PubMed Health⌕ Search

Biomedical subjects

R Biassoni

Publications and source records attributed to R Biassoni.

At least 91 records · Page 5Linked to original sources

Specific lysis of allogeneic cells after activation of CD3- lymphocytes in mixed lymphocyte culture.

Human CD3- lymphocyte populations were obtained by treating peripheral blood lymphocytes with mAbs directed to CD3, CD4, and CD8 surface antigens. The resulting populations were cultured with irradiated allogeneic cells; at day 4, 100 U/ml IL-2 were added and cultures continued for an additional 10 d. The resulting populations were CD3-CD2+CD7+ and displayed cytolytic activity against PHA-induced blast cells bearing the stimulating alloantigens but not against autologous or unrelated allogeneic blast cells. When CD3- populations were cultured with irradiated autologous cells, no cytolytic activity could be detected either against autologous or allogeneic blast cells. On the other hand, K562 target cells were lysed by both MLC-derived CD3- cell populations regardless of the origin (autologous or allogeneic) of the stimulating cells. CD3- clones were further derived from MLC-stimulated CD3- populations. These clones displayed a cytolytic pattern similar to the original MLC populations as only specific PHA blasts could be lysed. These clones did not express detectable surface TCR-alpha/beta or -gamma/delta molecules and lacked productive mRNA for TCR alpha and beta chains, while small amounts of TCR-gamma mRNA were detectable in one of four clones tested. Also mRNA for CD3 gamma and delta chains were undetectable in all clones, however, CD3 epsilon mRNA was consistently present.

Antigens, Differentiation, T-Lymphocyte↗

CD3-negative lymphokine-activated cytotoxic cells express the CD3 epsilon gene.

The expression of genes encoding different polypeptide chains of the TCR-CD3 complex was analyzed in a panel of cloned MHC-unrestricted cytotoxic cells. The clones were derived from CD3+ and CD3- human PBL. After expansion in rIL-2, all clones were able to lyse the NK-sensitive target cell line K562. In contrast, lysis of fresh tumor cells was achieved almost exclusively by CD3- clones. To test whether a known TCR-CD3 complex may be involved in MHC-unrestricted cytotoxicity, total RNA from nine CD3+ and 11 CD3- clones was isolated and hybridized with DNA probes for the TCR alpha-, beta-, and gamma-chains and for the CD3 gamma-, delta-, and epsilon-chains. TCR gamma transcripts were present at high levels in CD3+CD4- CD8- clones but were undetectable in all CD3- clones. Lysis of fresh tumor cells is an activity which can be independent of the TCR alpha beta and TCR gamma complexes because the CD3- clones did not express these TCR genes. Interestingly, all CD3- clones expressed CD3 epsilon transcripts, but not CD3 gamma- or delta-transcripts. CD3- lymphokine-activated cytotoxic cells may therefore be derived from immature T cells which do not yet express a complete CD3 complex. The CD3 epsilon chain, if expressed in CD3- cells in association with other molecules, could be involved in the activation and lytic function of these MHC-unrestricted cytotoxic cells.

Antigens, Surface↗

The control of membrane and secreted heavy chain biosynthesis varies in different immunoglobulin isotypes produced by a monoclonal B cell lymphoma.

The control of production of the membrane (m) vs secreted (s) forms of immunoglobulin heavy chains was investigated in a panel of cell lines expressing different heavy chain classes but identical light chains (lambda) and variable regions. These cell lines could be induced towards Ig secretion by mitogen treatment. During this process a shift from m to s heavy chain production takes place. Here we show that, similarly to IgA- and IgE-producing B cells, in IgG2a-producing I.29 cells the gamma m-gamma s shift was accompanied by a shift in the corresponding mRNAs, with a decrease of gamma m mRNA and an increase of the gamma s mRNA in LPS-stimulated cells. By contrast, the micron mRNA was increased in LPS-stimulated IgM-producing cells, albeit these cells synthesized reduced amounts of micron polypeptides. The utilization of the translational level in the early steps of B lymphocyte maturation thus distinguishes the mode of regulation of mu chains from those of the other isotypes. In addition, in B cells a post-translational event blocks the secretion of IgM but not of IgG or IgE.

Animals↗

Analysis of signal transducing mechanisms in CD3+ CD4- CD8- cells expressing the putative T cell receptor gamma gene product.

The signal transducing mechanisms, involved in the activation of CD3+ WT31- cells bearing the putative products of T cell receptor gamma genes, have been investigated. After stimulation with phytohemagglutinin or with monoclonal antibodies directed against CD2 or CD3 surface molecules, a rapid increase in free cytoplasmic Ca2+ concentration rise was detected in one representative CD3+ WT31- clone and in PEER cell line. Experiments performed in the presence of the Ca2+ chelator EGTA indicated that the free cytoplasmic Ca2+ concentration rise was consequent to an early release of Ca2+ from internal stores, followed by a sustained Ca2+ influx from the extracellular compartment. Moreover, increased levels of inositol-3-phosphate (the putative mobilizer of Ca2+ from the intracellular stores) were observed after stimulation, thus suggesting that activation of this cell subset occurs via the classical inositol-lipid metabolic pathway.

Antibodies, Monoclonal↗

Characterization of CD3+, CD4-, CD8- clones expressing the putative T cell receptor gamma gene product. Analysis of the activation pathways leading to interleukin 2 production and triggering of the lytic machinery.

Four clones were derived from human peripheral blood T lymphocytes from which CD4+ and CD8+ cells had been removed by treatment with specific mAbs and complement. All expressed the CD2+, 3+, 4-, 8-, T44- phenotype, and did not react with the WT31 mAb, which is specific for a framework determinant of the CD3-associated alpha/beta heterodimer which serves as receptor for antigen on most human T lymphocytes. Surface iodination followed by crosslinking with dithiobis-succinimidyl propionate (DSP) and immunoprecipitation with anti-CD3 mAbs indicated that, in all four clones, the CD3-associated molecules consisted of a major 45 kD band and a minor band of 43 kD. Northern blot analysis showed that mRNA for the gamma chain was expressed at high levels, whereas mRNA for the alpha chain was missing; beta chain mRNA was present in a defective form (1 kb instead of 1.3 kb). These data support the concept that these clones may express, in association with CD3, the molecular product of the T cell receptor gamma genes instead of the typical alpha/beta heterodimer. CD3+, WT31- clones lysed the NK-sensitive K562 target cells and produced IL-2 upon stimulation with PHA. In addition, they released IL-2 after triggering with soluble anti-CD3 mAbs or with an appropriate combination of anti-CD2 mAbs (in the presence of adherent cells). When CD3+, WT31- clones were incubated with an anti-CD3 producing hybridoma as triggering target, the latter was efficiently lysed. Target cell lysis also occurred when a suitable combination of anti-CD2 mAbs-producing hybridomas was used. Therefore, CD3+, WT31- cells appear to use two pathways of cell activation that function also in conventional CD3+, WT31+ T cells, but they lack a third putative pathway initiated by T44 surface molecules.

Antibodies, Monoclonal↗

Differentiation in the murine B cell lymphoma I.29: individual mu + clones may be induced by lipopolysaccharide to both IgM secretion and isotype switching.

Cells from the monoclonal B cell lymphoma I.29 expressing surface IgM (mu +) are capable of differentiating in vitro to IgM secretion and of switching to IgA or IgE production in response to lipopolysaccharide (LPS) stimulation. To determine whether a single mu + B cell is capable of undertaking both differentiative pathways (isotype switch and plasma cell differentiation) I.29 mu + cells were cloned by limiting dilution and a panel of clones were analyzed by immunofluorescence, endogenous labeling and Northern blotting. While 100% of the clones could differentiate toward IgM secretion, only a proportion of them (greater than 70%) also switched to IgA and/or IgE production. Certain clones switched preferentially to a specific isotype. Taken together with the observation that C gamma genes were never the target of switching in our experiments, these data suggest that individual mu + clones from the I.29 lymphoma are "precommitted" as for their switching potentials. The subclones that showed a high frequency of switching to IgA transcribed the germ line C alpha gene(s), suggesting a role for chromatin structure in determining the isotype switch specificity. Switch variant clones expressing either IgA or IgE on the cell surface were isolated and found capable of further differentiating toward Ig secretion in response to LPS. On the contrary, we could not induce switch to IgA in IgE-producing cells. Unlike mu + and alpha + cells, all the switch variant clones expressing IgE tested by endogenous labeling constitutively secreted large amounts of IgE in the supernatants even in the absence of LPS stimulation.

Animals↗

Clonal analysis of T lymphocytes infiltrating the thyroid gland in Hashimoto's thyroiditis.

T cells isolated from thyroid tissue and peripheral blood of 2 patients with Hashimoto's thyroiditis were studied by a high cloning efficiency microculture technique. Clonal efficiencies of 37 and 24% were obtained from thyroid-derived T cell cultures, while 40 and 90% efficiencies resulted from peripheral-blood-derived cultures. A prevalence of T4-/T8+ T cell clones were found in thyroid infiltrates. The functional analysis of the clones demonstrated significantly higher proportions of clones with cytolytic activity in a lectin-dependent assay in thyroid-derived microcultures, as compared to peripheral blood-derived ones. The proportion of clones displaying natural-killer-like activity was increased in 1 patient only. Cytolytic activity was displayed not only by all T4-/T8+, but also by several T4+/T8- intrathyroid clones. Remarkable proportions of cytolytic clones were also able to release interleukin-2 upon phytohemagglutinin stimulation. Finally, the proportion of T cell clones able to release gamma-interferon following mitogen stimulation was significantly higher in thyroid- vs. peripheral-blood-derived microcultures. These results provide further data about the possible pathogenetical role of both regulatory and effector T lymphocytes in human autoimmune thyroiditis.

Adult↗

Cyclosporin-A inhibits IL-2 production by all human T-cell clones having this function, independent of the T4/T8 phenotype or the coexpression of cytolytic activity.

Cyclosporin A (CsA) is an immunosuppressive drug that acts, at least in part, by blocking IL-2 release. Since IL-2-producing human T cells are heterogeneous with respect to their functional capabilities and surface phenotype, we investigated whether differences in sensitivity to CsA existed among different IL-2-producing T-cell clones. Preliminary dose/response experiments showed that 100 ng/ml CsA completely inhibited the PHA- or OKT3-induced IL-2 production by four representative T4+/T8- clones. On the other hand, this drug concentration had virtually no inhibitory effect on the proliferation of CTL-L murine indicator cells to exogeneous IL-2. Clones were derived directly from peripheral blood by applying a microculture system that allows clonal expansion of essentially all T cells: under these experimental conditions growing clones are therefore highly representative of the starting T-cell populations. Among clones so derived, 28 were selected according to their capability to release IL-2 upon PHA stimulation. Six of such clones displayed cytolytic activity in a PHA-dependent assay against P815 murine target cells. CsA (100 ng/ml) abrogated IL-2 production of all clones, including those displaying cytolytic activity and expressing the T4-/T8+ phenotype.

Clone Cells↗

Clonal analysis of T lymphocytes isolated from ovarian carcinoma ascitic fluid. Phenotypic and functional characterization of T-cell clones capable of lysing autologous carcinoma cells.

T lymphocytes isolated from ascitic fluid of patients with stage III-IV ovarian carcinoma were cloned by means of a microculture system that allows cloning of virtually all peripheral blood human T lymphocytes. Under these experimental conditions, 15% to 42% of ascitic T cells gave rise to clonal progenies that were analyzed for different functional capabilities. Of the clones obtained, 36%-70% had cytolytic activity in a PHA-dependent assay (using P815 as target cells) that allowed detection of cytolytic cells of any specificity. About one-half of the cytolytic clones lysed the NK-sensitive K562 target cells as well. In addition, 30%-50% of the total clones released IL-2 upon stimulation with PHA for 24 hr. In all patients analyzed a variable proportion (11%-56% of all cytolytic clones) had cytolytic activity against autologous tumor cells. Some of these clones have been analyzed in more detail: 18/21 expressed the T4-T8+ phenotype, whereas the remaining 3 were T4+ T8-. Only one out of 6 clones tested lysed allogeneic ovarian carcinoma cells as well, while 5/8 had a definite NK-like activity. Finally, all 8 clones tested were inhibited by anti-T11 and 7/8 by anti-T8 monoclonal antibody.

Antibodies, Monoclonal↗

Selective effects of thiol reagents on the binding sites for imipramine and neurotransmitter amines in the rat brain.

The action of the antithyroid drugs methimazole (MMI) and propylthiouracil (PTU) on the binding of [3H]-imipramine, [3H]-5-hydroxytryptamine [3H]-5-HT) (to 5-HT1-receptors) and [3H]-spiperone (to 5-HT2-, D2-receptors) of rat brain membranes has been examined. The synaptosomal uptake of [3H]-5-HT was also studied. Micromolar concentrations of the disulphide bond reducing agents MMI, PTU, dithiothreitol (DTT) and mercaptoethanol increased both the binding of [3H]-imipramine and the uptake of [3H]-5-HT. In contrast, they decreased the number of 5-HT1-receptors, and did not affect 5-HT2-and D2-sites. Reaction with membrane-bound sulphydryl (SH) groups by micromolar concentrations of N-ethylmaleimide (NEM), hydroxymercuribenzoic acid (PCMB), or Ellman's reagent (DTNB) decreased the binding of [3H]-imipramine, the number of 5-HT1-receptors, and the uptake of [3H]-5-HT. Millimolar concentrations of NEM were necessary in order to decrease partially 5-HT2- and D2-receptors. The effects of NEM on imipramine recognition sites and on the uptake of 5-HT could be prevented by DTT; protection was not obtained in other receptor systems. Three groups of receptors have been, thus, postulated, based upon their different sensitivity towards alterations in membrane [disulphide bridges in equilibrium SH] equilibrium: Group I, including imipramine recognition sites and the uptake system for 5-HT; Group II, including 5-HT1-receptors; Group III, including 5-HT2-and D2-receptors.

Animals↗

Effects of neonatal dysthyroidism on serotonin type 1 and type 2 receptors in rat brain.

Long-Evans, male and female rats born of mothers kept on an iodide-rich diet prior to delivery and during lactation, were fed this diet after weaning, thus becoming slightly hypothyroid. A more severe hypothyroidism was also provoked with the chronic administration of methimazole to Long-Evans iodide-supplemented, or Charles River iodine-deprived pups through the first month of age. Additional Long-Evans rats were made hyperthyroid with a daily injection of triiodothyronine (T3) through the first 29 days of age. Severe hypothyroidism in both strains of rats markedly increased the density of serotonin type 1 (5-HT1) and type 2 (5-HT2) receptors in the brain (less cerebellum, corpus striatum and olfactory bulbs) at 31-32 days of age. Receptor alterations were not correlated to either the rise in thyrotropin (TSH) levels in hypothyroidism or the direct influence of residual methimazole after the last treatment, or to neonatal malnutrition. This increase in 5-HT receptor density might represent an adaptive (supersensitivity) postsynaptic response to the state of central serotonergic hypofunction occurring in hypothyroidism. Though receptor alterations might be important, their precise functional role in the etiogenesis of hypothyroid-associated mental disturbances is difficult to ascertain.

Animals↗

Selective effects of neonatal hypothyroidism on monoamine oxidase activities in the rat brain.

Hypothyroidism of mild intensity was obtained with prenatal and neonatal submission of Long-Evans rats to an iodide-rich diet. Chronic daily administration of methimazole to iodide-supplemented Long-Evans pups or to iodine-deprived Charles-River rats through the first 29-30 days of age provoked severe hypothyroidism. Monoamine oxidase type A (MAO-A) and not type B (MAO-B) activity was consistently, although slightly (by approximately 20%), increased in the hypothyroid brain. Triiodothyronine (T3)-induced hyperthyroidism did not affect MAO activity. Replacement therapy with T3 did not normalize MAO-A activity in hypothyroidism. Methimazole displayed a competitive and reversible in vitro inhibition of MAO-A but not MAO-B activity. Although this effect was obtained at concentrations far higher than those estimated to reach the brain after a single injection of the goiterogen, the occurrence of accumulation processes in the metabolism-deficient hypothyroid neonate rats cannot be excluded. Thus, MAO-A activity might be either directly depressed during the goiterogenic treatment, or increased as the result of some kind of rebound effect after interruption of methimazole administration.

Animals↗

Gonadal influences on the inhibition of monoamine oxidase type B activity.

Monoamine oxidase type B (MAO-B) was similarly active in the hypothalamus of 60-day-old male and female Charles River rats. A single, 2 mg/kg IP injection of deprenyl, however, resulted in a significantly greater inhibition of hypothalamic MAO-B in normal males than in normal females. Repeated administration of estrogen (estradiol valerate) to intact males postnatally, a treatment which disrupts the masculinization process, although not provoking true "feminization," decreased the inhibition of MAO-B, thus abolishing the sex-specific difference. The intensity of deprenyl-provoked hypothermia and ptosis in males exceeded that of females; neonatal and postnatal estrogenization of males resulted in diminution of these effects. Androgen administration to neonate females did little affect the biochemical and in vivo parameters of MAO inhibition. It is concluded that sex-specific, biochemical differences in MAO-B inhibition may have pharmacological correlates, and both facets of MAO inhibition are sensitive to neonatal exposure to estrogen.

Animals↗

Constancy of adult hypothalamic tyrosine hydroxylase after gonadal steroid treatment during development.

Tyrosine hydroxylase (TH) was studied in the entire hypothalamus of 60-day-old male and female rats, and its activity was similar in both sexes. Administration of estrogen or androgen to male or female pups soon after birth and during development did not affect the kinetic parameters of TH. It is, thus, suggested that sexual dimorphism in the levels and turnover of catecholamines (CA) and their sensitivity to fluctuations in gonadal steroids during development do not depend on corresponding sex-related or steroid-sensitive differences in the synthesis of hypothalamic CA.

Aging↗

Gonadal influences on the sexual differentiation of monoamine oxidase type A and B activities in the rat brain.

The sex-dependent differentiation of monoamine oxidase (MAO) in the hypothalamus of 60-day-old, Charles River rats was found to involve only type A (MAO-A), and not type B (MAO-B) enzyme. In vivo inhibition of type A by clorgyline, and type B by (--)deprenyl, however, tended to decrease the specific activity of both types of MAO to a smaller extent in the female than in the male hypothalamus. When masculinization was prevented by neonatal administration of estradiol (E) to males, hypothalamic MAO-A and MAO-B activities increased in both control and MAO-inhibited rats. Androgenization of females, however, had little effect on the MAO activity. Whereas the effects of neonatal estrogenization were attributable neither to a direct influence of E nor to a sexual difference in the peripheral clearance of the MAO-inhibitor used, single, high doses of steroids to adult, but not to newborn rats, did acutely affect the kinetics of MAO-A. The activity of MAO-A was also decreased by high concentrations of E or TS in vitro. The imprinting for patterns of hypothalamic MAO-A and MAO-B in the two sexes results, probably, from genetic predetermination. Neonatal changes in the homeostasis of gonadal hormones may result in type-MAO nonspecific effects in adulthood, whereas the short-term effects of high concentrations of steroids may be selective for the A form.

Animals↗

Cytolytic activity of T lymphocytes isolated from ovarian carcinoma ascitic fluid. Analysis at the population and clonal level.

T lymphocytes were isolated from ascitic fluid of three patients with ovarian carcinoma at III-IV stage. Surface markers analysis of such purified T cells revealed that T8+ cells were well represented among ascitic T lymphocytes (from 35 to 56%). Low percentages of activated T cells, as indicated by HLA-DR and TAC (interleukin-2 receptor) positivity, were also present. However, fresh ascitic T lymphocytes failed to lyse autologous tumor target cells in a 4-h 51Cr release assay. Furthermore, by applying a limiting dilution microculture system that allows optimal conditions for cloning of human T lymphocytes, we derived clones from these populations. From 41 to 63% of clones so obtained had cytolytic activity in a lectin-dependent assay allowing detection of cytolytic T cells of any specificity. More importantly, in all three patients several clones were found to lyse autologous tumor target cells as well. Some of these clones have been studied in more detail: 9 out of 10 expressed the T8+/T4- phenotype, whereas only one was T8-/T4+; 6 out of 9 clones had a definite NK-like activity, while none of them lysed autologous PHA-lymphoblasts.

Ascitic Fluid↗