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Biomedical subjects

D Soffer

Publications and source records attributed to D Soffer.

At least 73 records · Page 4Linked to original sources

Vascular endothelial growth factor induced by hypoxia may mediate hypoxia-initiated angiogenesis.

Inefficient vascular supply and the resultant reduction in tissue oxygen tension often lead to neovascularization in order to satisfy the needs of the tissue. Examples include the compensatory development of collateral blood vessels in ischaemic tissues that are otherwise quiescent for angiogenesis and angiogenesis associated with the healing of hypoxic wounds. But the presumptive hypoxia-induced angiogenic factors that mediate this feedback response have not been identified. Here we show that vascular endothelial growth factor (VEGF; also known as vascular permeability factor) probably functions as a hypoxia-inducible angiogenic factor. VEGF messenger RNA levels are dramatically increased within a few hours of exposing different cell cultures to hypoxia and return to background when normal oxygen supply is resumed. In situ analysis of tumour specimens undergoing neovascularization show that the production of VEGF is specifically induced in a subset of glioblastoma cells distinguished by their immediate proximity to necrotic foci (presumably hypoxic regions) and the clustering of capillaries alongside VEGF-producing cells.

Animals↗

Melanotic cerebral ganglioglioma: evidence for melanogenesis in neoplastic astrocytes.

A composite melanotic glial-ganglionic tumor was resected from a 17-year-old girl who presented with a 5-year history of epilepsy. Grossly, the tumor was partly cystic, partly solid, located superficially in the temporal lobe. Histologically, its glial component was composed of spindle and pleomorphic cells, including tumor giant cells, which were associated with Rosenthal fibers, eosinophilic granular bodies and marked desmoplasia. The cells had immunohistochemical and ultrastructural features of astrocytes, and some were invested by incomplete basal lamina. Thus, the tumor had many features in common with pleomorphic xanthoastrocytoma. However, its most striking feature was the presence of melanin pigment in numerous neoplastic cells. Immunoelectron microscopy revealed glial fibrillary acidic protein-positive intermediate filaments in tumor cells bearing melanosomes and premelanosome, proving their astrocytic nature. This case demonstrates, for the first time, melanosomal melanogenesis in human cells with astrocytic phenotype, and provides additional evidence for the ability of central neuroepithelial cell derivatives to produce melanin.

Adolescent↗

Striatal degeneration and spongy myelinopathy in glutaric acidemia.

The neuropathological findings in a 6 1/2-year-old boy with glutaric acidemia (GA) are described, and the pathology of 7 additional literature cases is briefly reviewed. Bilateral striatal degeneration and spongy change of the white matter were the salient features in this case and seem to represent the cardinal pathological features of the disease. Spongy myelinopathy was the result of intramyelinic vacuolation due to splitting of the myelin sheath along the intraperiod line, as illustrated here for the first time in GA. Based on morphological, biochemical and pharmacological data from humans and experimental animals, it is hypothesized that excitotoxin-mediated neuronal damage may account for the striatal degeneration, while toxic effect on myelin metabolism by the metabolic derangement of GA may explain the widespread white matter changes.

Amino Acid Metabolism, Inborn Errors↗

Hereditary branching enzyme dysfunction in adult polyglucosan body disease: a possible metabolic cause in two patients.

We describe 2 unrelated patients with adult polyglucosan body disease (APBD) diagnosed by sural nerve biopsy. Both patients were offspring of consanguineous marriages. They presented clinically with late onset pyramidal tetraparesis, micturition difficulties, peripheral neuropathy, and mild cognitive impairment. Magnetic resonance imaging of the brain revealed extensive white matter abnormalities in both. In search of a possible metabolic defect, we evaluated glycogen metabolism in these patients and their clinically unaffected children. Branching enzyme activity in the patients' polymorphonuclear leukocytes was about 15% of control values, whereas their children displayed values of 50 to 60%, suggesting a possible autosomal recessive mode of transmission. This is the first report of an inherited metabolic defect in patients with adult polyglucosan body disease. We suggest that branching enzyme dysfunction may be implicated in the pathogenesis of some patients with adult polyglucosan body disease.

1,4-alpha-Glucan Branching Enzyme↗

Mast cell activity in experimental allergic encephalomyelitis.

The number and functional reactivity of peritoneal mast cells (MCs) were evaluated in rats with experimental allergic encephalomyelitis (EAE). Cells were counted following staining with toluidine blue and activation was measured by B-hexosaminidase (B-hex) release. The number of detectable MCs and their capacity to release B-hex decreased significantly by 40 and 65%, respectively, as compared with normal controls just prior to the onset of clinical signs. These values returned to normal on clinical recovery. Preliminary data on MC counts performed on histological sections of rat brains with EAE suggested a similar pattern of response, i.e., an early decrease prior to disease onset with subsequent normalization on recovery. In an attempt to modify the course of EAE, rats were treated with the MC stabilizing agent nedocromil or with the MC activating agent, compound 48/80. Nedocromil induced a slight delay in the onset of EAE, but only when administered at the time of EAE induction. Compound 48/80 did not seem to affect the clinical course of the disease. Our results suggest that MCs are involved in the pathogenesis of EAE and may contribute to the induction of the disease rather than to the effector phase and its clinical expression.

Animals↗

Multifocal vascular tumors in fowl induced by a newly isolated retrovirus.

The morphological features of a spontaneous, multifocal vascular neoplasm of chickens are described. Histologically, the tumor was characterized by areas consisting of freely anastomosing vascular channels with prominent papillary appearance and lined by bland-looking endothelial cells, which alternate with areas resembling cavernous hemangioma. Occasionally solid areas composed of plump, pleomorphic cells were also present. Although there was no clear evidence for metastatic spread, some tumors were obviously invasive. Electron microscopy and immunohistochemistry confirmed the endothelial nature of neoplastic cells, demonstrating in particular pinocytic vesicles, well developed junctional complexes, fragmented basal lamina, occasional Weibel-Palade bodies, and patchy factor VIII-related antigen immunoreactivity. The overall appearance of the tumor was that of a cavernous hemangioma with prominent papillary endothelial hyperplasia. Previously we have shown that the tumor was induced by a newly isolated strain of avian hemangioma retrovirus and in this study we demonstrated typical type C retrovirus particles in the tumor by electron microscopy. It is suggested that this retrovirus-induced avian tumor may serve as a useful model for the study of transformed endothelia and other vascular tumorigenesis.

Animals↗

Minor lymphocyte stimulating (Mls) gene products in mice influence their genetic resistance or susceptibility to induction of autoimmune encephalomyelitis.

The role of the major histocompatibility complex (MHC) gene products in the genetics of experimental autoimmune encephalomyelitis (EAE) is well established. Here we demonstrate how non-MHC gene products, stimulatory to T cells specific to myelin basic protein (MBP), can affect the MHC control in determining genetic susceptibility or resistance to induction of EAE. I-As-restricted MBP-specific T cells derived from SJL/J mice are shown to cross-react with Mls-2a gene products. The Mls-2a gene product expressed by (SJL/J X BALB/c)F1 mice tolerize T cells recognizing I-As/MBP and favor the development of I-Es/d-restricted MBP-specific T cells mediating EAE in the (SJL/J x BALB/c)F1 mice. These I-Es/d/MBP-specific T cells, cross-reactive with Mls-1a, and the I-As/MBP-specific T cells, cross-reactive with Mls-2a gene products, are both eliminated by self tolerance mechanisms in the H-2-matched (SJL/J X DBA/2)F1 mice, expressing Mls-1a2a gene products, and thereby confer genetic resistance to EAE on the (SJL/J X DBA/2)F1 mice bearing EAE-permissive MHC alleles. These results reflect a developmental selection of a T cell repertoire to the self antigen MBP, imposed by self tolerance to self Mls gene products, which affect the genetic susceptibility to EAE. These studies also demonstrate that self tolerance to Mls gene products can strengthen the tolerance to organ-specific self antigens such as MBP, which may not be expressed or which are absent in the thymus at the time of thymic selection.

Animals↗

Gliomas following low-dose irradiation to the head report of three cases.

Three patients developed cerebral gliomas decades after exposure to low-dose x-ray irradiation in childhood for the treatment of tinea capitis. One of the patients had a glioblastoma multiforme concomitant with multiple intracranial meningiomas, a condition highly correlated with previous irradiation. The other tumors were malignant cerebellar astrocytoma and a diffuse cerebral astrocytoma. We review the evidence suggesting that low-dose irradiation is involved in the pathogenesis of gliomas.

Adult↗

Evolution of post-natal herpes simplex virus encephalitis to multicystic encephalopathy.

A 3-week-old, previously healthy infant developed biopsy-proven Herpes virus type 2 (HSV-2) encephalitis. The encephalitis was characterized by cells having intranuclear inclusions and was without evidence of inflammation or hemorrhage. Neuroimaging studies did not show any destructive lesions in the brain. In spite of antiviral therapy, the infant's neurological conditions deteriorated, and the patient died at the age of 18 weeks. Post-mortem examination showed that most of the cerebral hemispheres were replaced by multiloculated cystic cavities of various sizes, typical of multicystic encephalopathy (MCE). The cystic lesions were randomly distributed and were not confined to any vascular territory. By light microscopy, there were no features of viral infection in the brain. Although in situ hybridization of the biopsy specimen taken during the acute phase of the disease demonstrated abundant HSV genome, this same method failed to detect HSV on the post-mortem specimen. These findings suggest that HSV-2 can induce MCE. Furthermore, the absence of histological features of viral encephalitis and the failure to demonstrate viral genome in the brain at autopsy does not exclude an infectious etiology in certain cases of MCE.

Autopsy↗

Intracranial meningiomas after high-dose irradiation.

Three patients who presented with intracranial meningiomas 12, 15, and 20 years, respectively, after therapeutic high-dose irradiation of a primary brain tumor are described. Analysis of these cases and similar documented cases suggests that meningiomas after high-dose irradiation constitute a recognizable entity. Patients with such tumors received radiation therapy at a young age (mean age, 9.4 years). After a latent period of 2 to 47 years (mean, 19.8 years) they developed meningiomas at the site of irradiation, at a much younger age than patients with "spontaneous" meningiomas. Similar to the situation with meningiomas after low-dose irradiation, a relatively high proportion of meningiomas induced by high-dose irradiation tend to be malignant and biologically aggressive. A very young age at the time of irradiation seems to predispose to the induction of malignant meningiomas, rather than benign tumors. These unusual features provide indirect evidence that high-dose radiation may play a role in the pathogenesis of meningiomas.

Adolescent↗

Axonal degeneration and regeneration in sensory roots in a genital herpes model.

In a mouse model of genital herpes simplex virus type 2 (HSV-2) infection, roots of the lower spinal cord were examined 5 days to 6 months after inoculation. Using immunoperoxidase methods on paraffin sections, viral antigen was found in sensory ganglia, their proximal roots and distal nerves on days 5 and 6 after infection. In Epon sections, most mice had focal sensory root abnormalities in lower thoracic, lumbar or sacral levels. At days 7 and 10, lesions showed chiefly nerve fiber degeneration, particularly of large myelinated fibers. At 2 weeks, lesions contained relatively large bundles of small unmyelinated fibers with immature axon-Schwann cell relationships. From 3 to 6 weeks, lesions again contained many more small unmyelinated fibers than normal but, in increasing proportions, axons in bundles were isolated from their neighbors by Schwann cell cytoplasm, and Schwann cells having 1:1 relationships with axons showed mesaxon or thin myelin sheath formation. At later times, the proportion of small unmyelinated axons decreased in parallel with increased numbers of small myelinated axons. By 6 months, affected roots showed a relative reduction in large myelinated fibers, increased proportions of small myelinated fibers and Schwann cell nuclei. Numbers of unmyelinated fibers were reduced relative to 3- to 6-week lesions. Axonal degeneration and regeneration appears to be the chief pathological change in sensory roots in this model. If regenerated fibers arise from latently infected neurons, then establishment of latency is not a relatively silent event, but is associated with major long-lasting, morphologically detectable effects.

Animals↗

The yield of sural nerve biopsy in the evaluation of peripheral neuropathies.

The diagnostic yield of sural nerve biopsy was evaluated in 120 peripheral neuropathy patients. In 58 (48%) a final diagnosis was reached without biopsy, while 14 (11.5%) remained undiagnosed. Nerve biopsy contributed to the final diagnosis in 20 of the 53 biopsies (38%). In patients with motor conduction velocity below 30 m/s, sural nerve histology was helpful in 65% of biopsies. In patients with milder reduction in conduction biopsy contributed in only 11%. It is concluded that in general neurological population, nerve biopsy is of limited value as a routine diagnostic procedure. However, in patients with marked slowing of conduction velocity, in whom the diagnosis is not immediately apparent, sural nerve biopsy is indicated.

Biopsy↗

Sensory peripheral neuropathy of vitamin B12 deficiency: a primary demyelinating disease?

In five patients with peripheral neuropathy due to vitamin B12 deficiency, electrodiagnostic studies demonstrated severe reduction in sensory nerve conduction velocities compatible with a demyelinating disorder affecting sensory nerve fibres. It is suggested that in some patients lack of vitamin B12 may cause primary sensory demyelinating neuropathy.

Adolescent↗

Remyelination of central nervous system lesions in experimental genital herpes simplex virus infection.

To study spinal cord remyelination in a model of genital herpes simplex virus type 2 (HSV-2) infection, adult female mice were inoculated by a vaginal route. At intervals up to 6 months after infection, cord tissues were removed and examined by light and electron microscopy and by immunohistochemical methods. As a consequence of acute infection, 60% of mice developed multifocal central nervous system (CNS) demyelinative lesions in the lower thoracic, lumbar, or upper sacral cord. These lesions, already present 10 days after infection, contained naked axons and mononuclear cells, including macrophages. At 2 weeks, while active myelin breakdown was still ongoing, numerous Schwann cells were present in lesions and surrounded denuded axons. At 3 weeks, the earliest remyelination was seen, and was carried out by Schwann cells and to a lesser extent by oligodendrocytes. Remyelination was extensive by 6-10 weeks and was apparently completed after 3 months. Immunocytochemical studies using antisera to myelin proteins showed relatively distinct zones of central and peripheral remyelination in some lesions, whereas remyelination was of mixed type in others. Thus the remyelinative response following experimental HSV-2-induced CNS demyelination begins promptly, proceeds briskly and goes to completion. With a natural route of inoculation and a relatively avirulent strain of this human pathogen, we have produced a model of CNS white matter injury and repair in a high proportion of infected mice that may be useful in understanding mechanisms of human demyelinative disease.

Animals↗

Cerebral toxicity of the trichothecene toxin T-2, of the products of its hydrolysis and of some related toxins.

T-2 toxin and its metabolites (resulting from enzymatic hydrolysis by rat brain homogenate) were applied to the midbrain of albino rats, either in solid form or dissolved in dimethyl sulfoxide (DMSO). Solid implants of HT-2 toxin and of T-2 triol were lethal in the range of 10-20 micrograms per rat, i.e. similar to the effect of T-2 toxin itself. For four further trichothecenes, the following decreasing order of toxicities was found: T-2 tetraol = iso-T-2 toxin greater than T-2 tetraol tetraacetate greater than T-2 toxin acetate. Implants of the last compound were the least toxic in the present series of trichothecenes; its LD50 value was nearly ten times higher than that of T-2 toxin. A similar gradation of toxicity was observed upon intracerebral injection of the compounds dissolved in DMSO. Here the only exception was the markedly reduced toxicity of T-2 toxin itself. From these data, the role of free 3 alpha- and 4 beta-hydroxyl groups has been evaluated. For subcutaneous applications, the largest ratio of LD50 values was 5, i.e. for the pair T-2 triol-T-2 tetraol tetraacetate. Among the signs of central intoxication, convulsions, adipsia and aphagia were marked. Pathological changes in the brain tissue, mainly involving necrotic, hemorrhagic and inflammatory lesions at the sites of application, were similar for all trichothecenes tested in this study.

Animals↗

A double-label method detects both early (T-antigen) and late (capsid) proteins of JC virus in progressive multifocal leukoencephalopathy brain tissue from AIDS and non-AIDS patients.

A new double-label immunocytochemical method detects JC virus (JCV) early (T-antigen) and late (capsid) proteins simultaneously in cryostat sections of progressive multifocal leukoencephalopathy (PML) brain tissue from both acquired immunodeficiency syndrome (AIDS) and non-AIDS patients. T-antigen is detected with a monoclonal antibody (PAb 416) followed by goat anti-mouse IgG and mouse Clono-PAP, while capsid proteins are detected by a rabbit polyclonal antiserum to capsid proteins followed by biotinylated goat anti-rabbit IgG and streptavidin-alkaline phosphatase conjugate. The substrates are 3,3'-diaminobenzidine and Vector Red I, respectively. With this method some infected glial cells stain for late (capsid) antigens in the nucleus, while others show early protein (large T-antigen) immunoreactivity. The latter are likely to be astrocytes infected abortively or oligodendrocytes in the early stages of a productive JCV infection.

Acquired Immunodeficiency Syndrome↗

A monoclonal antibody to SV40 large T-antigen labels a nuclear antigen in JC virus-transformed cells and in progressive multifocal leukoencephalopathy (PML) brain infected with JC virus.

Thirty monoclonal antibodies to SV40 large T-antigen were tested for reactivity on the JC virus-transformed hamster glial cell line known as HJC-15. Two of them (PAb 416 and PAb 108) detected a nuclear antigen in both SV40-transformed CCL 75.1 cells and in HJC-15 cells, but not in control cells lacking T-antigen. These same antibodies also labeled a nuclear antigen in hamster tumor tissue derived from HJC-15 cells. In addition, the monoclonal antibody PAb 416 detected a nuclear antigen in progressive multifocal leukoencephalopathy (PML) tissue infected with JC virus, but not in normal brain tissue or tissue from other neurological diseases. Staining by PAb 416 was reduced by prior incubation with hamster anti-JCV tumor serum, suggesting that the polyclonal antiserum to JCV T-antigen may compete for an epitope at or near the PAb 416 binding site.

Animals↗