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Biomedical subjects

H Mitsumoto

Publications and source records attributed to H Mitsumoto.

At least 19 recordsLinked to original sources

Perineurial cell hypertrophic mononeuropathy manifesting as carpal tunnel syndrome.

A 42-year-old man showed signs and symptoms suggestive of carpal-tunnel syndrome, but EMG showed an isolated motor axon-loss lesion affecting the right median nerve distally. After the MRI revealed a mass in the median nerve, surgical exploration showed a diffusely swollen median motor branch. Biopsy showed a lesion with marked onion-bulb formation composed of perineurial cells as identified by immunohistochemical analyses and electron microscopic examination. Although we previously coined the term "perineurioma" for this condition, re-reviews of our cases do not support the idea that the onion-bulb lesion is a benign tumor; instead, it appears to be reactive hyperplasia. Although rare, electromyographers and neurologists need to be aware of this problem because it is self-limited and does not require surgical resection.

Adult

Excitatory amino acid receptor antagonist in murine motoneuron disease (the wobbler mouse).

Recent evidence has suggested a potential role for involvement of excitatory amino acids (EAA) in the pathogenesis of the neuron loss in motoneuron diseases. We have examined the ability of an antagonist of N-methyl-D-aspartate (NMDA) receptors to halt or retard the progression of neurological symptoms in a murine form of motoneuron disease. The wobbler mouse is an autosomal recessive mutant which develops progressive neurological symptoms secondary to motoneuron loss. Treatment of wobbler mice with the NMDA receptor antagonist (+)-5-methyl-10,11-dihydro-5H-dibenzo(a,d)cyclohepten-5, 10-imine maleate (MK-801) did not retard neurological deterioration as assessed by a semiquantitative clinical scale. We conclude that NMDA receptor activation is probably not involved in the pathogenesis of motoneuron loss in the wobbler mouse.

Amyotrophic Lateral Sclerosis

The wobbler mouse: amino acid contents in brain and spinal cord.

Reductions in glutamate and aspartate contents, together with increased contents of taurine, have been observed in the autopsied brains and spinal cords of patients who have died with amyotrophic lateral sclerosis (ALS). The wobbler mouse develops an inherited degeneration of motoneurons within the brainstem and spinal cord, and has been proposed as an animal model of ALS. In symptomatic wobbler mice we found brain contents of glutamate, aspartate, and taurine similar to those in unaffected littermates, while brain contents of glutamine were increased, and those of serine and alanine were decreased. Spinal cords of wobbler mice had slightly decreased contents of glutamate, aspartate and glycine compared to normal littermates. Abnormalities of amino acid contents in the nervous system of wobbler mice are dissimilar to those in ALS patients suggesting a different pathogenesis of motoneuron loss.

Amino Acids

Sudden death and paroxysmal autonomic dysfunction in stiff-man syndrome.

Two women with typical stiff-man syndrome (SMS) developed increasingly frequent attacks of muscle spasms with severe paroxysmal autonomic dysfunctions such as transient hyperpyrexia, diaphoresis, tachypnea, tachycardia, pupillary dilation, and arterial hypertension. Autoantibodies to GABA-ergic neurons were identified in the serum of both patients and in the cerebrospinal fluid of one. Both died suddenly and unexpectedly. General autopsy did not reveal the cause of death. Neuropathological studies revealed perivascular gliosis in the spinal cord and brain stem of one patient and lymphocytic perivascular infiltration in the spinal cord, brain stem, and basal ganglia of the other. The occurrence of a chronic inflammatory reaction in one of the two patients supports the idea that an autoimmune disease against GABA-ergic neurons may be involved in SMS. A review of the literature indicates that functional impairment in SMS is severe and prognosis is unpredictable because of the potential for sudden and unexpected death. Both muscular abnormalities and autonomic dysfunctions may result from autoimmunity directed against GABA-ergic neurons.

Adult

Impairment of retrograde axonal transport in wobbler mouse motor neuron disease.

The earliest horseradish peroxidase (HRP) neuronal labeling (the fastest retrograde transport) was determined by histochemical techniques at various intervals after intramuscular HRP injection in wobbler mice and normal littermates. In the clinically impaired forelimb system, the retrograde transport rate was 150-170 mm/day in wobbler mice and 170-230 mm/day in controls. However, there was no statistical difference between the two groups. The neuronal HRP accumulation at the early intervals was significantly less in wobbler mice than controls, suggesting that the amount of HRP transport was diminished in each axon. For the clinically intact hindlimb nerves, the rate was normal in wobbler mice, but the amount of neuronal HRP was significantly increased. Retrograde axonal transport appeared to be affected in a differential fashion, depending on the extent of disease.

Animals

Hypertrophic mononeuritis clinically presenting with painful legs and moving toes.

A 40-year-old woman presented with progressive lower leg pain and spontaneous toe movement. The EMG showed a posterior tibial nerve mononeuropathy and continuous myokymic discharges in posterior tibial-innervated muscles. The MRI revealed a markedly enlarged posterior tibial nerve. Toe movements and myokymia were unaffected by the proximal transection of the lesion but ceased abruptly when the distal end of the fusiform "tumor" was resected, suggesting that spontaneous electrical foci may have been located along the nerve lesion. The markedly enlarged nerve segment contained edematous, swollen fascicles with marked Schwann cell onion-bulb lesions and angiocentric, lymphocytic, and lymphofollicular infiltration. This nerve lesion is an example of a newly recognized entity called hypertrophic mononeuritis.

Adult

Histometric characteristics and regenerative capacity in wobbler mouse motor neuron disease.

In wobbler mice, histometric features and the response to injury in the less affected hindlimb nerves were compared with the severely affected forelimb nerves which were studied previously. The frequency of vacuolated anterior horn cells was not different at the individual ages studied (3 and 6 weeks, 3 months), but with the three ages combined, the frequency in the two systems differed significantly, being 1.7 +/- 0.9% in the cervical and 0.6 +/- 0.7% in the lumbar anterior horns (P = 0.005). The number of large myelinated nerve fibres (greater than or equal to 6 microns in diameter) became progressively reduced in ventral roots as the disease advanced, particularly for the forelimb. The total number of myelinated axons was well preserved in the hindlimb ventral roots because of an increase in the number of small myelinated nerve fibres. The regenerative capacity of motor neurons after axotomy (tested by radiolabelling growth cones) was well preserved. In the hindlimb, the increased numbers of small myelinated fibres in ventral roots and the normal regenerative capacity in the sciatic nerve and its branches contrast with the severely affected forelimb system. Our studies suggest that cervical and lumbar anterior horn cells have different susceptibilities to the wobbler gene, producing vulnerability in one system and disease resistance in the other.

Animals

Fiber-type specific caffeine sensitivities in normal human skinned muscle fibers.

Caffeine sensitivity was studied in chemically skinned muscle fibers from vastus lateralis muscle obtained by biopsy during reconstructive knee surgery from 15 otherwise healthy young individuals. Muscle fiber type was determined by contracture occurring in strontium (slow-oxidative, type I fiber) or calcium (both type I and type II, fast glycolytic fiber) solutions and in several fibers after contracture testing by ATPase enzyme histochemistry. Caffeine sensitivity (mean +/- SD), defined as the threshold concentration inducing more than 10% of the maximal tension obtained with a calcium 3 x 10(-5) mM solution was 2.7 +/- 1.3 mM in 37 type I fibers, whereas it was 6.9 +/- 2.4 mM in 61 type II fibers. A paired t test showed a significantly increased sensitivity to caffeine in type I fibers (P less than 0.001) in 13 individuals in whom the two fiber types were identified. The mean (+/- SD) difference between type I and type II fibers was 4.1 +/- 1.9 mM. Type I fibers contracted with greater tension in response to the increasing concentration of caffeine than did type II fibers (P less than 0.05). These skinned fiber studies showed significantly different caffeine sensitivities between human type I and type II muscle fibers, as previously shown in animal muscles. The findings that human type I muscle fibers have higher caffeine sensitivity than type II muscle fibers should be helpful for the interpretation of the in vitro contracture test done in muscle strips containing type I and type II fibers in varying proportions.

Adenosine Triphosphatases

Ashkenazi-Jewish and non-Jewish adult GM2 gangliosidosis patients share a common genetic defect.

The adult form of Tay-Sachs disease, adult GM2 gangliosidosis, is an autosomal recessive neurological disorder caused by a partial deficiency of beta-hexosaminidase A. We had previously identified, in Ashkenazi-Jewish adult GM2 gangliosidosis patients, a Gly269----Ser mutation in the beta-hexosaminidase alpha-subunit. All of the Ashkenazi patients were found to be compound heterozygotes with an allele containing the Gly269----Ser mutation together with one of the Ashkenazi infantile Tay-Sachs alleles. We have now found the same Gly269----Ser mutation in six adult GM2 gangliosidosis patients from four different non-Jewish families. Genomic DNA from three of the patients, two of whom were brothers, exhibited a hybridization pattern consistent with homozygosity for the Gly269----Ser mutation. The remaining non-Jewish patients were compound heterozygotes of the Gly269----Ser mutation together with an unidentified alpha-subunit mutation. The results demonstrate that individuals homozygous for the Gly269----Ser change can be clinically affected. The same Gly269----Ser mutation in both the Ashkenazi and non-Jewish patients may be the result of a common ancestor, given that the ancestry of these non-Jewish patients, like the Ashkenazim, can be traced to eastern Europe.

Base Sequence

Amyotrophic lateral sclerosis. Recent advances in pathogenesis and therapeutic trials.

We reviewed the current status of pathogenesis and therapeutic trials in amyotrophic lateral sclerosis (ALS). Clinical studies have identified several rare but definable causes for apparent ALS. Certain clinical features previously considered unlikely to occur in ALS are found on careful examination. Epidemiologic surveillance and recent studies of neurotoxic plant seeds used in Guam have shed light on the pathogenesis of endemic ALS. Extensive analyses of biochemical, metabolic, immunologic, viral, and toxic factors have provided provocative results requiring further studies. Reflecting on some of these hypotheses, therapeutic trials have been performed more vigorously than ever. Amyotrophic lateral sclerosis is now investigated at the molecular genetic level. Human autopsy and experimental animal studies have expanded our understanding of basic mechanisms involving motoneuronal degeneration. In the future, we must continue a relentless search for the pathogenesis of ALS, prospective clinical studies to define the limits of ALS, and well-designed, controlled therapeutic trials.

Amyotrophic Lateral Sclerosis

Inclusion body myositis presenting as treatment-resistant polymyositis.

Inclusion body myositis (IBM) has been viewed as a distinct and rare form of inflammatory myopathy. Previously reported findings from series of IBM patients have suggested that clinical and pathologic features are present which readily distinguish it from idiopathic polymyositis. We report 4 cases of IBM presenting clinically and pathologically as polymyositis, each of which was refractory to therapy. Our data suggest that IBM may be a more common and heterogeneous form of inflammatory myopathy than has been previously suggested. Furthermore, IBM may be clinically and electrophysiologically indistinguishable from polymyositis. Reasons for failing to recognize IBM by pathologic studies appear to include: the skip lesion nature of the pathologic findings, failure to examine tissues by electron microscopy, and a low level of suspicion or lack of recognition. Because of its insidious clinical course and its failure to respond to immunosuppressive therapy, IBM may be an important variant of treatment-resistant polymyositis.

Adult

Chloroquine neuromyotoxicity. Clinical and pathologic perspective.

Six cases of toxic myopathy and/or neuropathy with chloroquine and/or hydroxychloroquine therapy are described. Two patients had unique clinical and pathologic evidence of cardiomyopathy secondary to chloroquine or hydroxychloroquine therapy. One patient had polyneuropathy secondary to chloroquine toxicity. This may be the first documentation of several features of chloroquine/hydroxychloroquine toxicity: morphologic changes in human peripheral nerve in chloroquine toxicity; chloroquine/hydroxychloroquine cardiomyopathy diagnosed by endomyocardial biopsy; and hydroxychloroquine myotoxicity. Chloroquine is a neuromyotoxin that affects nerves and cardiac and skeletal muscles. Discontinuation of chloroquine and hydroxychloroquine resulted in marked improvement in most cases. The reversibility of the symptoms emphasizes the importance of recognizing potential signs of nerve, muscle, and cardiac toxicity in patients being treated with chloroquine or hydroxychloroquine.

Aged

Thyrotropin-releasing hormone (TRH) in murine motor neuron disease (the wobbler mouse).

Clinical benefits of thyrotropin-releasing hormone (TRH) were tested in wobbler mice, an animal model of motor neuron disease. After the disease was clinically recognized at 3-4 weeks, the animals were divided into two groups, each group consisting of 5 pairs of wobbler mice and normal littermates. TRH (50 mg/kg) and normal saline (NS) were injected intraperitoneally daily, 6 times per week for 9 weeks, in a double-blind study. Weekly assessments consisted of front paw grip strength, push walking, body weight, and semiquantitative grading. At the end of the trial, the brain and spinal cord were sampled to measure TRH and cyclo (His-Pro) concentrations. Progression of motor neuron disease was evident in wobbler mice, regardless of treatment. Descriptive semiquantitative gradings showed the tendency of improvement in TRH-treated wobbler mice. In saline-injected controls, TRH levels in the cervical spinal cord were significantly increased (P less than 0.01) in wobbler mice compared to littermates. However, with TRH treatment, there was no significant difference in TRH and cyclo (His-Pro) levels in any neural tissue between wobbler and controls. The lack of clinical benefits with TRH in wobbler mice may be due to increased TRH levels found in diseased spinal cord in murine motor neuron disease.

Amyotrophic Lateral Sclerosis

Vacuolated anterior horn cells in wobbler mouse motor neuron disease: peripheral axons and regenerative capacity.

We investigated whether vacuolated cervical anterior horn cells of the wobbler mouse maintain axons to the periphery, and if these morphologically abnormal neurons are capable of supporting axonal regeneration. Using retrograde axonal transport, we applied horseradish peroxidase (HRP) to peripheral nerves or muscles and with electron microscopy sought evidence for perikaryal labeling in vacuolated neurons in 23 wobbler mice. When HRP was injected into forelimb muscles, 12 of 36 vacuolated neurons became positively labeled indicating that these neurons have axons in continuity with the periphery. In regeneration studies, after nerve crush at the brachial plexus, 23 out of 85 vacuolated neurons were labeled after HRP application at the elbow level. However, after a sufficient regeneration period, none of the 36 vacuolated neurons were labeled if HRP was applied in muscles below the elbow. In all experiments, morphologically normal neurons were always labeled. Our studies indicate that some vacuolated neurons of wobbler mice not only maintain axons into the periphery, but are also capable of supporting regeneration. However, the overall function of these vacuolated neurons appears marginal compared with the majority of morphologically normal neurons in this motor neuron disease.

Animals

Respiratory insufficiency in adult-onset acid maltase deficiency.

Although the adult form of acid maltase deficiency is characterized by weakness of the limb girdle muscles, weakness of the respiratory muscles out of proportion to that of the limb muscles may make the diagnosis less obvious. We present four patients aged 35 to 57 with respiratory muscle weakness associated with signs of cor pulmonale and symptoms of alveolar hypoventilation. Each had symptoms of fatigue, hypersomnolence, morning headache, and orthopnea, the cause of which was misdiagnosed. The key to diagnosis was paradoxic abdominal motion on inspiration. This finding, consistent with diaphragmatic paralysis, led to neurologic evaluation, electromyographic examination, and muscle biopsy to confirm the diagnosis. The symptoms of alveolar hypoventilation were reversed with chronic nocturnal ventilation, which assisted in rehabilitating some patients.

Adult