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Intrathecal immune response in patients with the post-polio syndrome.

BACKGROUND: The syndrome of progressive muscular atrophy decades after acute paralytic poliomyelitis (post-polio syndrome) is not well understood. The theory that physiologic changes and aging cause the new weakness does not explain the immunologic abnormalities reported in some patients. An alternative explanation is persistent or recurrent poliovirus infection. METHODS: We assessed the intrathecal antibody response to poliovirus and intrathecal production of interleukin-2 and soluble interleukin-2 receptors in 36 patients with the post-polio syndrome and 67 controls (including 13 who had had poliomyelitis but had no new symptoms and 18 with amyotrophic lateral sclerosis). Intrathecal antibody responses to measles, mumps, herpes simplex, and varicella zoster viruses were also determined. RESULTS: Oligoclonal IgM bands specific to poliovirus were detected in the cerebrospinal fluid of 21 of the 36 patients with the post-polio syndrome (58 percent) but in none of the control group (P less than 0.0001). In quantitative studies there was evidence of increased intrathecal synthesis of IgM antibodies to poliovirus only among the patients with the post-polio syndrome; there was no increased synthesis of IgM to measles, mumps, herpes simplex, or varicella zoster viruses. The patients with post-polio syndrome had significantly higher mean (+/- SD) (cerebrospinal fluid levels of interleukin-2 and soluble interleukin-2 receptors than the controls (8.1 +/- 5.3 vs. 1.4 +/- 0.8 U per milliliter and 159.6 +/- 102.9 vs. 10.7 +/- 6.2 U per milliliter, respectively). The intrathecal synthesis of IgM antibodies to poliovirus correlated with the cerebrospinal fluid concentrations of interleukin-2 (P less than 0.0005) and soluble interleukin-2 receptors (P less than 0.001). CONCLUSIONS: An intrathecal immune response against poliovirus is present in many patients with the post-polio syndrome. In some of these patients the recrudescence of muscle weakness may be caused by persistent or recurrent infection of neural cells with the poliovirus.

Adult↗

Transgenic mice for interleukin 3 develop motor neuron degeneration associated with autoimmune reaction against spinal cord motor neurons.

Interleukin 3 (IL-3) stimulates the proliferation and differentiation of various haematopoietic progenitor cells. Recently, IL-3 and other cytokines were reported to exert a neurotrophic activity and to be associated with neurological disorders, suggesting their complex role in the central nervous system. We now show that overexpression of IL-3 in transgenic mice causes a motor neuron disease with several features of amyotrophic lateral sclerosis and progressive muscular atrophy. These animals exhibit hind limb paralysis at 7 months of age, associated with dendritic and axonal degeneration, loss of motor neurons in the spinal cord, and autoimmune reaction against these cells. We examined the effect of IL-3 on embryonic motor neurons survival in mixed spinal cord cultures. Our results suggest that motor neuronal degeneration is not directly triggered by the high level of expression of IL-3.

Amyotrophic Lateral Sclerosis↗

Respiratory complications and their management in motor neuron disease.

Although respiratory insufficiency is common in the advanced stages of motor neuron disease, some patients may develop distressing respiratory symptoms early in the course of the disease or even present with respiratory failure or arrest. We describe 14 patients with motor neuron disease who were considered for respiratory support; 11 received such support and all derived significant symptomatic improvement without distressing prolongation of life. Of the 8 patients with typical features of amyotrophic lateral sclerosis, 7 had predominant diaphragm weakness and 1 generalized respiratory muscle weakness; 7 received negative pressure ventilation by cuirass which improved both the quality of sleep and exercise tolerance. Three patients with predominantly bulbar disease had nocturnal apnoea or hypoventilation. Two received no support. One, who also developed diaphragm weakness, was treated by a cuirass, continuous positive airway pressure (CPAP), and later nocturnal intermittent positive pressure ventilation (IPPV). Three patients with progressive muscular atrophy had predominant diaphragm weakness or nocturnal apnoea. These patients received nocturnal CPAP, cuirass or IPPV with symptomatic benefit. This series shows that some patients with motor neuron disease, mainly those with symptoms due to respiratory muscle weakness in the absence of severe bulbar impairment, derive symptomatic benefit from supported ventilation.

Adult↗

A mutation in periaxin is responsible for CMT4F, an autosomal recessive form of Charcot-Marie-Tooth disease.

Charcot-Marie-Tooth (CMT) disease is a heterogeneous group of inherited peripheral motor and sensory neuropathies characterized by chronic distal weakness with progressive muscular atrophy and sensory loss in the distal extremities. Inheritance can be autosomal dominant, X-linked or autosomal recessive (ARCMT). Recently, a locus responsible for a demyelinating form of ARCMT disease, named CMT4F, has been mapped on 19q13 in a large consanguineous Lebanese family. L- and S-periaxin are proteins of myelinating Schwann cells and homozygous periaxin-null mice display extensive demyelination of myelinated fibers in the peripheral nervous system, which suggests that the periaxin gene is a good candidate gene for an ARCMT disease. The human gene encoding the periaxins (PRX) was mapped to 19q13, in the CMT4F candidate interval. After characterizing the human PRX gene, we identified a nonsense R196X mutation in the Lebanese family which cosegregated with CMT. Histopathological and immunohistochemical analysis of a sural nerve biopsy of one patient revealed common features with the mouse mutant and the absence of L-periaxin from the myelin sheath. These data confirm the importance of the periaxin proteins to normal Schwann cell function and substantiate the utility of the periaxin-null mouse as a model of ARCMT disease.

Amino Acid Sequence↗

Homozygosity mapping of an autosomal recessive form of demyelinating Charcot-Marie-Tooth disease to chromosome 5q23-q33.

Charcot-Marie-Tooth (CMT) disease is the most frequent inherited peripheral motor and sensory neuropathy characterised by chronic distal weakness with progressive muscular atrophy and sensory loss of the distal extremities. The dominant form of the disease is genetically heterogeneous but only one locus has been identified on chromosome 8q13-q21.1 for autosomal recessive CMT. By homozygosity mapping in a large Algerian kindred, we have assigned a second locus for autosomal recessive CMT to chromosome 5q23-33. Linkage analysis demonstrated that the same locus is involved in a second Algerian family with a demyelinating CMT. Haplotype reconstruction and determination of the minimal region of homozygosity restricts the candidate region to a 4 cM interval.

Charcot-Marie-Tooth Disease↗

Quantitative study of synaptophysin immunoreactivity of cerebral cortex and spinal cord in motor neuron disease.

Synaptophysin immunoreactivity can be quantified by image analysis to evaluate loss of presynaptic terminals in human neurodegenerative diseases. The extent and regional distribution of such loss is reported in motor neuron disease (MND). Autopsy samples of spinal cord and cerebral cortex were examined from 28 cases of MND and 28 age and sex matched controls. The MND group included individuals with amyotrophic lateral sclerosis (17[ALS]), and progressive muscular atrophy (11[PMA]). In the spinal cord, there was significant reduction of presynaptic terminals in the lateral ventral horn (15%) in both the ALS (p < 0.01) and PMA (p < 0.05) groups. Perisomatic synaptophysin profiles on lower motor neurons are preserved late in the disease and are not related to corticospinal innervation. Less marked presynaptic loss was demonstrable more widely in the medial ventral, intermediate and dorsal spinal grey matter (10%) in both ALS (p = 0.03) and PMA (p = 0.05). In the cerebral cortex no synaptic loss was demonstrated in motor or anterior cingulate regions in any of the MND cases. Spinal degeneration in MND is associated with loss of presynaptic terminals in all grey matter regions. It is most marked in the limb motor neuron area and is independent of corticospinal tract degeneration. The cerebral pathology of ALS is not associated with significant loss of presynaptic terminals in the cortical areas studied.

Adult↗

An autopsy case of atypical motor neuron disease with Bunina bodies in the lower motor and subthalamic neurons.

We report a 37-year-old male without any family history of neurological disease who suffered progressive muscular atrophy and sensory impairment of 4 years' duration. Autopsy revealed neuronal loss in the anterior horns of the spinal cord and in the hypoglossal and facial nuclei of the brain stem. The corticospinal tracts of the spinal cord showed only mild degeneration. In addition, there were obvious degenerative lesions manifested by loss of neurons, myelin and axons in the spinal posterior columns, Clarke's column, spinocerebellar tracts and dorsal root ganglia as well as in the subthalamic nucleus, globus pallidus, substantia nigra and cerebellar dentate nucleus. Furthermore, we frequently encountered Bunina bodies not only in the lower motor neurons but also in the subthalamic neurons. We consider this case to be an atypical example of motor neuron disease with features of multisystem degeneration. The fact that Bunina bodies were observed in both lower motor and subthalamic neurons in this case suggests a common etiology of neuronal degeneration in these two different systems.

Adult↗

Amyotrophic lateral sclerosis in Finland. II: Clinical characteristics.

The clinical characteristics of ALS in Finland were investigated. The study was based on the hospital records of 255 patients. No correlation was found between the disease and other previous illnesses. Muscular weakness was the most frequent complaint of the patients as their first symptom (149/255, i.e. 58 per cent). The duration of the disease was shortest (1.9 years) in male cases with the first symptoms in the bulbar area, and it was longest (3.4 years) in females with a spinal onset of the symptoms. The duration of the disease was in inverse relation to the age when it was contracted. Progressive muscular atrophy with fasciculations was considered the most important clinical sign of ALS. It was most frequently observed in the upper extremities including shoulders. Sensory disturbances were absent, sphincter abnormalities were reported in only three cases, bed sores did not exist, and there were no reports of impotence in the male patients. Two families with two familial cases in each were found, altogether two men and two women. Their disease did not differ from that of the rest of the series. The ALS patients soon became too disabled to work; 56 per cent bacame permanently disabled in less than 1 year's time, and only 9 per cent retained their working capacity for more than 2 years. The average length of stay at hospital was 32 days for ALS and 37 days for MS patients, but the later group was hospitalized 2-3 times more frequently than the former. Gastrostomy or tracheostomy and artificial respiration did not lenghten the lives of the patients.

Adult↗

Motor neuron disease in the Province of Turin, Italy, 1971-1980.

The incidence and prevalence of motor neuron disease (MND) in the Province of Turin, North-West Italy, were investigated for the period 1971-1980. The crude incidence rate of MND was 0.67/100,000/year. The annual incidence rate, age and sex adjusted to the Italian population in 1971 was 0.69 cases per 100,000 inhabitants, 0.94 for men and 0.45 for women, with a male to female incidence ratio of 2.09:1. The prevalence of MND was 2.62/100,000, 3.57 for males and 1.71 for females. The mean age at the time of diagnosis was 55.6 years. Annual incidence rates increased with advancing age. Amyotrophic lateral sclerosis was found to be 4 times more frequent than progressive muscular atrophy (0.53/100,000/year v. 0.14/100,000/year). The distribution of MND was uneven in the Province suggesting a proportional relationship to the distribution of population density. Possible explanations of this finding are discussed.

Age Factors↗

Central motor conduction in cerebrovascular disease and motor neuron disease.

Conduction in the central motor pathways was studied in 9 patients with cerebrovascular disease (CVD), 13 with amyotrophic lateral sclerosis (ALS) and 3 with spinal progressive muscular atrophy (SPMA). Motor responses evoked in the limb by cortical, cervical and lumbar stimulations were recorded. The central conduction time (CCT) was calculated for each muscle. In patients with CVD, responses to cortical stimulation were unobtainable or delayed in the paretic limb muscles. In patients with ALS the abnormality of central motor conduction had significant correlation with the extensor plantar response. The CCTs were normal in patients with SPMA. This technique demonstrated a subclinical lesion in some patients. We conclude that the new technique of examining motor conduction along the corticospinal tract may be useful to detect a subclinical lesion in the corticospinal tract.

Amyotrophic Lateral Sclerosis↗

Immunosuppressive treatment of patients with amyotrophic lateral sclerosis.

Documented treatment for amyotrophic lateral sclerosis (ALS) is not available. Several studies have suggested an immunological etiology and an effect on the course of disease, when ALS-patients were treated with immunosuppressants. The aim of the present study was to evaluate the effect of immunosuppressive therapy in ALS-patients comparing the course of disease in treated patients and in historic controls with ALS; 21 patients were included in the study, 17 men and 4 women. Median age at admission was 54 years for men and 61 years for women. 5 had progressive bulbar palsy, 7 both upper and lower motor neuron affections and 9 progressive muscular atrophy. Patients were treated with prednisolone and azathioprine for 1 year and examined regularly; 12 were treated and followed for more than a year. No definite difference between survival in treated patients and their controls was found.

Administration, Oral↗

Prior poliomyelitis: an immunohistochemical study of cytoskeletal proteins and a marker for muscle fibre regeneration in relation to usage of remaining motor units.

Patients with prior poliomyelitis with paresis and excessive use (n = 8) and low use (n = 6) of residual anterior tibial motor units (MUs) during walking were subjected to muscle biopsy of the anterior tibial muscle (TA). Antibodies directed against cytoskeletal proteins, spectrin and desmin, and against Leu-19, a myoblast and satellite cell related antigen, were applied. In the patients with excessive use of residual MUs there was an almost total predominance of hypertrophic type I fibres. In the hypertrophic fibres, staining for spectrin and desmin was normal while staining for Leu-19 was seen in a few fibres. Scattered atrophic fibres seen in the patients with excessive use showed staining for spectrin, desmin and Leu-19. In the patients with low use of residual MUs there were extensive pathological muscle fibre changes. Increased staining for spectrin, desmin and Leu-19 was found in most of the atrophic fibres. The predominance of type I fibres in the patients with excessive use of residual MUs is suggested to be due to muscle fibre transformation. The normal staining pattern for spectrin and desmin in the hypertrophic fibres indicates a normal cytoskeletal structure which might suggest that the adaptive muscle fibre changes are adequate to meet the increased demand. The increased staining for spectrin, desmin and Leu-19 in the atrophic fibres might indicate an ongoing denervation process which earlier has been suggested as an important factor for the development of postpolio progressive muscular atrophy.

Adult↗

A quantitative electrophysiological study of motor neurone disease.

Thirty-two patients with motor neurone disease were investigated using quantitative electrophysiological techniques. Estimates of the number of surviving motor units in the extensor digitorum brevis muscle and measurements of the electrophysiological parameters of these units are present along with the values for motor nerve conduction velocities. The results indicate that reinnervation in motor neurone disease is sufficient to compensate completely for the loss of up to 50% of the motor neurone pool supplying the muscle. The capacity for reinnervation is greater than we have found in a number of neuropathies but the efficiency of reinnervation decreases as the number of surviving motor units falls. Reinnervation appears to cease when 5% or less of the motor units remain viable. There is no electrophysiological evidence of a preferential loss of fast conducting axons, of pathological slowing of conduction nor of a dying-back process affecting the motor axon. Comparison of the electrophysiological parameters in progressive muscular atrophy and amyotrophic lateral sclerosis shows no significant differences. The underlying pathophysiological mechanisms are discussed in terms of the results.

Adult↗

Stapedial reflex in amyotrophic lateral sclerosis.

OBJECTIVE: To examine mechanisms controlling the stapedial reflex in patients with amyotrophic sclerosis (ALS). METHODS: The stapedial reflex was examined using impedance audiometry in 38 patients with sporadic ALS and in 25 age matched controls. RESULTS: All patients showed normal reflex decay test results. There were no significant differences between patients with ALS and control subjects in reflex threshold, latency, amplitude, or contraction time (C50). Although each reflex variable in the patients with classic or progressive muscular atrophy types of ALS showed no significant difference from that in control subjects, the patients with bulbar type ALS showed significantly longer latency, C50, and retraction time (D50), and significantly lower amplitude than control subjects. Three types of abnormal reflex waveforms (polyphasic, abnormally delayed retraction, and abnormally early retraction) were noted in six patients. CONCLUSION: The subclinical involvement of the stapedius motor neurons or of the supranuclear stapedius motor system might be responsible for the abnormalities of the stapedial reflex in ALS.

Acoustic Impedance Tests↗

Objective tests for upper motor neuron involvement in amyotrophic lateral sclerosis (ALS).

OBJECTIVE: To develop objective markers for upper motor neuron (UMN) involvement in ALS, the value of single-voxel MR spectroscopy (MRS) and transcranial magnetic stimulation (TMS) was studied. METHODS: Test results of 164 ALS patients who had MRS only (n = 91), TMS only (n = 13), or both (n = 60) were analyzed; also, 11 autopsy examinations were evaluated. RESULTS: Abnormal test results consistent with UMN involvement were found in 134 patients with clinical UMN signs: 86% on MRS, 77% on TMS, and 70% on MRS and TMS together. Among 30 patients with solely LMN signs (progressive muscular atrophy), UMN results were found in 63% on MRS, 63% on TMS, and 46% on both tests together. There was a significant association of the degree of abnormal N-acetyl aspartate/creatine ratios with UMN signs (p = 0.01). The sensitivity to detect UMN involvement was 0.86 for MRS (specificity 0.37) and 0.77 for TMS (specificity 0.38). At autopsy, all 11 patients had pathologic UMN abnormalities, including 4 with normal MRS and 1 with normal TMS in life. CONCLUSIONS: MRS is highly sensitive, somewhat more than TMS, and shows good correlation with clinical UMN signs. Combining MRS and TMS results in the same patient with further refinement may help in the early diagnosis of ALS.

Amyotrophic Lateral Sclerosis↗

Predicting the duration of Guam amyotrophic lateral sclerosis.

During the years of study of amyotrophic lateral sclerosis on Guam we have observed a wide range in clinical signs and rate of progression of the disease. Some patients died within 6 months of onset, while others have lived for 20 years. It was our assumption that some aspects of the early neurologic involvement would be related to length of survival, and hence be of prognostic value. We found that an early age at onset and male sex were associated with longer survival. The detailed analysis of degree of involvement of four major neurologic components of amyotrophic lateral sclerosis (progressive muscular atrophy, lateral sclerosis, bulbar paralysis, and pseudobulbar palsy) showed no meaningful pattern of association with duration of illness that could be useful in predicting the course.

Adult↗

Morphologic changes in the muscles of patients with postpoliomyelitis neuromuscular symptoms.

Thirty-five muscle biopsies were performed on 27 patients with postpoliomyelitis progressive muscular atrophy (PPMA) (8 patients had two biopsies) and 5 asymptomatic postpolio patients in an attempt to define diagnostic criteria for the newly weakening muscles and to provide insights into the mechanism of the disease. PPMA muscles that had been left weak since the original illness showed a mixture of myopathy with new and old denervation including group atrophy and nuclear clumps. Fully recovered or originally spared PPMA muscles showed signs of reinnervation and recent denervation. Perivascular or interstitial inflammatory cells (predominantly lymphocytes unrelated to phagocytosis) were noted in 40% of all the PPMA biopsies. It is concluded that (1) postpolio muscle biopsies show a spectrum of morphologic changes that depend on whether the biopsied muscle was originally affected and had fully or partially recovered, (2) the newly weakened muscles show signs of recent denervation, and (3) the presence of reinnervation in the asymptomatic muscles and the patterns of recent and old denervation in PPMA muscles provide information regarding the degree of compensation of the surviving motor neurons and their apparent failure for further reinnervation via axonal sprouting.

Adult↗

Risk factors associated with equine motor neuron disease: a possible model for human MND.

Equine motor neuron disease (EMND), a newly described neurodegenerative disease, bears a striking resemblance to progressive muscular atrophy (PMA) in humans. We present a comparison of the equine and human diseases and the results of a case-control study conducted to identify intrinsic factors associated with EMND. Cases included all horses with a confirmed diagnosis of EMND diagnosed in the United States since 1985 (32 cases). Controls included horses diagnosed with either cervical stenotic myelopathy, equine degenerative myeloencephalopathy, or protozoan myelitis at the Veterinary Teaching Hospital at the College of Veterinary Medicine, Cornell University (153 controls). Logistic regression analysis identified factors associated with the risk of EMND. Risk factors considered were age, sex, and breed of the horse. Most cases of EMND (30 of 32) have been sporadic. There was a breed association with the risk of EMND. Quarter horses were at a high risk for developing EMND (odds ratio [OR] = 12.7; 95% confidence interval, 3.3 to 49.6); thoroughbred horses were at increased risk (OR = 2.9, 0.8 to 10.4). There was also an age association with the risk of EMND. The risk increased with age, peaked at 16 years, and then declined, a pattern similar to that for amyotrophic lateral sclerosis in humans. There was no sex association with the disease. Despite the breed association, equine lymphocyte antigen studies have not revealed a systematic pattern, suggesting that genetic factors influencing susceptibility to EMND may be outside the major histocompatibility complex.

Animals↗