, RBD often reflects an underlying synucleinopathy.

Age of Onset↗

Cardiovascular and respiratory consequences of bilateral involvement of the medullary intermediate reticular formation in syringobulbia.

We studied five patients with clinical and radiological evidence of syringobulbia (SB) to determine whether the distribution of lesions in relationship to the cardiorespiratory control networks in the medullary intermediate reticular zone (IRt) correlates with the presence of abnormalities in autonomic cardiovascular and respiratory control in these patients. All patients underwent high resolution MRI to characterize the size, volume and distribution of the SB lesions, cardiovascular autonomic function testing and polysomnography. One patient with bilateral IRt involvement at both the rostral and caudal medulla had orthostatic hypotension (OH), absent HR(DB), abnormal Valsalva ratio, exaggerated fall of BP during phase II and absent phase IV during VM, and a dramatic fall of BP during head up tilt; this patient also had severe obstructive sleep apnea (OSA) and exhibited BP drops during each respiratory effort. A second patient, with bilateral IRt involvement restricted to the caudal medulla, had less severe cardiovascular autonomic dysfunction but also exhibited severe OSA. The other three patients had small SB cavities sparing the IRt and had sleep apnea but no autonomic dysfunction. Autonomic dysfunction could not be related to the size of the syrinx or the degree of atrophy in the cervical spinal cord in any of the five patients. Bilateral involvement of the IRt by SB produces cardiovascular autonomic failure and sleep apnea. In patients with more restricted lesions, autonomic and respiratory dysfunction may be dissociated. Clinico-radiological correlations using high resolution MRI assessment of medullary lesions can provide insight into the central organization of cardiovascular and respiratory control in humans.

Adult↗

Depletion of cholinergic neurons of the medullary arcuate nucleus in multiple system atrophy.

The human arcuate nucleus (ArcN) has been considered akin to the pontine precerebellar nuclei. However, there is anatomical, functional, and clinical evidence that the ArcN may be the homologue of chemosensitive areas of the ventral medullary surface involved in ventilatory responses to hypercarbia and cerebrospinal fluid acidosis. Acetylcholine has been involved in mechanisms of central chemosensitivity. Loss of ArcN neurons has been reported in patients with multiple system atrophy (MSA), a disorder characterized by disturbed automatic ventilation, but the neurochemical identity of these neurons is undetermined. We sought to determine whether the ArcN contains cholinergic neurons and whether these neurons are depleted in patients with MSA. Medullae were obtained from six patients with MSA, five patients with Parkinson's disease (PD) and six sex- and age-matched controls. Fifty-micron transverse sections obtained through the mid-olivary levels were processed for acetylcholinesterase (AchE), choline acetyltransferase (CAT), and alpha-synuclein immunoreactivity. We found that the ArcN contained CAT-positive neurons. There was a significant decrease in density of cholinergic ArcN neurons in MSA but not in PD patients. alpha-Synuclein-containing inclusions were present in the ArcN of MSA patients. Depletion of cholinergic neurons may provide a substrate for disturbances in automatic respiration in MSA patients.

Aged↗

Depletion of corticotrophin-releasing factor neurons in the pontine micturition area in multiple system atrophy.

We sought to determine whether the putative pontine micturition center in the human dorsal pons contains corticotrophin-releasing factor (CRF) neurons, and whether these neurons are depleted in patients with multiple system atrophy and bladder dysfunction. Brains were obtained at autopsy from 4 control subjects and 4 patients with clinical diagnosis of multiple system atrophy, confirmed neuropathologically. Serial 50 microm cryostat sections were obtained throughout the rostral half of the pons, and every eighth section was processed for CRF immunocytochemistry (rabbit polyclonal antibody). Consecutive sections were stained for nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d) to identify neurons of the laterodorsal tegmental nucleus or for both CRF and NADPH. Locus ceruleus neurons were identified by their neuromelanin content. Abundant CRF immunoreactive neurons were identified in the dorsal pontine tegmentum just ventral to the locus ceruleus. CRF neurons were intermingled with, but distinct from, the NADPH-d-reactive neurons of the laterodorsal tegmental nucleus. In all multiple system atrophy cases, there was a severe depletion of these CRF-immunoreactive neurons (26.6 +/- 3 neurons/section in patients; 73.7 +/- 4 neurons/section in controls). Our results suggest that depletion of CRF neurons in the putative pontine micturition center may contribute to the severe bladder dysfunction that characterizes multiple system atrophy.

Aged↗

Pain-autonomic interactions: a selective review.

The nociceptive and the autonomic systems interact at the level of the periphery, spinal cord, brainstem, and forebrain. Spinal and visceral afferents provide converging information to spinothalamic neurons in the dorsal horn and to neurons of the nucleus tractus solitarius and parabrachial nuclei. These structures project to areas involved in reflex, homeostatic, and behavioral control of autonomic outflow, endocrine function, and nociception. These include monoaminergic cell groups of the medulla and pons, periaqueductal gray, hypothalamus, amygdala, insular cortex, and anterior cingulate gyrus. These interactions should be taken into account to understand the complex pathophysiology of chronic pain disorders.

Afferent Pathways↗

CRMP-5 neuronal autoantibody: marker of lung cancer and thymoma-related autoimmunity.

We have defined a new paraneoplastic immunoglobulin G (IgG) autoantibody specific for CRMP-5, a previously unknown 62-kd neuronal cytoplasmic protein of the collapsin response-mediator family. CRMP-5 is in adult central and peripheral neurons, including synapses, and in small-cell lung carcinomas. Since 1993, our Clinical Neuroimmunology Laboratory has detected CRMP-5-IgG in 121 patients among approximately 68,000 whose sera were submitted for standardized immunofluorescence screening because a subacute neurological presentation was suspected to be paraneoplastic. This makes CRMP-5 autoantibody as frequent as PCA-1 (anti-Yo) autoantibody, second only to ANNA-1 (anti-Hu). Clinical information, obtained for 116 patients, revealed multifocal neurological signs. Most remarkable were the high frequencies of chorea (11%) and cranial neuropathy (17%, including 10% loss of olfaction/taste, 7% optic neuropathy). Other common signs were peripheral neuropathy (47%), autonomic neuropathy (31%), cerebellar ataxia (26%), subacute dementia (25%), and neuromuscular junction disorders (12%). Spinal fluid was inflammatory in 86%, and CRMP-5-IgG in 37% equaled or significantly exceeded serum titers. Lung carcinoma (mostly limited small-cell) was found in 77% of patients; thymoma was in 6%. Half of those remaining had miscellaneous neoplasms; all but two were smokers. Serum IgG in all cases bound to recombinant CRMP-5 (predominantly N-terminal epitopes), but not to human CRMP-2 or CRMP-3.

Amino Acid Sequence↗

Involvement of the ventrolateral medulla in parkinsonism with autonomic failure.

OBJECTIVE: To determine whether patients with PD and autonomic failure (AF), manifested primarily with orthostatic hypotension (OH), have a consistent loss of tyrosine hydroxylase (TH) neurons in the rostral ventrolateral medulla (RVLM), similar to that occurring in patients with multiple system atrophy (MSA) and AF, and to determine whether there is loss of nicotinamide, adenine dinucleotide phosphate (NADPH) diaphorase (NADPH-d) RVLM neurons in both groups of patients. METHODS: The numbers of TH and NADPH-d neurons in the RVLM was assessed in brain sections obtained at autopsy from five patients with suspected PD and OH, six patients with MSA, two patients with corticobasal ganglionic degeneration and no AF, and 10 control subjects with no history of neurologic disease. Cell numbers were compared among groups and correlated with their final neuropathologic diagnosis. RESULTS: The number of TH neurons in the RVLM of patients with PD and OH were not significantly different from control subjects, and there were marked individual variations. The TH cell numbers in the RVLM were significantly higher (p < 0.06) in patients with PD than in patients with MSA, despite a similar degree of severity of OH. As a group, patients with PD and OH had reduced numbers of NADPH-d cells in the RVLM compared with control subjects, but again there were marked individual variations. NADPH-d cell numbers were reduced consistently and more markedly in patients with MSA. CONCLUSION: Unlike the case in patients with MSA, the number of TH neurons in the RVLM is highly variable in patients with PD and is unlikely to contribute significantly to the pathophysiology of OH. As a group, patients with PD have reduced numbers of NADPH-d neurons in the RVLM, but some patients had cell counts similar to control subjects. On the other hand, NADPH-d cell depletion in the RVLM is a consistent finding in MSA and may contribute to cardiorespiratory dysfunction in this disorder.

Aged↗

Leptin receptor immunoreactivity in sympathetic prevertebral ganglion neurons of mouse and rat.

Prevertebral ganglia, comprising the inferior mesenteric, superior mesenteric and celiac ganglia, contain the cell bodies of sympathetic neurons that regulate gastrointestinal motility, visceral blood flow, secretion and absorption. In the present study, we report the presence of leptin receptor-like immunoreactivity in the superior mesenteric and celiac ganglia of mice and rats. Ganglion neurons were immunopositive for leptin receptor. Confocal microscopy and three-dimensional (3-D) reconstruction of ganglion neurons filled with Lucifer yellow and then immunostained for leptin receptor showed that leptin receptor immunoreactivity was intracellular and that it was present on structures encircling the nucleus. These results raise the possibility that leptin may affect gastrointestinal function by acting on leptin receptors located in prevertebral ganglion neurons.

Animals↗

Intrinsic vasomotor innervation of blood vessels in human ventrolateral medulla.

Medullae were obtained at autopsy from seven patients with no neurologic disease, and sections were processed for tyrosine hydroxylase (TH), nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d), or both. Both TH- and NADPH-d reactive neurons had close anatomical relationship with penetrating blood vessels in the ventrolateral medulla (VLM). Three patterns were identified: 1) processes arising from a neighboring neuron reaching the blood vessel; 2) direct appositions of cell bodies to blood vessels; and 3) fibers coursing parallel to the blood vessels. This intrinsic innervation may provide a mechanism of coupling among local metabolism, sympathetic activity, and blood flow in the VLM.

Aged↗

Immunohistochemical localization of the angiotensin II type 1 receptor in human hypothalamus and brainstem.

We studied the distribution of the angiotensin II type 1 (AT-1) receptor using a polyclonal rabbit antibody in two human brains. AT-1 receptor immunoreactivity was detected in several hypothalamic nuclei, substantia nigra, locus coeruleus, nucleus tractus solitarius, ventrolateral medulla, pontine nuclei, and inferior olivary nucleus. This provides direct evidence of neuronal localization of the AT-1 receptor in autonomic and motor areas in human brain.

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↗

Paroxysmal sympathetic storms ("diencephalic seizures") after severe diffuse axonal head injury.

We describe a patient with a severe traumatic head injury who exhibited paroxysmal sympathetic storms, similar to those described in "diencephalic seizures." No epileptiform activity was evident on electroencephalography, and therapeutic levels of anticonvulsants failed to alter the spells; however, use of morphine sulfate abolished them. The features of this and several previously reported cases refute the primary roles of the diencephalon and seizures in this syndrome. Rather, in the setting of already compromised autonomic neuronal integrity, subtle fluctuations in intraventricular pressure or activation of reflexes triggered from muscle mechanoreceptors or chemoreceptors during episodes of hypertonia are more likely. "Paroxysmal sympathetic storms," a more appropriate descriptive term for these phenomena, should be recognized; thus, unnecessary diagnostic evaluations can be minimized, and appropriate therapy can be initiated.

Adolescent↗