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P Erb

Publications and source records attributed to P Erb.

At least 55 records · Page 3Linked to original sources

Fas antigen is the major target molecule for CD4+ T cell-mediated cytotoxicity.

Activation of the Fas cell surface molecule, either by specific antibody or by its as yet unidentified ligand, has been shown to induce apoptosis. Because apoptosis is also evoked in target cells by cytolytic T cells, we investigated whether the Fas pathway is involved in CD4+ T cell-mediated cytotoxicity. Analysis of Fas expression in APC, such as the B lymphoma A20.2J and MHC class II-transfected fibroblasts RT2.3, revealed a correlation between the degree of expression and sensitivity to cytotoxic attack, high level of Fas expression in A20.2J being associated with efficient lysis. To examine whether increased Fas expression in RT2.3 would render these cells more susceptible to CD4+ CTL lysis, they were transfected with a Fas gene expression vector. Indeed, Fas- but not mock-transfected RT2.3 proved to be more sensitive to lysis by either Ag specifically or nonspecifically activated CD4+ CTL. Similarly, MHC class II-negative, Fas-transfected L1210 leukemia cells were lysed with nonspecifically activated CD4+ CTL. The importance of the Fas engagement in CD4+ CTL-mediated cytotoxicity is further substantiated by the failure of both cloned and normal CD4+ CTL to lyse B cell blasts from Ipr mice. These mice are known to have a defect in functional Fas expression. Although the bulk of CD4+ T cell-mediated lysis appears to be Fas induced, the fact that the effector phase of A20.2J lysis is only partially Ca2+ independent indicates that other pathways also contribute to target cell death.

Animals↗

Quantitative anti-p24 determinations can predict the risk of vertical transmission. Swiss HIV and Pregnancy Collaborative Study Group.

Quantitative serum antibody to p24 was evaluated as a predictor of risk of vertical transmission of human immunodeficiency virus type 1 (HIV-1) infection. HIV-positive mothers, 13 with HIV-infected children and 24 with noninfected children were investigated during pregnancy and at the time of delivery. A statistically significant difference in anti-p24 titers was found between the mothers with infected and those with noninfected children independent of whether antibodies were measured during pregnancy or at the time of delivery. High anti-p24 levels correlated with a low risk of vertical transmission, whereas low anti-p24 titers were associated with an increased risk of vertical transmission. Although the number of CD4+ T-cells was lower and neopterin and beta-2 microglobulin values were higher in the group of mothers with infected children than in the noninfected group, no statistical significance was achieved due to the small sample size.

Biopterins↗

Expression of nerve growth factor and nerve growth factor receptor tyrosine kinase Trk in activated CD4-positive T-cell clones.

Recent evidence suggests that nerve growth factor (NGF), in addition to its neurotrophic functions, acts as an immunomodulator mediating "cross-talk" between neuronal and immune cells, including T lymphocytes. We have analyzed murine CD4+ T-cell clones for their ability to express transcripts encoding NGF, low-affinity NGF receptor, and trk protooncogene, the signal-transducing receptor subunit for NGF. We show that two CD4+ T-helper (Th) clones, Th0-type clone 8/37 and Th2-type clone D10.G4.1, express NGF and Trk mRNA after appropriate activation with mitogen or with antigen and antigen-presenting cells. NGF and trk induction occurred to a similar extent and over a similar time course in activated 8/37 T cells, raising the possibility that NGF and trk genes are under coordinate control. NGF and NGF receptor expression does not seem to be a universal property of all activated CD4+ T cells, since Th1-type clone 9/9 did not express any of the transcripts after either stimulation. The absence of low-affinity NGF receptor mRNA in resting and activated T cells implies that the low-affinity NGF receptor is not involved in NGF signal transduction in CD4+ T cells. Our finding that activated CD4+ T-cell clones not only express Trk but also synthesize and release biologically active NGF implicates NGF as an autocrine and/or paracrine factor in the development and regulation of immune responses.

Animals↗

Use of the CTL44 cell line, a derivative of CTL/L cells, to identify and quantify mouse interleukin-4 by bioassay.

The isolation and characterization of a new and excellent indicator cell line for murine interleukin-4 (IL-4) bioassays, CTL44, is described. CTL44, a subline of CTL/L cells, is vigorously responsive to murine IL-4, but hyporesponsive to IL-2, requiring > 6 ng/ml (approximately 120 U/ml) of human IL-2 or > 80 U/ml of mouse IL-2 to induce IL-2 dependent proliferation. In CTL44 both IL-4 receptor mRNA accumulation and cell surface expression are detected, whereas IL-2 receptor expression appears to be absent. CTL44 cells maintained in IL-4 containing medium grow rapidly in a non-adherent fashion, and can be stored frozen in liquid nitrogen without loss of function.

Animals↗

Effects of a new protein kinase C inhibitor CGP 41251 on T cell functions: inhibition of activation, growth, and target cell killing.

The effects of CGP 41251, a specific inhibitor of protein kinase C (PKC), its inactive derivative CGP 42700, and of staurosporine have been analyzed in vitro on T lymphocyte functions. The proliferation of fresh human peripheral blood lymphocytes stimulated with antigen (PPD) or anti-CD3 mAb was strongly inhibited by both staurosporine (IC50 < 0.01 microM) and CGP 41251 (IC50 = 0.092 microM) but not by the PKC inactive compound CGP 42700 (IC50 > 10 microM). Antigen-specific activation and proliferation of mouse lymph node T cells was inhibited by staurosporine and CGP 41251 with IC50 values of 0.008 and 0.05 microM, respectively. The inactive derivative caused 50% inhibition in this mouse T cell assay only at concentrations of 25 microM. In order to evaluate possible differential effects of PKC inhibitors on CD4+ T cell subsets, murine T helper cell type 1 (Th1) and type 2 (Th2) clones were used. The KLH-specific clone 9/6 secretes IL-2 and IFN-gamma (Th1), whereas clone 9A/B does not secrete these lymphokines but secretes IL-4 and IL-5 (Th2). It was found that CGP 41251 inhibited antigen-induced proliferation of both Th1 and Th2 equally well with an IC50 of 0.02 microM. Furthermore, CGP 41251 inhibited the IL-2 or IL-2 and IL-4-mediated growth of Th1 and Th2 cells (IC50, 0.08 and 0.02 microM, respectively). Moreover, CGP 41251, but not CGP 42700, inhibited antigen-specific killing of target cells by Th1 clones (IC50 = 0.2 microM), a phenomenon which does not require cell proliferation. When Th1 cells were preincubated with the compound, washed, and rested for 24 hr, they killed the target cells, whereas killing by similarly preincubated, washed, but not rested Th1 cells was inhibited. Thus, the inhibitory effect of CGP 41251 is reversible and excludes the possibility of inhibition due to toxicity at the IC50 dose given. The comparison of CGP 41251 and staurosporine showed that although CGP 41251 has lower activity, it is more specific and much less toxic than staurosporine. Thus, CGP 41251 is more suitable for PKC studies.

Alkaloids↗

Acrodermatitis chronic atrophicans: a chronic T-cell-mediated immune reaction against Borrelia burgdorferi? Clinical, histologic, and immunohistochemical study of five cases.

BACKGROUND: Acrodermatitis chronica atrophicans (ACA) is a late manifestation of infection caused by Borrelia burgdorferi. OBJECTIVE: Our purpose was to study the clinical, histopathologic, and immunohistochemical findings in patients with ACA to understand better the pathogenesis of the disease. METHODS: Five patients were studied. Skin biopsy specimens were obtained from active lesions for histologic and immunohistochemical studies. RESULTS: Clinical lesions included an initial erythematous discoloration in one patient and violaceous infiltrated plaques and nodules in four patients, three of whom also had late atrophic lesions. Biopsy specimens showed a dermal perivascular and interstitial lymphocytic infiltrate with plasma cells. There was a predominance of CD3+, CD4+ T cells in the dermal infiltrate. B cells were present in three patients. The dermal infiltrate showed an intense expression of lymphocyte function-associated antigen. The intercellular adhesion molecule type 1 was expressed on endothelial cells, perivascular mononuclear cells, and focally on basal keratinocytes. CONCLUSION: Our findings suggest that a chronic, T-cell-mediated immune reaction against B. burgdorferi is involved in the pathogenesis of ACA.

Acrodermatitis↗

CD4+ T cell-mediated killing of major histocompatibility complex class II-positive antigen-presenting cells (APC). III. CD4+ cytotoxic T cells induce apoptosis of APC.

A subset of CD4+ T cells, belonging to the T helper type 1 (Th1) cells, kills antigen-presenting cells (APC) in an antigen-specific and major histocompatibility (MHC) class II-restricted way. Evidence is presented that CD4+ cytotoxic T lymphocytes (CTL) induce apoptosis or programmed cell death within susceptible APC as witnessed by quantitative DNA fragmentation. Apoptosis is more reliable to determine cell death than the 51Cr-release assay, because some cells demonstrate resistance to CD4-mediated lysis in the 51Cr-release assay. Apoptosis becomes manifest after 2 to 4 h of incubation preceding the disintegration of the target cells which is detectable between 12 and 24 h as measured by the 51Cr-release assay. Unstimulated B cells, which are not killed, but function as APC, do not undergo apoptosis, whereas lipopolysaccharide or anti-mu-activated B cell blasts show apoptosis and are efficiently lysed. Several CD4+ Th2-type cells tested, which did not demonstrate killing of APC as measured by the 51Cr-release assay, are unable to mediate programmed cell death of appropriate APC. Actinomycin D or cycloheximide, inhibitors of transcription and translation, respectively, fail to prevent apoptosis of APC excluding the involvement of newly synthesized soluble products as mediators of killing. Pretreatment of CD4+ CTL, but not of APC with 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid, a specific inhibitor of the anion transport, efficiently prevents apoptosis of APC, although the secretion of interleukins is not affected. We propose, that upon contact of the CD4+ CTL with APC, molecules of yet undefined nature are activated and released in a polar fashion at the contact site and induce the endogenous pathway of programmed cell death.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Repeated polymerase chain reaction complementary to other conventional methods for early detection of HIV infection in infants born to HIV-infected mothers.

The efficacy of a polymerase chain reaction (PCR) method for early detection of human immunodeficiency virus (HIV) in infants at risk for HIV infection was assessed. The PCR method was added to the routine laboratory test programme in these patients in 1988. PCR was performed in a total of 26 children at risk (age range 2 days to 58 months), including 17 infants born to HIV-infected mothers, who were followed up clinically from the time of birth for a mean period of 23 months (range 6 to 54) in a prospective study. Twelve children were PCR-positive. Eight had AIDS, ARC or symptoms suggestive of HIV infection. All these patients had at least one culture positive for HIV (6/8) and/or one positive serum p24-antigen test (5/8). One child was repeatedly PCR positive, but asymptomatic as well as virus- and antigen-negative. Three asymptomatic children with a single positive PCR result were PCR negative in subsequent tests. Fourteen children with negative PCR did not show clinical or immunological signs suggestive of HIV infection. Their cultures for HIV and antigen-p24 assays were negative. It is concluded that in addition to clinical and immunological parameters PCR is a useful technique for diagnosis of HIV infection in infants born to HIV-infected mothers. However, in case of negative HIV cultures and/or serum p24-antigen tests, single positive PCR results in asymptomatic patients must be interpreted with caution and should be confirmed by repeated tests.

Base Sequence↗

Functional heterogeneity of CD4-positive T-cell subsets: the correlation between effector functions and lymphokine secretion is limited.

Several effector functions and the lymphokine secretion pattern of 30 antigen-specific CD4+ T-cell clones have been investigated. The clones were generated directly by limiting dilution cloning of nylon wool-purified T-cells obtained from KLH immunized BALB/c mice and avoiding an initial bulk culture phase. Using this approach the CD4+ T-cell clones were grouped into helper and nonhelper subsets. Among the helper subset, clones which helped B-cells for specific antibody production by either cognate or noncognate recognition were identified. Some but not all of these helper clones fitted into the Th1 and Th2 scheme, if the lymphokine secretion pattern was evaluated. Among the nonhelper subset CD4+ clones which killed activated APC in a MHC class II-restricted and antigen-specific manner were identified. In addition, one clone which suppressed B-cell antibody production mediated by helper clones was found. However, neither the suppression of antibody responses nor the inability of the nonhelper clones to help B-cells is due to the killing of B-cells. Various attempts were made to convert nonhelper into helper clones and helper into killer clones, without success. Thus, the functional properties of these clones are stable traits and not convertible by varying the experimental conditions.

Animals↗

CD4+ T cell-mediated killing of MHC class II-positive antigen-presenting cells. I. Characterization of target cell recognition by in vivo or in vitro activated CD4+ killer T cells.

Ag-specific as well as Ia-restricted killing of certain APC by CD4+ T cells was investigated. The CD4-mediated killing is not only a characteristic of in vitro long term cultured T cell lines or clones, but is also manifest after in vivo priming. Thus, CD4+ killer T cells are generated in vivo as well. CD4+ killer T cells are detected in the Th1, but not in the Th2 subset, and they do not appear to lyse Ia+ APC or bystander cells by a pathway mediated by secreted T cell factors. The latter observation is demonstrated by cold target inhibition experiments as well as by the failure of puromycin to inhibit killing, if applied in doses which completely block lymphokine secretion. Ia+ APC differ in their susceptibility to lysis. Transformed APC are usually better lysed than nontransformed APC. Unstimulated B cells are not killed, while LPS-stimulated B cell blasts are killed. The results of cold target inhibition and bystander killing experiments suggest that CD4+ killer T cells are activated by the common pathway, i.e., by Ag presented in the context of Ia, but killing requires the recognition of additional determinant(s) on APC. It is proposed that these killing-inducing determinants are continuously expressed on most transformed Ia+ cells and on nontransformed but stimulated APC.

Animals↗

Expression of cellular effector functions and production of reactive nitrogen intermediates: a comparative study including T lymphocytes, T-like cells, neutrophil granulocytes, and mononuclear phagocytes.

The ability of various cell types to secrete reactive nitrogen intermediates (RNI) upon functional activation was comparatively assessed. Neither in T lymphocyte clones mediating MHC class I or class II antigen-restricted killing via alpha/beta T cell receptor (TcR) or MHC-unrestricted killing via gamma/delta TcR, nor in peripheral blood mononuclear cells expressing natural killer or lymphokine-activated killer activity, target cell lysis was associated with detectable RNI production. Also, activated neutrophil granulocytes did not secrete RNI. In contrast, bone marrow-derived mononuclear phagocytes, activated to express tumoricidal activity, secreted marked RNI activity.

Animals↗

A novel role for interleukin 2 in antibody responses: down-regulation of T helper cell activation.

This report provides new insights into the role of the T cell growth factor interleukin 2 (IL 2) for the regulation of antibody responses. Evidence is presented that IL 2 down-regulates T helper cell (Thc) activation but not Thc effector function, i.e., Thc-B cooperation. Thus, reagents which block the IL 2 pathway, e.g., cyclosporin A (CsA) or IL 2 receptor monoclonal antibodies (IL 2R Mab) enhanced Thc activation although T cell proliferation was blocked. In contrast, CsA or IL 2R Mab blocked Thc-B cooperation, suggesting that IL 2 is required for this step. The regulatory role of IL 2 was reconfirmed by the addition of exogenous IL 2 into the cultures which reversed the enhancing or blocking effect of CsA.

Animals↗

Peritoneal reaction to liquid silicone: an experimental study.

Silicone oils (polymethylsiloxanes) with different viscosities (200, 1000 and 5000 cSt) and a fluorinated silicone oil (5000 cSt) were injected into the peritoneum of CBA mice. Three weeks after the injection, peritoneal exudates were obtained and investigated using light and electron microscopy. For each silicone-oil type, light-microscopic examination revealed the presence of abundant extracellular lipid-like droplets and a dense cellular infiltrate composed of macrophages, lymphocytes and multinucleated giant cells. Lipid-like inclusions were observed in macrophages and multinucleated giant cells. These intracellular inclusions were revealed to be membrane bound by transmission electron microscopy. We observed no differences with respect to the amount of phagocytotic activity for the different silicone-oil types tested. Purified silicone oils of lower viscosity (OP 200 and OP 1000) resulted in the mildest chronic inflammatory reaction. Our results suggest that emulsification, phagocytosis and granulomatous inflammation are associated with intraocular silicone-oil implantation. The question of which properties would make a silicone oil most suitable for clinical use requires further investigation.

Animals↗

Murine spleen and lymph node cellular composition and function during cyclophosphamide and splenectomy induced resistance to Toxoplasma gondii.

Murine toxoplasmosis caused by a low virulence, cyst-forming strain of Toxcoplasma gondii (Pe strain) is characterized by splenomegaly, lymphadenopathy, decreased delayed-type hypersensitivity (DTH), and the presence of toxoplasma cysts in brain tissue. Cyclophosphamide (CY) in a single dose of 100 mg/kg injected 3 days before infection, or splenectomy 3 weeks before infection, augmented DTH and decreased the number of toxoplasma brain cysts. CY-induced augmentation of resistance during the first 3 weeks of murine toxoplasmosis was associated with: (1) an increase in mononuclear phagocytes and a decrease in T lymphocytes (including Lyt2+ cells) in spleens and lymph nodes; (2) suppressed toxoplasma antigen induced proliferation of cultured spleen cells: (3) augmentation of antigen induced proliferation of cultured lymph node cells; and (4) low levels of interferon-gamma production in both spleen and lymph node cultures. The best correlate of the enhanced in-vivo effects of CY was proliferation of nylon wool-purified lymph node cells to toxoplasma antigen. The presence of Lyt2+ cells in lymph nodes of toxoplasma infected mice inhibited maximal proliferation.

Animals↗

Astrocytes as antigen-presenting cells. Part II: Unlike H-2K-dependent cytotoxic T cells, H-2Ia-restricted T cells are only stimulated in the presence of interferon-gamma.

Various studies strongly suggest that astrocytes are potent immune-regulating cells. They can be activated to release prostaglandin E, interleukin-1- and interleukin-3-like factors. Cocultivation of antigen-specific T cell lines and astrocytes results in induction of Ia on astrocytes and antigen-specific proliferation of T cells. In the current study, astrocytes were found to be incapable of serving as stimulator cells when unprimed T lymphocytes were used as responders in syngeneic or allogeneic lymphocyte reactions. However, when interferon-gamma (IFN-gamma) was added, astrocytes became Ia positive and potent stimulators in both syngeneic or allogeneic lymphocyte responses. In the presence of IFN-gamma, astrocytes presented antigens to Ia-restricted T hybridoma cells; in contrast hapten was presented to Kb-restricted cytotoxic cloned T cells by astrocytes in the absence of IFN-gamma. Thus, cultured astrocytes do function directly as accessory cells in class I antigen-dependent T cell activation, whereas Ia induction by IFN-gamma is necessary to enable them to present antigen to class II antigen-restricted T cells.

Animals↗