Search PubMed⌕ Search

Biomedical subjects

H H Goebel

Publications and source records attributed to H H Goebel.

At least 127 records · Page 7Linked to original sources

Characterization of T-cell subclasses and NK-cells in lysosomal disorders by immuno-electron microscopy.

Previous studies have shown that B and T lymphocytes are affected in lysosomal disorders. The aim of this study was to investigate the involvement of subclasses of T lymphocytes and natural killer cells in lysosomal diseases. CD4+, CD8+, and CD56+ cells were immunomagnetically separated from peripheral blood mononuclear cells in 10 patients with various lysosomal diseases--including one patient each with infantile, late infantile, and juvenile neuronal ceroid-lipfuscinoses, two patients with mucopolysaccharidosis (MPS) type I and four patients with MPS type III, and one patient with mucolipidosis type II; all lymphocytes were studied by light and electron microscopy. Respective vacuolar or non-vacuolar lysosomal inclusions were identified in CD4+, CD8+, and CD56+ cells. Subclass-specific abnormal lysosomes could not be found. Both subclasses of T lymphocytes investigated showed nearly the same ratio of affected to non-affected cells. These results were obtained by studying a small number of different lysosomal disorders. Nevertheless, they suggest that lysosomal storage in these subclasses of immunocompetent cells might also be found in other forms of lysosomal disease.

CD4-Positive T-Lymphocytes↗

Focal myositis of the temporal muscle.

Focal myositis is a rare inflammatory disease of the skeletal muscle that may involve any part of the body. We present a 19-year-old man with a short history of a painful pseudotumor in the right temporal region. MRI pictures showed a swollen right temporal muscle and muscle biopsy revealed the characteristic histological and immunocytochemical findings of polymyositis.

Adult↗

Experimental emetine myopathy: enzyme histochemical, electron microscopic, and immunomorphological studies.

Ipecac, containing emetine hydrochloride, is used by patients with anorexia nervosa to induce vomiting. Its chronic usage may result in a myopathy and a cardiomyopathy, the former marked by cytoplasmic bodies. We studied myopathological changes after daily injections of female Wistar rats with emetine hydrochloride intraperitoneally for periods of 4, 5, 9, and 10 weeks. The extensor digitorum longus muscle and the soleus muscle showed core-like lesions, streaming of the z-discs, nemaline bodies, cytoplasmic bodies, and spheroid cytoplasmic bodies. Immunomorphological studies revealed increased amounts of desmin. During a period of repair, i.e., 2, 4, and 6 weeks after termination of emetine application, these myopathological alterations faded while proliferation of the T-tubular system, i.e., honeycomb structures, was more often prevalent. Pathological features completely disappeared between 6 and 12 weeks of recovery.

Animals↗

Amyloidoma of the gasserian ganglion as a cause of symptomatic neuralgia of the trigeminal nerve: report of three cases.

Three cases of symptomatic neuralgia of the trigeminal nerve due to an amyloidoma in the gasserian ganglion are described. The correct diagnosis was not made prior to histological examination of the surgical biopsy specimens. Medical history and clinical observation led to the diagnosis of a malignant process of the nasal cavities in the first patient; of an inflammatory dental focus in the second patient; and of multiple sclerosis in the third patient. CT findings were normal in cases 1 and 2; in case 3, a schwannoma was suspected from the CT appearances. In case 1, MRI had not been performed; in cases 2 and 3, MRI revealed a tumour mass which was also considered to be a schwannoma. Histologically, the tumours consisted of masses of amyloid deposits which had largely replaced the pre-existing ganglionic cells and satellite cells. Electron microscopy confirmed the fibrillar structure of the deposits. Immunohistochemistry and immunocytochemistry revealed the amyloid to belong to the AL-lambda subtype.

Adult↗

Desmin pathology in neuromuscular diseases.

Desmin is an intermediate filament protein that in striated muscle is normally located at Z-bands, beneath the sarcolemma, and prominently at neuromuscular junctions. It is abundant during myogenesis and in regenerating fibers, but decreases in amount with maturation; in regenerating and denervated muscle fibers it is co-expressed with vimentin. Aggregates of desmin occur as nonspecific cytoplasmic bodies or cytoplasmic spheroid complexes, similar to the aggregates of keratin filaments in Mallory bodies or the neurofilament aggregates in Lewy bodies. In all three instances, alpha-B crystallin may be associated with desmin. There are now increasing numbers of neuromuscular disorders in which abnormal amounts of desmin, some abnormally phosphorylated, feature prominently in muscle fibres. Several of these diseases, including spheroid body myopathy, granulo-filamentous body myopathy and the dystrophinopathies, are familial. Ultrastructural and immunohistochemical studies of desmin have considerably broadened our understanding of the pathology of the cytoskeleton in muscle fibers and in certain hereditary neuromuscular diseases.

Animals↗

An ultrastructural study of the retina in human late infantile neuroaxonal dystrophy.

A case involving a girl who died at 11 years of age and who had developed normally until the age of 18 months, at which time further psychomotor maturation stopped and then regressed, is reported. The patient appeared hypotonic and showed loss of deep tendon reflexes, as well as bulbar signs and increasing immobility. Visual impairment resulted in blindness at the age of 7 years. Her disease was diagnosed as late infantile neuroaxonal dystrophy (LINAD) after examination of sural nerve biopsy samples and after autopsy. Under electron microscopy, retinal axons were filled with tubulocisternal profiles and occasional large lamellar clefts close to or distant from synaptic complexes. These lesions, typical of LINAD, were largely found in interior layers of the retina rather than in outer ones. As photoreceptors were preserved and their synaptic contacts within the outer nuclear layer appeared somewhat intact, blindness in LINAD is of the neuronal type, possibly all along the pathway from the bipolar retinal layer to the striate cortex. The findings also indicate that only particular types of axons or synaptic complexes may be involved in LINAD, and that the formation of lesions characteristic of LINAD is not ubiquitous within the retina. The cause for this selective involvement of retinal structures in LINAD remains to be resolved.

Axons↗

Ultrastructural pathology of eccrine sweat gland epithelial cells in globoid cell leukodystrophy.

Three of four children were recognized by deficient beta-galactocerebrosidase activities as having globoid cell leukodystrophy inclusions in sweat gland epithelial cells, similar in ultrastructure to those seen in Schwann cells. This observation in globoid cell leukodystrophy emphasizes the need to include sweat gland epithelial cells in examinations of skin in globoid cell leukodystrophy, as well as in any neurometabolic disorder.

Biopsy↗

Incidence of neuronal ceroid-lipofuscinoses in West Germany: variation of a method for studying autosomal recessive disorders.

The incidence of neuronal ceroid-lipofuscinoses (NCL) in West Germany was determined using a novel method which is applicable to other autosomal recessively inherited diseases. Questionnaires were sent to all pediatric departments (answer rate 189/276, 68%), schools for the blind (39/46, 85%), and neuropathological institutes (15/22, 68%). Diagnoses were accepted only when based on firm clinical and/or electron microscopic criteria; 207 such identified patients were sorted according to year of birth. Plotting the cumulative number of new cases per year against the year of birth resulted in a slightly S-shaped curve. Before the year 1962, the curve is relatively flat, probably due to inefficient case registration. Between 1968 and 1977, the slope of the curve is constant--a steep, nearly straight line. Thereafter the curve flattens out again, likely due to inefficient registration of young, still undiagnosed patients. We interpret the central segment of the curve, which is continuously straight over a period of 10 years and corresponds to 92 patients, as a period in which efficient registration of new cases occurred. The number of live births being 7,211,543 during the same period, the NCL incidence is calculated to be 1.28 per 100,000 live births (0.71 for juvenile NCL and 0.46 for late infantile NCL).

Child↗

Retina in various animal models of neuronal ceroid-lipofuscinosis.

The childhood forms of human neuronal ceroid-lipofuscinosis (NCL) are invariably associated with a severe progressive retinopathy which commences at the photoreceptor level morphologically and proceeds to a final loss of neuronal cells accompanied by severe gliosis. In respective spontaneous animal conditions of NCL, in English setters, Dalmatian dogs, and New Zealand sheep, retinal involvement is not commensurate although the retina does not seem to be completely unaffected. In canine NCL, there might be functional and electro-physiological impairment of retinal cells, but retinal atrophy is not obvious. In ovine NCL, the retina, apart from accumulating NCL-specific lipopigments within neuronal perikarya, also shows loss of photoreceptors. Conversely, retinal pigment epithelial cells (RPE) in canine and ovine NCL contain peculiar lamellar inclusions, not seen in unaffected animals, possibly an indication of a disturbed phagocytic process of photoreceptor outer segments. Similar such lamellar inclusions have not been observed in RPE cells in human childhood NCL.

Animals↗

Phagocytic capacity of human muscle fibers.

Isolated dead muscle cell fragments (apoptotic bodies [ABs]) were investigated by electron microscopy in different stages of phagocytosis. Phagocytosis of ABs was carried out by neighboring muscle cells. The mechanism of internalization took place in both mature and immature muscle cells and consisted of the progressive engulfment of ABs within cytoplasmic vacuoles and craters. In addition, concentrated microfilaments formed a dense ring in the muscle cytoplasm adjacent to the engulfed ABs. The above combination of membrane evagination and phagocytic vacuole formation as well as the extensive microfilament organization at the site of AB engulfment were analogous to the cytoplasmic response seen in the tissue of mononuclear phagocytic cells.

Humans↗

Neuronal ceroid-lipofuscinoses: the current status.

In view of the epidemiological connotation of childhood neuronal ceroid-lipofuscinosis (NCL) as one of the most frequent progressive lysosomal diseases and neurodegenerative disorders in children, the recognition of the individual clinical forms of childhood NCL is still based on invasive diagnostic electronmicroscopy which, currently, may be applied also for prenatal diagnosis. Like other inherited disorders, the NCL group has finally also benefited from the genetic breakthroughs of localization of the genes for infantile NCL and juvenile NCL on chromosomes 1 and 16, respectively. This review concerns recent advances in morphological studies, broadening of the clinical spectrum of childhood NCL, new biochemical findings, and preliminary therapeutic results. Hereditary animal models, largely for human juvenile NCL, have been successfully employed in elucidation of the nosology of NCL, but the basic defect in human, canine and ovine NCL remains unknown.

Humans↗

A mild juvenile variant of type IV glycogenosis.

The mild juvenile form of type IV glycogenosis, confirmed by a profound deficiency of the brancher enzyme in tissue specimens is reported from three Turkish male siblings who, foremost, suffered from chronic progressive myopathy. Muscle fibers contained polyglucosan inclusions of typical fine structure i.e. a mixture of granular and filamentous glycogen. They reacted strongly for myophosphorylase, but were resistant to diastase. These inclusions were ubiquitinated and reacted with antibody KM-279 which previously has been shown to bind to Lafora bodies, corpora amylacea and polyglucosan material in hepatic and cardiac cells of type IV glycogenosis as well as polyglucosan body myopathy without brancher enzyme deficiency. Our findings confirm that although rate, a mild form of type IV glycogenosis is marked by polyglucosan inclusion not only in myofibers, but also in smooth muscle and sweat gland epithelial cells. This further implies that when polyglucosan inclusions are observed within myofibers it is mandatory to examine the muscle tissue for brancher enzyme activity since the brancher enzyme activities in circulating erythrocytes and leucocytes were normal in all three affected siblings and their parents. Therefore, it can be concluded that the patients reported on here represent a variant form of type IV glycogenosis, in which the defect is limited to muscle tissue. This further indicates that there are several different types of type IV glycogenosis with variable clinical manifestations.

Child↗

Adult polyglucosan body myopathy.

This report describes a sporadic late-onset myopathy in two unrelated adults which was marked by polyglucosan inclusions surrounded by abnormally structured mitochondria, the latter finding a localized, possibly reactive phenomenon. The polyglucosan material was characterized by a battery of histochemical and enzyme histochemical techniques; revealed common antigenicity with Lafora bodies, corpora amylacea and muscle fiber inclusions in types IV and VII glycogenoses; and contained ubiquitin. Additional lectin histochemical and associated digestion preparations disclosed the presence of alpha-glycosyl residues as apparently the sole carbohydrate component in polyglucosan bodies while the above mentioned common antigenicity with Lafora bodies and other inclusions suggests an additional, so far unidentified, protein component.

Atrophy↗

Ultrastructural study of the retina in late infantile metachromatic leukodystrophy.

The autopsy of a 2-year-old girl revealed a clinically unrecognized metachromatic leukodystrophy (MLD) due to an aryl-sulfatase A deficiency, characteristically affecting the central and peripheral nervous system by demyelination and by accumulation of metachromatic material. The retina though reported clinically as normal, showed the same demyelinating process in the optic nerve including the papilla but an additional intraneuronal storage of MLD-typical lysosomal residual bodies in ganglion cell perikarya of the retina. Cells of the bipolar and photoreceptor layers as well as pigment epithelial cells were not affected by MLD-specific lysosomal storage. Thus, sulfatides seem to play a particular metabolic role in ganglion cells but not in other neuronal cells of the retina in MLD.

Brain↗

[An intermediate, generalized form of neuroaxonal dystrophy--light- and electron microscopic findings].

This report concerns a 11-year-old girl--at the time of death--who developed normally until the age of 2 years when further psychomotoric maturation stopped and then regressed. The disease was diagnosed as neuroaxonal dystrophy (NAD) by sural nerve biopsy at the age of 7. Further course was characterized by complete loss of all motoric and sensory functions and dementia as well. Finally there was decerebration. The autopsy revealed generalized NAD associated with pallidal deposition of iron pigment to classify as generalized intermediate NAD type II according to Gilman and Barrett (1973). The main histological findings were axonal swellings and spheroids consisting ultrastructurally of membrano-tubular profiles, lamellar structures, vacuoles, glycogen granules and mitochondrial aggregates. Immunohistologically there was partial positive expression of synaptophysin and neurofilament protein in the spheroids. Firstly described electron microscopical findings in the retina include the typical axonal lesions largely in interior layers. Photoreceptors and their synaptic contacts were preserved. The present blindness is of the neuronal type. The current etiopathogenetic opinions, aspects of bioptic diagnosis and problems of classification of primary NADs are discussed.

Axons↗