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Biomedical subjects

Y Sei

Publications and source records attributed to Y Sei.

At least 55 records · Page 3Linked to original sources

Striatal met-enkephalin and substance P levels are decreased in mice infected with the LP-BM5 murine leukemia virus.

Mice infected with the LP-BM5 murine leukemia virus mixture develop severe immunosuppression and an encephalopathy characterized by spatial learning deficits. Twelve weeks after infection of C57BL/6J mice with LP-BM5, significant (50-60%) reductions in Met-enkephalin and substance P levels were observed in the striatum, whereas somatostatin levels were unchanged. In addition, a 39% decrease in hypothalamic substance P concentrations was observed, with no alteration in Metenkephalin levels. The apparent selectivity of the decrease in neuropeptide concentrations indicates that a functional alteration of the primary striatal efferent neurons occurs in this infection, which may contribute to the impairment of spatial learning observed in these mice. Moreover, this decrease in striatal neuropeptide levels is similar to the neuropathological changes in basal ganglia observed in HIV-infected individuals and is consistent with previous studies suggesting that the LP-BM5-infected mouse may serve as a useful model of AIDS dementia.

Animals↗

Internucleosomal DNA fragmentation in gerbil hippocampus following forebrain ischemia.

Internucleosomal DNA fragmentation, the characteristics feature of programmed cell death, was demonstrated in gerbil hippocampus following 10 min of forebrain ischemia. Quantitative analysis revealed the presence of DNA fragments as early as 12 h after ischemia, reaching a maximum at 48 h. Measurable DNA fragmentation was still present in 3/3 subjects 96 h after the ischemic insult. In situ staining of hippocampus demonstrated pronounced DNA fragmentation that was localized in the CA1 region. The localization of fragmented DNA to the CA1 is consistent with the vulnerability of this layer to ischemic insult, and indicates that DNA fragmentation may be associated with the delayed loss of CA1 neurons in this model of forebrain ischemia.

Animals↗

Effects of ATP and UTP in pheochromocytoma PC12 cells: evidence for the presence of three P2 receptors, only one of which subserves stimulation of norepinephrine release.

1. In pheochromocytoma PC12 cells ATP and, to a lesser extent, 2-methylthioATP stimulate phosphoinositide breakdown, release of intracellular calcium, and influx of external calcium, leading to stimulation of norepinephrine release. In contrast, although UTP also stimulates phosphoinositide breakdown, release of intracellular calcium, and influx of external calcium, there is no stimulation of norepinephrine release. 2. 2-MethylthioATP, presumably acting at P2y receptors, and UTP, presumably acting at P2u receptors, in combination elicit a phosphoinositide breakdown greater than that elicited by either alone. Intracellular levels of calcium measured with Fura-2 increase to greater levels with ATP than with UTP and are sustained, while the UTP intracellular levels of calcium rapidly return to basal values. Both ATP and UTP cause a similar influx of 45 Ca2+ presumably by stimulation of a P2 receptor directly linked to a cation channel. 3. It is proposed that PC12 cells contain two distinct G protein-coupled P2 receptors that activate phospholipase C and a P2 receptor linked to a cation channel. The P2y receptor sensitive to ATP (and to 2-methylthioATP) causes the depletion of a pool of intracellular calcium, sufficient to activate so-called "receptor-operated calcium entry". The sustained elevation of intracellular calcium after ATP treatment is proposed to result in stimulation of norepinephrine release and activation of calcium-dependent potassium channels and sodium-calcium exchange pathways. 4. The P2u receptor sensitive to UTP (and to ATP) causes only a transient elevation in levels of intracellular calcium, perhaps from a different pool, insufficient to activate so-called receptor-operated calcium entry. Further sequelae do not ensue, and the functional role of the UTP-sensitive P2u receptor is unknown.

Adenosine Triphosphate↗

Seborrhoeic dermatitis: treatment with anti-mycotic agents.

In order to elucidate the effectiveness of anti-mycotics in treating seborrhoeic dermatitis, an attempt was made to isolate Malassezia from seborrhoeic lesions of patients of seborrhoeic dermatitis. The results revealed that, in male patients, 46/49 cases were positive for Malassezia furfur on the face and 30/48 cases were positive for M. furfur on the scalp. In female patients, 7/13 cases were positive for M. furfur on the face, and 6/17 cases were positive for M. furfur on the scalp. Anti-mycotic agents were excellent in 50% and good in 31% of the spore-positive cases, yielding an overall efficacy rate of 81%. In contrast, the treatment of the face with vehicle alone showed only one excellent result out of 8 cases. Although clinical improvement was rapid on the side treated with a topical corticosteroid in the half-side-test, numerous fungal elements remained. While the improvement with anti-mycotic agents was slower than that with the corticosteroid, clinical improvement became evident by the third week of administration and fungal elements disappeared.

Adolescent↗

Bullous pemphigoid complicated with pemphigus vulgaris?

A 67-year-old housewife had polymorphous eruptions with tense bullae on the extremities and upper trunk. Erosions were noted on the oral and esophageal mucosa. A skin biopsy showed subepidermal blistering with linear deposition of IgG and C3 at the basement membrane zone. In addition, intercellular deposition was observed at the lower part of the epidermis. On the basis of clinical and histological features, a diagnosis of bullous pemphigoid (BP) was made. After she was treated with prednisolone, the whole-skin lesions soon disappeared. An esophageal biopsy showed intercellular deposition of IgG and C3. Indirect immunofluorescence testing using esophageal mucosa of guinea pigs showed the same deposition at the titer of 1:20. Immunoblottings with this patient's serum revealed no reactions with either BP or pemphigus antigens. Her serum reacted strongly with a 190-kD protein, the nature of which was unknown. A treatment with ciclosporin was added to this steroid therapy, and the mucosal lesions improved gradually.

Aged↗

Morphine inhibits signal transduction subsequent to activation of protein kinase C in mouse splenocytes.

Morphine administered as a subcutaneous implant was previously reported to inhibit the mitogen-induced initial increases in cytoplasmic free calcium concentrations ([Ca2+]i) in mouse splenocytes. The present studies were initiated to determine whether morphine affects signal transduction subsequent to activation of protein kinase C (PKC) in immune cells. Administration of morphine significantly inhibited the phorbol myristate acetate (PMA)-stimulated increase in interleukin-2 receptor (IL-2R) expression in both CD4+ and CD8+ mouse T cells. In contrast, morphine treatment had no effect on PMA/calcium ionophore (A23187)-induced increase in IL-2 secretion, suggesting a selective inhibition of IL-2R expression. Simultaneous administration of morphine and the opiate antagonist naltrexone blocked the effect of morphine on CD4+ cells. The inhibition of PMA-stimulated IL-2R expression was not reproduced by incubating splenocytes with morphine (10(-8)-10(-5) M). These results suggest that this effect of morphine was mediated through opiate-receptors, but not directly via opiate receptors located on T cells. Moreover, adrenalectomy abolished this effect of morphine in CD4+ but not CD8+ T cells, suggesting that the inhibitory effect of morphine on IL-2R expression in CD4+ T cells may be mediated through a morphine-induced increase in corticosteroid levels. Thus, opiate-induced immunosuppression may involve an inhibition of post-PKC events, especially IL-2R expression, as well as impairment of earlier events in the activation of immune cells such as the increase in [Ca2+]i.

Animals↗

Age-related impairment of early and late events of signal transduction in mouse immune cells.

The effects of aging were studied on both early and late [subsequent to activation of protein kinase C (PKC)] events of signal transduction in mouse T cell subsets. Aged C57Bl/6 mice showed significant suppression of Con A-stimulated Ca2+ mobilization in both CD4+ and CD8+T cells compared to young mice. When early signaling was bypassed by stimulating cells with the combination of a calcium ionophore and a phorbol ester. [3H]thymidine incorporation was comparable between young and aged mice while Con A-stimulated [3H]thymidine uptake remained depressed in aged mice. These results suggest that impairment of early (but not late) events may be responsible for the suppression of T cell proliferation in aged animals. Further, aged mice exhibited a significant increase in spontaneous proliferation resulting in a robust reduction of the stimulation index of both Con A and PMA/A23187-induced proliferation. Similarly, aged mice exhibited a significant increase in spontaneous IL-2R expression in both CD4+ and CD8+ T cells. No differences in IL-2 secretion were found between young and aged mice. The change in IL-2R expression was positively correlated with increased spontaneous proliferation. Overall these results suggest that: 1) impaired early (pre-PKC) rather than later (post-PKC) events of signaling may be responsible for poor proliferation of T cells, and 2) endogenous activation of cells related to increased level of IL-2R expression may play an important role in aging-associated immunosuppression.

Aging↗

Impaired calcium mobilization in CD4+ and CD8+ T cells in a retrovirus-induced immunodeficiency syndrome, murine AIDS.

After infection with LP-BM5 murine leukemia viruses, susceptible strains of mice develop a severe and progressive immunodeficiency disease, termed murine AIDS (MAIDS), features of which include markedly impaired T cell response to mitogens or specific Ag stimulation and decreased production of IL-2. Since an elevation of intracellular calcium concentration resulting from binding of Ag to the TCR is associated with IL-2 production, T cells from mice either uninfected or infected with LP-BM5 murine leukemia viruses were examined by a calcium mobilization assay. Both CD4+ and CD8+ T cells from infected mice manifested impaired calcium mobilization responses upon in vitro stimulation with anti-CD3 mAb or Con A. The abnormalities appeared early after virus inoculation and showed no difference in time course between subsets of T cells. Frequencies of prestimulation calcium-positive cells among both CD4+ and CD8+ cells in mice with MAIDS were significantly higher than those for uninfected mice. These abnormalities were associated with presence of the MAIDS-inducing defective virus genome, but were not induced by infection of mice genetically resistant to development of MAIDS or with nonpathogenic helper murine leukemia virus, a virus component that induces high spontaneous proliferation of T cells, even in MAIDS-resistant mice.

Animals↗

Detection of a new mutant alpha-1-antichymotrypsin in patients with occlusive-cerebrovascular disease.

A new mutant alpha-1-antichymotrypsin (variant ACT) was found by direct sequencing and PCR-single strand conformation polymorphism (PCR-SSCP). This variant ACT was a point mutation of exon V of ACT, with the substitution of Met by Val. Four out of six individuals with this variant ACT had occlusive-cerebrovascular disease, leading to one hypothesis that there might be an association between this mutation and occlusive-cerebrovascular disease.

Base Sequence↗

Alpha-1-antichymotrypsin variant detected by PCR-single strand conformation polymorphism (PCR-SSCP) and direct sequencing.

A new mutant alpha-1-antichymotrypsin (variant ACT) was found by polymerase chain reaction single strand conformation polymorphism and direct sequencing. In this variant ACT, two bases (AA) were deleted from codon 391. This resulted in a different amino acid sequence downstream of the deletion point, elongating the peptide chain by 10 amino acids.

Amino Acid Sequence↗

Ethanol inhibits mitogen-induced calcium mobilization in mouse splenocytes.

Ethanol inhibited the mitogen-induced initial increase in cytoplasmic free-calcium [Ca2+]i in mouse splenocytes. This effect was concentration-dependent, reversible, and observed at pharmacologically relevant concentrations (24-166mM). Other short-chain alcohols such as propanol, butanol, and pentanol also inhibited this mitogen-induced increase in [Ca2+]i. The potencies of these alcohols to produce this effect were highly correlated (r = 0.98, p less than 0.001) with their membrane/buffer partition coefficients. Analysis of mouse splenocyte subpopulations demonstrated that this effect was manifest in both B and T lymphocytes. Within T lymphocyte subpopulations, both CD4+ and CD8+ T cells were affected. These results suggest that the inhibition of [Ca2+]i increase may be an early event mediating ethanol-induced immunosuppression and that this may be a predisposing factor to infection and malignancies associated with alcoholism.

Alcoholism↗

Central nervous system infection in a murine retrovirus-induced immunodeficiency syndrome.

Astrocyte-enriched primary glial cultures (AGC) from C57BL/6 mice were found to be highly susceptible to infection with the replication competent components of LP-BM5, consisting of the ecotropic and mink cell focus-inducing (MCF) helper murine leukemia viruses (MuLVs). The presence in infected AGC of defective LP-BM5 MuLV genome, a critical component for induction of the disease referred to as murine AIDS, was confirmed by Southern blot hybridization using a probe reactive with the p12 gag sequence of the 4.9 kb defective genome. Electron microscopic studies demonstrated C-type retrovirus particles in both astrocytes and microglial cells. In vivo studies demonstrated that the ecotropic MuLVs and the defective genome could be detected within AGC obtained form either 14-day-old mice following intraperitoneal inoculation or 7-day-old mice following intracranial inoculation. These findings suggest that: (1) the central nervous system (CNS) infection is present at an early stage in murine AIDS, (2) both astrocytes and microglial cells are possible CNS targets in which helper MuLVs replicate, and (3) these cells can harbor the defective genome that is a critical component for disease induction.

Animals↗

Spatial learning impairment in a murine model of AIDS.

Mice infected with an immunosuppressive murine leukemia virus (MuLV) mixture, LP-BM5, displayed profound and selective deficits in spatial learning in a modified Morris water maze. These deficits appeared before the appearance of gross neurological impairment or histopathological changes in the central nervous system. Thus, LP-BM5-infected mice displayed deficits in several aspects of trained performance compared to controls. Furthermore, a failure to exhibit any evidence of task acquisition in this maze was observed almost twice as frequently (P less than 0.0005) in infected mice as in uninfected controls. Moreover, in the absence of gross visual, motoric, or motivational impairment, LP-BM5 MuLV-infected animals exhibited neither the target directed search pattern nor the spatial preference characteristic of controls. The spatial learning and memory deficit described here is the first report of cognitive impairment accompanying viral-induced immunosuppression in a nonprimate species.

Animals↗

Stable expression of type I gamma-aminobutyric acidA/benzodiazepine receptors in a transfected cell line.

Expression plasmids were constructed with cDNAs encoding the rat gamma-aminobutyric acid-A (GABAA) receptor alpha 1, beta 2, and gamma 2 subunits and were cotransfected into cultured human embryonic kidney 293 cells. A single cell line (WS-1) was established after G-418 treatment and clonal selection. This cell line contained saturable, high affinity binding sites for the benzodiazepines [3H] Ro 15-4513 and [3H]flunitrazepam that were modulated by GABA. Competition experiments with benzodiazepine receptor ligands suggest a profile characteristic of native "type I" benzodiazepine receptors, because strong correlations were observed between the Ki values of these ligands in WS-1 cells and in both cerebellar homogenates (r = 0.97, p < 0.0001) and 293 cells transiently transfected with the corresponding cDNAs (r = 0.96, p < 0.001). Fluorescence intensity in WS-1 cells loaded with the Cl(-)-specific probe 6-methoxy-N-(3-sulfopropyl)-quinolinium was reliably increased by GABA. This effect was blocked by bicuculline and augmented by midazolam, consistent with the presence of GABA-gated, benzodiazepine receptor-modulated, Cl- channels. Northern blot analysis revealed the presence of mRNAs encoding alpha 1 and gamma 2 receptor subunits. Southern blot analysis confirmed genomic integration of transfected alpha 1 and gamma 2 cDNAs. The beta 2 subunit was not detected in either Northern or Southern blot analysis, indicating that a functional type I GABAA/benzodiazepine receptor complex can be constituted without a beta subunit.

Animals↗

Quantitative analysis of calcium (Ca2+) mobilization after stimulation with mitogens or anti-CD3 antibodies. Simultaneous fluo-3 and immunofluorescence flow cytometry.

A method is described for flow microfluorometric analysis of calcium mobilization in immune cells. This method is based on dual-color analysis of heterogeneous cell populations using fluo-3 and phycoerythrin (PE)-conjugated monoclonal antibody (mAb). This technique allows the detection of fluo-3 fluorescence as a measure of an increase in cytoplasmic free calcium ([Ca2+]i) while simultaneously discriminating PE-mAb-labeled cells without using wavelength ratio imaging. This method provides a unique way to distinguish patterns of calcium mobilization within a heterogeneous cell population.

Aniline Compounds↗

Morphine-induced thymic hypoplasia is glucocorticoid-dependent.

Mice administered morphine as a s.c. pellet implant exhibit a marked and sustained thymic hypoplasia as well as suppression of T lymphocyte functions. In the present study, the effects of morphine on thymocyte differentiation were characterized. Morphine produced a significant decrease in both the number and proportion of CD4+/CD8+ double positive (DP) cells. The percentage of the CD4+/CD8-, CD4-/CD8+, and CD4-/CD8- double negative subsets in these mice was proportionally increased. Morphine also increased the proportion of cells expressing either the epsilon-chain of the CD3 complex or the IL-2R. The initial reduction in the proportion of DP thymocytes appeared fully recovered by 10 days post-implantation, although the number of DP thymocytes gradually returned to normal over a 3-wk period. Morphine administration resulted in a marked increase in serum corticosterone levels, and a single injection of dexamethasone mimicked the effects of morphine on thymus differentiation. Furthermore, adrenalectomy abolished the morphine-induced decrease in CD4+/CD8+ thymocytes relative to a sham-operated group. The present findings are consistent with the hypothesis that morphine-induced thymic hypoplasia may be mediated by an increase in the circulating levels of corticosterone.

Adrenalectomy↗

Stress modulates calcium mobilization in immune cells.

Both acute and chronic restraint stress modulated mitogen-induced increases in cytoplasmic free-calcium concentrations ([Ca2+]i) in mouse spleen cells. Dual-color analysis of lymphocyte subpopulations demonstrated that acute (2 hour) restraint stress suppressed mitogen-stimulated increases in [Ca2+]i in CD4+ T cells, but enhanced [Ca2+]i in CD8+ T cells. Chronic restraint stress (2 hours daily for up to 21 days) resulted in a significant suppression of mitogen-stimulated increases in [Ca2+]i in CD4+ T cells at 3 and 7 days, but not at 21 days. CD8+ T cells were unaffected by chronic stress. Chronic stress (for 7 days) had a modest suppressive effect on mitogen-induced Ca2+ responses in B cells. Within T lymphocyte subpopulations, both acute and chronic stress predominantly affected CD4+ T cells, which may induce a functional reversal of the CD4/CD8 ratios in vivo. Such a reversal could result in suppression of a variety of immune responses such as lymphocyte proliferation and antigen-specific antibody production. These findings indicate that the inhibitory effects of stress on calcium mobilization in lymphocytes may be an early event mediating stress-induced immunosuppression.

Acute Disease↗