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Biomedical subjects

D Baram

Publications and source records attributed to D Baram.

27 records · Page 2Linked to original sources

Depletion of cellular beta-hexosaminidase by imipramine is prevented by dexamethasone; implications for treating psychotic hexosaminidase-A deficient patients.

Normal human skin fibroblasts secrete most of their hexosaminidase (Hex) into the medium upon incubation with 10(-4) imipramine, while preincubation with 2.5 X 10(-9) M dexamethasone prevents this effect. These results support the hypotheses that 1) treatment of psychotic Hex A deficient patients with amphiphilic antidepressants (such as imipramine) aggravates the patients' disease through depletion of their residual cellular Hex A, and 2) concomitant medication with dexamethasone may mitigate this drug-induced deleterious effect.

Cells, Cultured↗

Hexosaminidase A deficient adults: presence of alpha chain precursor in cultured skin fibroblasts.

Cultured skin fibroblasts from hexosaminidase A deficient adults synthesize the alpha and beta chain precursors of beta-hexosaminidase (EC 3.2.1.30) of the same molecular weight as that synthesized by normal fibroblasts. However, the amount of the alpha chain precursor is greatly reduced. The alpha chain precursor in secretions from these fibroblasts consists of 19% of the total beta-hexosaminidase secreted compared to about 50% in normal cells. Attempts to increase the amount of detectable cellular alpha chain precursor by addition of protease inhibitors or extensive extraction methods have failed. Mature alpha chains were not detected. The presence of alpha chain precursor in fibroblasts from hexosaminidase A deficient adults can be used to distinguish between them and true Tay-Sachs disease homozygotes.

Cells, Cultured↗

Enkephalins and opiate antagonists control calmodulin distribution in neuroblastoma-glioma cells.

The calcium binding protein calmodulin and the opiate receptor binding sites are unevenly distributed in various subcellular fractions of neuroblastoma-glioma NG108-15 cells. The crude mitochondrial-membrane fraction of these cells contains two membrane fractions that are separable by sucrose gradient centrifugation. These two differ in the content of both calmodulin and opiate receptors. Leucine enkephalin and D-Ala2-methionine enkephalinamide decrease the amount of membrane-bound calmodulin in the NC108-15 cells in a time- and dose-dependent manner, whereas the opiate antagonists naloxone and levallorphan have an opposite effect. Naloxone blocks the effect of leucine enkephalin and dextrallorphan has no significant effect. The opiate alkaloids entorphine and phenazocine induce changes similar to that of the enkephalins whereas morphine is inactive even at high concentrations. The alteration in the amount of membrane-bound calmodulin after a short incubation (15 min) with the enkephalins or with naloxone is reflected as an opposite change in the amount of calmodulin in the cell cytosol. Naloxone and levallorphan also increase the number of opiate receptors in NG108-15 cells but dextrallorphan has no such effect. Modulation of the intracellular distribution of calmodulin by opioid peptides and alkaloids may control the activity of various membrane-bound and cytosolic systems that are calmodulin- and/or calcium-dependent.

3',5'-Cyclic-AMP Phosphodiesterases↗

Down regulation of enkephalin (delta) receptors. Demonstration in membrane-bound and solubilized receptors.

The pentapeptide leucine enkephalin induced down-regulation of enkephalin receptors in neuroblastoma-glioma NG108-15 hybrid cells in a reversible fashion, whereas the stable enkephalin analogue D-Ala2-Met-enkephalinamide (AMEA), and the potent opiate alkaloid, etorphine, had a prolonged effect. The opiate alkaloid, morphine, which has low affinity to delta-type enkephalin receptors of these cells did not induce down-regulation, whereas AMEA decreased the binding of both opiate agonists and antagonists but had no effect on the binding of the alpha 2-adrenergic ligand, [3H]yohimbine. From several experiments that were designed to remove the tightly bound AMEA, and from experiments with solubilized receptor we ruled out the possibility that the decreased binding capacity of enkephalin-treated cells reflects only receptor masking. The study suggests that down-regulation of enkephalin receptors that may also occur in vivo can account for some of the abnormal physiological responses of subjects treated chromically with opiates. However, since opiates from the morphine type can induce opiate tolerance in vivo, but not down-regulation of enkephalin receptors in the cultured cells, we suggest that down-regulation of delta-type opiate receptors may not be prerequisite for the development of the physiological tolerance/dependence on these alkaloids.

Alkaloids↗

Adult-onset GM2 gangliosidosis diagnosed in a fetus.

Amniocentesis and subsequent tests are reported on a fetus conceived of a rare mating type: its mother has an intermediate level of beta hexosaminidase A (HEX A), characteristic of carriers of Tay-Sachs disease (TSD), while the father suffers from an adult-onset GM2 gangliosidosis (AOG) with severe HEX A deficiency. Activity of HEX A in the cultured fetal cells was very low when measured by the heat-inactivation method, thus showing the typical biochemical phenotype of TSD fetuses. However, upon separation of HEX isozymes by ion exchange chromatography, residual HEX A (17 per cent of total HEX) was demonstrated. Also in contrast to TSD fetuses, this fetus' fibroblasts were able to synthesize the precursor of alpha chains of HEX, and ultrastructural examination of its brain revealed few atypical lamellar bodies, unlike those found in TSD fetuses of the same gestational age. It is therefore concluded that the fetus was not affected with TSD, but rather with AOG.

Adult↗

Enkephalin and alpha-adrenergic receptors: evidence for both common and differentiable regulatory pathways and down-regulation of the enkephalin receptor.

Several clones of neuroblastoma-glioma NG108-15 hybrid cells were used to reveal whether the regulation of opiate receptor density interacts with the regulation of alpha-adrenergic or acetyl-choline receptors. Low density of alpha-adrenergic receptors in 3 selected clones was accompanied with similar reduction in the density of enkephalin receptors but not in muscarinic acetyl-choline receptors. Yet opiate antagonists that increased the number of opiate receptors in the parent NG108-15 cells in a stereospecific manner had no similar effect on the number of alpha-adrenergic receptors. Moreover, the stable enkephalin analogue D-ala-2-methionine enkephalinamide, but not the opiate alkaloid morphine, decreased the binding of 3H-DAMEA to the membranes and induced down-regulation of enkephalin receptors. Yet DAMEA had no effect on the binding of the alpha-adrenergic antagonist 3H-yohimbine. The study suggests that alpha-adrenergic and enkephalin receptors may share some common regulatory pathways but opiate peptides and antagonists selectively decrease or increase the density of enkephalin receptors, respectively, with no effect on alpha-adrenergic receptor density.

Animals↗

Depressed IL-1 production by chronic GVHD dermal fibroblasts.

Chronic Graft-versus-Host disease (GVHD) is characterized by overt immunosuppression. In addition, the skin is a major anatomical site affected in chronic GVHD for reasons not yet known. Increased collagen deposition, a mononuclear cell infiltrate in the dermis as well as loss of fat and appendages, are observed in the skin. The inflammatory cytokine IL-1 was shown to affect fibroblast proliferation and secretory activities. In the present study, IL-1 generation by dermal fibroblasts, of chronic GVHD or control mice, was assessed. It was shown that two sequential signals are needed for IL-1 generation by dermal fibroblasts; priming by lymphokines/cytokines followed by a challenge with LPS. A variety of recombinant lymphokines and cytokines (G/M-CSF, IL-2, TNF, IL-1 beta and IFNs alpha, beta and gamma) were shown to be efficient in priming dermal fibroblasts for IL-1 generation. IL-1 activity in dermal fibroblasts, most probably of the IL-1 alpha species, was located in frozen-thawed cell lysates or associated to the cell membrane, though not secreted into the culture fluids. Dermal fibroblasts from chronic GVHD mice manifested a pronounced depression in IL-1 generation upon stimulation with exogenous lymphokines/cytokines and LPS. This was observed over a wide range of concentrations of lymphokines/cytokines and LPS. The depressed ability of chronic GVHD fibroblasts to generate IL-1 was pronounced even after few passages of the cells in vitro, and upon stimulation in culture outside the suppressive milieu of the animal.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗