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X-linked spinal and bulbar muscular atrophy without proximal atrophy.

We report on a case of genetically proven X-linked spinal and bulbar muscular atrophy (X-SBMA) with prominent distal muscle atrophy and without proximal muscle involvement. The patient was a 35-year-old man who had a history of slow progressive hand and distal leg muscle weakness and wasting for 10 years. Motor nerve conduction velocities were normal with reduced compound muscle action potential amplitudes of hand and foot muscles. Sensory action potential amplitudes were small. Needle EMG revealed a chronic partial denervation with reduced interference in hand and distal leg muscles but with normal heading in all tested proximal muscles. Genetic studied showed an expansion of CAG repeat in the first exon of the androgen receptor gene, which suggests diagnosis of X-SBMA. The importance of genetic studies in this patient with unusual clinical presentation is emphasized.

Adult↗

Somatic mosaicism of the expanded CAG trinucleotide repeat in mRNAs for the responsible gene of Machado-Joseph disease (MJD), dentatorubral-pallidoluysian atrophy (DRPLA), and spinal and bulbar muscular atrophy (SBMA).

The CAG trinucleotide repeats in mRNAs for the responsible genes of Machado-Joseph disease (MJD), dentatorubral-pallidoluysian atrophy (DRPLA), and X-linked spinal and bulbal muscular atrophy (SBMA) were examined in various neural and nonneural tissues of affected individuals. The tissue-specific variation of expanded CAG repeat alleles were apparent for mRNAs of all three genes. The expanded CAG repeats of the mRNA were shorter in the cerebellum than in other regions of the central nervous system in DRPLA and MJD, but not in SBMA, and were longer in the liver and colon in MJD. Transcripts of the responsible genes with expanded CAG repeats were detected in all tissues studied, and the tissue-specific variation in the CAG repeat size of the mRNA did not correlate with the tissue-specific severity of pathological involvement in these diseases.

Adult↗

[Striatonigral degeneration and sporadic olivopontocerebellar atrophy: a consideration of the clinical entity of multiple system atrophy].

Striatonigral degeneration (SND) and sporadic olivopontocerebellar atrophy (sOPCA) are categorized under multiple system atrophy (MSA), since these disorders have common clinical and pathological features. However, it is still uncertain whether these disorders are manifestation of the same disease. In this study, we performed both clinical and neuroradiological studies on patients with SND or sOPCA in whom clinical diagnosis was based on a criteria during eight years in our hospital. A total of forty patients had SND and thirty-one patients had sOPCA. The onset ages of patients with SND (60.7 +/- 8.7, mean +/- SD) were significantly higher than those with sOPCA (55.4 +/- 7.9). In both SND and sOPCA patients, about 20% had clinical symptoms suggesting the involvement of multiple systems: pyramidal, cerebellar, extrapyramidal and autonomic symptoms. In 55% of the SND patients, cerebellar symptoms could be observed, and the same percentage of sOPCA patients had parkinsonism. Although, as defined, cerebellar symptoms were predominant in sOPCA patients and parkinsonism was predominant in SND patients, the SND patient group was particularly homogeneous with respect to clinical characteristics. The initial symptoms of SND were parkinsonian gait or tremors. Almost all patients exhibited asymmetrical appearance of the parkinsonian symptoms, such as rigidity, tremors, and bradykinesia. Tremors at rest were observed in two-thirds of the patients with SND during the course of their illness, but dementia was infrequently observed. There was no detectable limitation in horizontal eye movements in patients with SND. The progression of the disability of patients with SND was rapid; according to the clinical rating scale of parkinsonism, the average level of disability deteriorated to Hoehn-Yahr's stage III after three years from disease onset, and then deteriorated to stage IV after four years. Neuroradiologically, only a small proportion of patients with SND (27%) showed magnetic resonance image (MRI) findings suggesting OPCA pathology, such as volume loss in the brainstem or cerebellum with/without T2-high signaling of transverse fibers of pons or T2-high signaling of the middle cerebellar peduncle. Simultaneously, a small proportion of the patients with sOPCA (20%) showed MRI findings suggesting putaminal pathology, such as T2-low intensity signals of the putamen with linear T2-high intensity signals around the lateral putamen. Our results suggest that SND and sOPCA can be clearly differentiated, at least from clinical or neuroradiological aspects. Since there is still no evidence indicating that each disorder is a clinical variant of a single disease caused by the same etiology, a differentiation might be important for future pathogenetical studies.

Adult↗

[DIDMOAD syndrome (diabetes insipidus, diabetes mellitus, optic atrophy, deafness) with cerebello-pontine atrophy].

The case is reported of a 32-year old women of Dutch origin who presented with diabetes insipidus, diabetes mellitus, atrophy of the optic nerve, and dilatation of the urinary tract, the combination known as "DIDMOAD syndrome". Unusual features of this case were regional atrophy of the cerebellum and the pons, and hydrocephalus internus which were associated with alterations of personality and mental function. The clinical symptoms of the syndrome simulated "essential" type 1 diabetes with advanced complications such as retinopathy and autonomous and peripheral neuropathy. The presence of diabetes insipidus with polyuria and polydipsia was not recognized for years because the symptoms were ascribed to diabetes mellitus. The neurologic and psychological symptoms in this patient suggest a more generalized defect of the central nervous system in this syndrome than has been observed previously. Recognition of the condition is of importance because it requires specific therapeutic measures (e.g. for diabetes insipidus), and because of the genetic and prognostic implications.

Adult↗

Dominantly inherited cerebello-olivary atrophy is not due to a mutation at the spinocerebellar ataxia-I, Machado-Joseph disease, or Dentato-Rubro-Pallido-Luysian atrophy locus.

The dominantly inherited ataxias are characterized both by phenotypic variability (phenotypic heterogeneity) within the same genotype and overlapping phenotypes from different genotypes (genotypic heterogeneity). Therefore it is important to characterize specific clinical-neuropathologic phenotypes as precisely as possible at the genetic level. We describe a family with dominantly inherited ataxia of late adult onset with relatively "pure" cerebellar signs. Neuropathologic examination in two individuals from this family revealed findings consistent with cerebello-olivary atrophy, suggesting that this neuropathologic phenotype many run true within f families. Mutations at the spinocerebellar ataxia-I, Machado-Joseph disease, and dentatorubropallidoluysian atrophy loci were excluded by direct DNA analysis on the leukocytes of one living affected member. Thus we provide evidence that these mutations are not responsible for this particular phenotype of dominantly inherited ataxia.

Adult↗

Argyrophilic ubiquitinated cytoplasmic inclusions of Leu-7-positive glial cells in olivopontocerebellar atrophy (multiple system atrophy).

We described cytoplasmic inclusions in glial cells in 18 patients with olivopontocerebellar atrophy (OPCA) (multiple system atrophy, MSA). These glial inclusions showed intense argyrophilia with modified Bielschowsky's and Bodian's silver impregnation techniques, and were observed in the pons, cerebellar white matter, midbrain, medulla oblongata and basal ganglia, as well as cerebral white matter and spinal cord. None of the 54 control cases had glial argyrophilic inclusions. Immunohistochemically, these inclusions were intensely labeled by anti-ubiquitin antibody. Some of them reacted with an antibody to Rosenthal fiber (RF) protein. The cytoplasm of ubiquitinated inclusion-bearing glial cells was immunostained by anti-Leu-7 antibody, but not by anti-GFAP antibody. Ultrastructurally, the glial inclusions were composed primarily of approximately 24- to 40-nm fibrils, which were coated with osmiophilic granular material along their length in longitudinal section. These fibrils appeared as annuli in cross section. Often, a central granule approximately 5 nm in diameter was seen in the lucent lumen of a cross-sectioned fibril. The granule-coated fibrils were not seen in the glial filament-containing astrocytes. Electron microscopic examination of silver-impregnated specimens revealed that the granule-coated fibrils had strong affinity for silver. Immunoelectron microscopy using the indirect immunoperoxidase techniques with antibodies to ubiquitin and RF protein revealed that the electron-dense reaction products respective to both were located on constituents of glial inclusions. Our observation that Leu-7-positive glial cells, mainly oligodendroglial cells, had argyrophilic ubiquitinated inclusions may be of significance for the evaluation of the pathology of OPCA(MSA).

Adult↗

An autopsy case of early ("minimal change") olivopontocerebellar atrophy (multiple system atrophy-cerebellar).

We report a 57-year-old woman with multiple system atrophy (MSA) of 15-month duration. The patient developed dysarthria, followed by impaired balance of gait, mild limb ataxia, and saccadic eye movement. A postmortem examination performed after she was found dead in a bathtub revealed neuronal loss restricted to the olivopontocerebellar system, being more severe in the pontine nucleus. Mild neuronal loss was also found in the anterior vermis and inferior olivary nucleus. Alpha-synuclein immunohistochemistry demonstrated widespread occurrence of glial cytoplasmic inclusions in the central nervous system, which were more numerous in the pontine base and cerebellar white matter. In contrast, neuronal alpha-synuclein accumulation was confined to the pontine and inferior olivary nuclei. The number of neuronal intranuclear inclusions was much higher than that of neuronal cytoplasmic inclusions. Moreover, alpha-synuclein accumulation was more severe in the neurites than in the cytoplasm or nucleus. This case demonstrates the early pattern of brain pathology in MSA-cerebellar (olivopontocerebellar atrophy).

Brain↗

Congenital olivopontocerebellar atrophy: report of two siblings with paleo- and neocerebellar atrophy.

We report two sisters with congenital olivopontocerebellar atrophy, including immunohistochemical studies of autopsy brain tissue. Both cases showed microcephaly with disproportionately marked hypoplasia of the posterior fossa structures including pons, inferior olivary nuclei, and cerebellum. Microscopically, the pons was atrophic with near total loss of pontine nuclei and transverse pontocerebellar tracts (inferior and middle cerebellar peduncles). The medulla showed absent inferior olivary and arcuate nuclei. The cerebellum showed hypoplasia with rudimentary dentate nuclei, profound loss of Purkinje cells and external granule cell layer, a sparse internal granule cell layer of the entire dorsal vermis and the dorsal portions of the lateral folia, as well as markedly reduced underlying axon fibers in the white matter with marked astrogliosis. These features were highlighted by immunohistochemical study using antibodies against Purkinje cell epitopes, synaptophysin, neurofilament, glial fibrillary acidic protein, and tuberin. The cerebral hemispheres were unremarkable. Our cases are characterized by a pattern of diffuse posterior cerebellar involvement that has rarely been described in previous reports. An autosomal recessive pattern of inheritance is suggested. The abnormalities may result from antenatal degeneration or atrophy of neurons in the involved sites rather than hypoplasia or developmental arrest starting in the second and third month of late embryonic life.

Biomarkers↗

Glial cytoplasmic inclusions in the CNS of patients with multiple system atrophy (striatonigral degeneration, olivopontocerebellar atrophy and Shy-Drager syndrome).

Glial cytoplasmic inclusions (GCIs) were demonstrated by silver staining, immunocytochemistry and by electron microscopy in the central nervous system (CNS) of 11 patients with various combinations of striatonigral degeneration, olivopontocerebellar atrophy and Shy-Drager syndrome. Although their configuration in light microscope can sometimes resemble neurofibrillary tangles, their cellular localisation, measurements, ultrastructure, immunocytochemical characteristics and regional distribution all differ from these Alzheimer type changes. The majority of GCIs were localized in the white matter and appeared to be accompanied by an increase in the number of interfascicular oligodendroglial cells and pallor or loss of myelin staining. Our histological, ultrastructural and immunocytochemical findings all indicate that the cells which contain GCIs are oligodendrocytes and the inclusions themselves are composed of tubular structures. The presence of the until now unknown GCIs in all the 11 CNS, but not in age- and sex-matched control brains, indicates that GCI is a cellular change characteristic of multiple system atrophy and the three syndromes are various manifestations of the same disease.

Adult↗

Type III 3-methylglutaconic aciduria (optic atrophy plus syndrome, or Costeff optic atrophy syndrome): identification of the OPA3 gene and its founder mutation in Iraqi Jews.

Type III 3-methylglutaconic aciduria (MGA) (MIM 258501) is a neuro-ophthalmologic syndrome that consists of early-onset bilateral optic atrophy and later-onset spasticity, extrapyramidal dysfunction, and cognitive deficit. Urinary excretion of 3-methylglutaconic acid and of 3-methylglutaric acid is increased. The disorder has been reported in approximately 40 patients of Iraqi Jewish origin, allowing the mapping of the disease to chromosome 19q13.2-q13.3, by linkage analysis. To isolate the causative gene, OPA3, we sequenced four genes within the critical interval and identified, in the intronic sequence of a gene corresponding to cDNA clone FLJ22187, a point mutation that segregated with the type III MGA phenotype. The FLJ22187-cDNA clone, which we identified as the OPA3 gene, consists of two exons and encodes a peptide of 179 amino acid residues. Northern blot analysis revealed a primary transcript of approximately 5.0 kb that was ubiquitously expressed, most prominently in skeletal muscle and kidney. Within the brain, the cerebral cortex, the medulla, the cerebellum, and the frontal lobe, compared to other parts of the brain, had slightly increased expression. The intronic G-->C mutation abolished mRNA expression in fibroblasts from affected patients and was detected in 8 of 85 anonymous Israeli individuals of Iraqi Jewish origin. Milder mutations in OPA3 should be sought in patients with optic atrophy with later onset, even in the absence of additional neurological abnormalities.

Amino Acid Sequence↗

Familial optic atrophy with sex-influenced severity. A new variety of autosomal-dominant optic atrophy?

A family is described with 20 members in three successive generations affected by optic atrophy without other ocular or extraocular manifestations. The anomaly was transmitted as an autosomal-dominant character. There was a clearly bimodal distribution of severity: 4 male patients complained of severe impairment of vision since childhood while 16 other subjects (7 males and 9 females) were completely asymptomatic. This family could be an example of a new variety of autosomal dominant optic atrophy characterized by sex-influenced severity.

Adolescent↗

Thymic atrophy in type 2 reovirus infected mice: immunosuppression and effects of thymic hormone. Thymic atrophy caused by reo-2.

Suckling mice infected with reovirus type 2 showed a thymic atrophy followed by a marked suppression of the antibody, production to SRBC (a T cell dependent antigen) and bacterial LPS, when measured by the splenic PFC assay. The PFCs produced were sometimes less than 1% of uninfected control animals. Histologically the thymus was usually smaller than normal, and atrophy of the cortex and increased number of Hassal's bodies were observed. Number of nucleated cells in the thymus of infected mice showed 90% decrease as compared to uninfected mice. The spleen, although larger in size, showed depletion of lymphocytes from the thymus-dependent and follicular areas. No viral replication was detected in lymphatic organs using virological methods. Virus-infected mice transferred with the splenocytes or thymocytes from age-matched uninfected mice restored the antibody production against SRBC to normal levels. Thymocytes were more efficient than splenocytes in enhancing the antibody production in virus-infected mice. Injection of several different kinds of immunopotentiating agents enhanced the antibody production to SRBC, although LPS exacerbated the unresponsiveness. Thymic hormones such as FTS and TP5 enhanced antibody production to SRBC and LPS more efficiently than MDP. Flow cytometric analysis showed that percentage of CD4+ single positive cells was slightly increased in virus-infected mice treated with FTS, while there was no difference in the phenotypic distributions of thymocyte subpopulations among virus-infected mice, FTS-untreated and FTS-treated normal mice.

Age Factors↗

[Alternative treatment forms used by patients with muscular atrophy. A questionnaire study of the use of alternative treatment by 345 patients with muscular atrophy].

An investigation about the use of alternative treatment by a group of persons with muscular atrophy revealed that 24% had employed alternative treatment during the period 1.1.1983-1.4.1986. This is probably a greater proportion than in the Danish population as a whole. Patients with muscular atrophy were subdivided into three groups on the basis of their ability to function in daily life. No significant connection was found between the degree of loss of function and alternative treatment as regards the frequencies of alternative treatment and the numbers of treatments employed. A given form form of treatment was most frequently recommended by an unaffected acquaintance. Physical forms of treatment such as zone therapy and chiropractics were employed more frequently than chemical forms of therapy. Less than half of the patients were satisfied with the results of treatment. Treatment was often concluded in a negative manner. Patients considered that, in contrast to the alternative therapist, the doctor performs the best and most thorough examination and provides them with the best information about their condition.

Adolescent↗

[Neuropathological background of spinocerebellar degeneration--with special reference to autonomic nervous system lesions in olivopontocerebellar atrophy, Shy-Drager syndrome and multiple system atrophy].

For elucidation of actual status of olivopontocerebellar atrophy (OPCA) in nosological relation to Shy-Drager syndrome (SDS) and multiple system atrophy (MSA), neuropathological examination with morphometric survey on the intermediolateral column of the spinal cord was performed. The materials were 13 cases registered in our laboratory. Clinically, they consisted of 9 sporadic OPCA including 2 cases with prominent autonomic failure, and 4 hereditary spinocerebellar degeneration. In the autonomic nervous system of CNS, degeneration of the intermediolateral column was found in the sporadic cases without exception, irrespective of presence or absence of orthostatic hypotension, while the hereditary cases showed neither orthostatic hypotension nor neuronal loss in the nucleus. The autonomic centers in the brain-stem and cerebellum were systematically affected in both the sporadic and the hereditary cases. It was particularly remarked that the fastigial nucleus, tractus and nucleus solitarius, which have been suggested to be related to cardiovascular control, was severely affected. The locus coeruleus, on the other hand, was less severely affected in the hereditary cases. The most remarkable finding was that there was no case with neuropathological change restricted only to the olivo-ponto-cerebellar (OPC) and/or autonomic nervous systems. The sporadic cases had OPC system degeneration with striato-nigral degeneration (SND) and autonomic nervous system degenerations, irrespective of differences in clinical features from case to case. It should be emphasized that the actual neuropathological status of our sporadic cases could be regarded as a multisystemic degeneration inevitably combined with OPC system degeneration, apart from whether such cases are designated as MSA or not. Finally it was remarked that the hereditary cases were different from the sporadic cases in that there occurred far less severe involvement of the locus coeruleus and intermediolateral column, and primary degeneration of the substantia nigra different obviously from SND.

Adult↗

Cortical atrophy in Parkinson disease: correlation between clinical and CT findings with special emphasis on prefrontal atrophy.

Thirty-seven patients with Parkinson disease were evaluated clinically and with computed tomography in order to determine the incidence of prefrontal atrophy. An age-matched healthy control group was also scanned. The computed tomographic criteria used were the width of cortical sulci and ventriculocerebral indices. Parkinsonian patients with frontal cortical atrophy represent only one patient out of three. They are much older than parkinsonian patients with normal computed tomographic scans, and the onset of their illness occurs later. No significant difference was found according to gender, parkinsonian clinical triad, psychomotor study, or mean duration of illness and/or dopatherapy to the time of computed tomography. This work seems to separate two Parkinson diseases: one beginning before 65 years and damaging the nigrostriate system, and another beginning after 65 years and damaging both the nigrostriate system and the cortex, particularly the frontal cortex.

Aged↗

Infantile olivopontocerebellar atrophy with spinal muscular atrophy (infantile OPCA + SMA).

We report three siblings (two boys and girl) with familial (autosomal recessive) infantile olivopontocerebellar atrophy (OPCA) associated with lower motoneuron involvement. Brain autopsy findings in two of the children revealed a multisystem degeneration characterized by marked hypoplasia of phylogenetically new parts of the brain stem (basis pontis and inferior olivary nuclei) associated with hypoplasia of the neocerebellum, both cerebellar and cerebral peduncle. All three infants died before six months of age. The clinical features are characterized by severe hypotonia, areflexia, failure to thrive, respiratory insufficiency in all cases, cardiomyopathy and dislocated hips at birth in two of the three siblings. Extensive serum, urinary and leukocyte enzyme assays in the second infant failed to disclose a specific metabolic abnormality. The diagnosis of OPCA was established prior to death by Magnetic Resonance Imaging (MRI) in the youngest infant. Since OPCA represents a heterogeneous group of diseases, correlation of neuropathologic, clinical, genetic and MRI findings at early stages of evolution becomes crucial in the understanding of the nosology of OPCA and its variants.

Female↗

Hereditary distal muscular atrophy with vocal cord paralysis and sensorineural hearing loss: a dominant form of spinal muscular atrophy?

In 1980 Young and Harper described a family with an unusual form of distal spinal muscular atrophy associated with vocal cord paralysis. We report a family with three similarly affected subjects. Progressive sensorineural hearing loss was an additional feature in our patients. Electrophysiological and histological investigations did not exclude an involvement of sensory neurones. Whether the classification of this dominant disorder with the spinal muscular atrophies is justified will depend on additional studies in further families.

Acoustic Impedance Tests↗

Olivo-ponto-cerebellar atrophy with muscular atrophy, joint contractures and pulmonary hypoplasia of prenatal onset.

The clinical and pathological features of a female neonate with congenital joint contractures and pulmonary hypoplasia are described. Neuropathological examination revealed a widespread neuronal degeneration with a predominantly olivo-ponto-cerebellar distribution and muscle pathology consistent with neurogenic atrophy. This is the first reported case of congenital joint contractures and pulmonary hypoplasia with pathologically documented olivo-ponto-cerebellar degeneration. The observation further illustrates that the so-called fetal akinesia sequence or Pena-Shokeir I syndrome is an aetiologically non-specific symptom complex that can be caused by a number of underlying mechanisms.

Atrophy↗