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Biomedical subjects

K Frei

Publications and source records attributed to K Frei.

At least 109 records · Page 6Linked to original sources

Human immunodeficiency virus type 1 (HIV-1) infection of the central nervous system: an evaluation of cytokines in cerebrospinal fluid.

Cytokines play an important role not only for initiation of immune reactivity but also for development of tissue injury. Of 38 patients infected with human immunodeficiency virus type 1 (HIV-1) interleukin-1 beta (IL-1 beta) and interleukin-6 (IL-6) were identified in cerebrospinal fluid (CSF) of 22 (58%) and 16 (42%) patients, respectively. Among the IL-1 beta- and IL-6-positive CSF were eight of 15 HIV-1 patients with no clinical signs of central nervous system involvement and four of five patients with acquired immunodeficiency syndrome (AIDS) dementia complex. The presence of IL-6 was often associated with IL-1 beta and soluble interleukin-2 receptor in CSF as well as with intrathecal IgG synthesis. In none of the CSF samples tumor necrosis factor-alpha or interleukin-2 was detected.

Acquired Immunodeficiency Syndrome↗

Brain tumors: detection of B-cell stimulatory factor-2/interleukin-6 in the absence of oligoclonal bands of immunoglobulins.

24 patients with neoplasia of the central nervous system (CNS-N) were investigated for the presence of B-cell stimulatory factor-2/interleukin-6 (IL-6) in the cerebrospinal fluid (CSF). Whereas IL-6 was detected in 21 (88%) of these CSF samples, only 6% of CSF from non-inflammatory brain diseases and 12% of the samples from multiple sclerosis patients were positive. IL-6 was found in both primary and secondary CNS-N. The presence of IL-6, a cytokine which activates B-lymphocytes to produce high-rate immunoglobulin (Ig) synthesis, is in contrast to the ineffective intrathecal B-cell activation as suggested by the failure to detect oligoclonal bands of Igs in CNS-N.

Adolescent↗

Tumour necrosis factor-alpha in infectious meningitis.

During a one year period tumour necrosis factor-alpha (TNF-alpha) was prospectively determined in the cerebrospinal fluid of 49 patients with infectious meningitis. TNF-alpha was found in the cerebrospinal fluid of 15 of 18 patients with bacterial meningitis. In 11 patients who had cerebrospinal fluid positive for TNF-alpha it was detected in only one serum (in low concentration). There was no significant correlation between the concentration of TNF-alpha in cerebrospinal fluid and the patient's age, duration of illness and fever, body temperature, and serum C reactive protein. However, cerebrospinal fluid protein concentrations of greater than or equal to 2 g/l and leucocyte values of greater than or equal to 2.5 X 10(9)/l were more often associated with high TNF-alpha concentrations (greater than or equal to 500 pg/ml). In contrast with bacterial meningitis, none of the 31 samples of cerebrospinal fluid from patients with viral meningitis was positive for TNF-alpha. Thus this investigation supports the conclusion, drawn from animal studies on TNF-alpha in the cerebrospinal fluid, that the presence of TNF-alpha is indicative of bacterial meningitis. Absence of TNF-alpha cerebrospinal fluid, however, was found here not to exclude a bacterial aetiology of the infection.

Adolescent↗

Production of B cell stimulatory factor-2 and interferon gamma in the central nervous system during viral meningitis and encephalitis. Evaluation in a murine model infection and in patients.

Synthesis of B cell-stimulating factor-2 (BSF-2) and IFN-gamma was shown in cerebrospinal fluids (CSF) collected from mice with experimental viral meningitis. In the CSF, the level of BSF-2 started to increase 24 h after intracerebral infection with lymphocytic choriomeningitis virus (LCMV) with rapid increase after day 4. IFN-gamma was not detected in the CSF before day 5 or 6 after infection, but increased sharply thereafter. In athymic nude mice, LCMV infection did not result in meningitis, and both BSF-2 and IFN-gamma levels were only slightly and transiently elevated. These findings suggest that activated mature T cells are required for development of disease and production of both BSF-2 and IFN-gamma. As observed in mice, BSF-2 was also detected in 16 out of 19 CSF samples collected from patients with acute viral infections of the central nervous system (CNS). Intrathecal production of BSF-2 and IFN-gamma may be instrumental in local production of antiviral antibodies by B lymphocytes/plasma cells invading the CNS during viral CNS disease.

Adult↗

Tumor necrosis factor alpha in cerebrospinal fluid during bacterial, but not viral, meningitis. Evaluation in murine model infections and in patients.

To evaluate the potential role of cachectin/TNF-alpha in the pathogenesis of bacterial and viral meningitis, concentrations and kinetics of TNF-alpha were determined in cerebrospinal fluid (CSF). After intracerebral, but not systemic, infection with Listeria monocytogenes in mice, TNF-alpha was detected as early as 3 h after infection reaching maximum titers after 24 h. However, TNF-alpha was not found in serum during the course of Listeria infection. In contrast to bacterial meningitis, no TNF-alpha was detected at any time in CSF of mice suffering from severe lymphocytic choriomeningitis induced by intracerebral infection with lymphocytic choriomeningitis virus. This difference is striking since both model infections led to a massive infiltration of polymorphonuclear and mononuclear leukocytes into the meninges and CSF. The results found for the two model infections were paralleled by findings in humans; CSF from three out of three patients with bacterial meningitis examined during the first day of hospitalization showed significant levels of TNF-alpha; none of the CSF obtained later than 3 d after hospitalization was positive. In addition, similarly to what was found in mice with viral meningitis, zero out of seven patients with viral meningitis had detectable TNF-alpha in CSF.

Adolescent↗

The glioblastoma-derived T cell suppressor factor/transforming growth factor-beta 2 inhibits T cell growth without affecting the interaction of interleukin 2 with its receptor.

Human glioblastoma cells secrete a peptide termed glioblastoma-derived T cell suppressor factor (G-TsF) which inhibits T cell activation. Recently, purification and cloning of G-TsF revealed that G-TsF is identical to transforming growth factor-beta 2. As shown here, G-TsF suppresses the growth of an ovalbumin-specific mouse T helper cell clone (OVA-7T) independently of the stimulus used being either (a) antigen in the presence of antigen-presenting cells, or (b) interleukin 2 (IL2) or (c) phorbol ester and calcium ionophore. Furthermore, in the presence of antibodies against IL2 receptors, G-TsF was able to suppress the residual proliferation still observed when OVA-7T were stimulated with phorbol ester/ionophore. G-TsF failed to inhibit the release of IL3 from OVA-7T activated with IL2. Taken together, the data provide evidence that G-TsF does not directly interfere with interactions of IL2 with its receptor but rather inhibits T cell activation by interfering with an as yet unidentified pathway used by both IL2 and phorbol ester/ionophore. When analyzing different monokines and lymphokines for its effect on G-TsF-induced suppression of T cell growth the only factor found to partially neutralize the effect of G-TsF was tumor necrosis factor-alpha.

Animals↗

Antigen presentation and tumor cytotoxicity by interferon-gamma-treated microglial cells.

In this study microglial cells isolated from brain cell cultures of newborn mice were characterized and investigated for morphology, their responses to growth factors and their functional properties. The microglial cells were phagocytic, contained nonspecific esterase activity and expressed Fc (IgG1/2b) and type-3 complement receptors. Scanning electron microscopy revealed that in analogy to brain tissue two types of microglial cells are present in the cultures: the ameboid and the ramified type which both display similar appearance by transmission electron microscopy. Interleukin 3 and the granulocyte-macrophage colony-stimulating factor were potent growth factors for the cultured microglial cells. The cells were negative for class II antigens (Ia) of the major histocompatibility antigen complex. However, upon treatment with interferon-gamma (IFN-gamma) microglial cells became Ia+ and functioned as antigen-presenting cells when tested on ovalbumin-specific Ia-restricted helper T cells. Furthermore, microglial cells exposed to IFN-gamma and endotoxin developed tumor cell cytotoxicity and produced tumor necrosis factor alpha. Taken together, microglial cells share the characteristics of cells of the macrophage lineage.

Animals↗

T cell suppressor factor from human glioblastoma cells is a 12.5-kd protein closely related to transforming growth factor-beta.

T cell suppressor factor produced by human glioblastoma cells inhibits T cell proliferation in vitro and more specifically interferes with interleukin-2 (IL-2)-dependent T cell growth. Here we report the purification of this factor from conditioned medium of the human glioblastoma cell line 308. Amino-terminal sequence analysis of the 12.5-kd protein demonstrates that eight out of the first 20 amino acids are identical to human transforming growth factor-beta. Purified glioblastoma-derived T cell suppressor factor and transforming growth factor-beta from porcine platelets inhibit both IL-2-induced proliferation of ovalbumin-specific T helper cells and lectin-induced thymocyte proliferation with similar specific activities. If released by glioblastoma cells in vivo, the factor may contribute to impaired immunosurveillance and to the cellular immunodeficiency state detected in the patients.

Amino Acid Sequence↗

Astrocyte-derived interleukin 3 as a growth factor for microglia cells and peritoneal macrophages.

Astrocytes have been shown to release an interleukin 3 (IL 3)-like factor that induces the expression of 20-alpha-hydroxysteroid-dehydrogenase (20-alpha SDH) in nu/nu spleen cells, and the proliferation of the IL 3-dependent cell line 32DCL. We have investigated whether astrocyte-derived IL 3 supports growth of macrophages and their representatives in the brain, the microglia cells. Evidence for intercellular communication between murine astrocytes and macrophages became already detectable in co-culture experiments: astrocytes activated with endotoxin resulted in an increased growth of peritoneal macrophages on the astrocyte monolayer. Biochemical analysis of supernatants of activated astrocytes revealed that the IL 3-like factor that stimulated 32DCL cells and the expression of 20 alpha SDH also served as a growth factor for cultured peritoneal macrophages. The same results were obtained by using microglia cells isolated from primary brain cell cultures of newborn mice, which are characterized by their positive reaction for macrophage markers such as Mac-1 and nonspecific esterase. If secreted by reactive astrocytes in vivo, the IL 3-like factor may contribute to the accumulation of macrophages and microglia cells detected in brain lesions of patients with multiple sclerosis.

20-Hydroxysteroid Dehydrogenases↗

[Interleukin 1].

Interleukin-1 (IL-1) is secreted by macrophages, macrophage-like cells (e.g. Langerhans cells) and by astrocytes, keratinocytes, fibroblasts or natural killer cells. IL-1 is directly involved in the activation of helper T lymphocytes. However, it has been shown that IL-1 also induces release of collagenase and prostaglandins by fibroblasts. Furthermore, injections of IL-1 into animals are followed by fever, leukocytosis, increased serum concentrations of fibrinogen, serum amyloid A and haptoglobin, and decreased levels of iron and zinc. IL-1 has been extracted from experimental granuloma and from tissues of animals with endotoxinemia. Synovial fluids from patients with osteoarthritis contain significant amounts of IL-1. All in all, IL-1 may be ultimately involved in the development of fever and fibrosis, in the destruction of joints and the activation of T lymphocytes during inflammatory processes.

Animals↗

Astrocytes of the brain synthesize interleukin 3-like factors.

Interleukin 3 (IL 3) is produced by T lymphocytes and T cell lines, as well as by a myelomonocytic cell line (WEHI-3), and it activates lymphocytes and mast cells, as well as macrophages. Recently we have demonstrated that astrocytes act as immune accessory cells through the secretion of interleukin 1 and the presentation of antigens to T lymphocytes. Here we show that cultured astrocytes from newborn mice release a 30,000 m.w. factor that induces the expression of 20-alpha-hydroxysteroid dehydrogenase in nu/nu spleen cells and the proliferation of the IL 3-dependent cell line 32DCL. An analogous biological activity was detected in supernatant of cultured rat C6 glioma cells. Production of IL 3-like factors by astrocytes of the central nervous system may be essential for development and maintenance of hemo and lymphopoietic cells within inflammatory brain lesions.

Animals↗

Granuloma pouch assay. IV. Induction of sister-chromatid exchanges in vivo.

SCEs were induced, in vivo, in cells of a rapidly proliferating subcutaneous granulation tissue, initiated by the formation of a subcutaneous air pouch, on the backs of adult male rats (Granuloma Pouch Assay). 2 days after pouch formation the test compounds were applied, and 24 h later the granulation tissue was excised and dissociated into single cells. Isolated cells were cultured in vitro in media containing BrdU, and SCEs were determined within 24-48 h. The spontaneous frequency was 14.4 +/- 1.1 per metaphase. Mitomycin C (MMC) and cyclophosphamide (CP) induced a significant and dose-dependent increase in SCE frequencies. Results obtained after i.v., i.p. and intra-pouch application routes are compared.

Animals↗