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M Stoeck

Publications and source records attributed to M Stoeck.

16 recordsLinked to original sources

Distinct effects of phorbol esters and exogenous diacylglycerols in the induction of murine thymocyte proliferation.

Murine thymocytes were stimulated with the protein kinase C activating agents Phorbol-12-myristate-13-acetate (PMA) or a more physiological membrane permeant diacylglycerol (dioctanoyl-sn-glycerol, DiC8) in the presence or absence of exogenous lymphokines (rIL-1 beta, rIL-2). Whereas PMA directly induced reactivity to rIL-2, DiC8 did not but had to synergize with the calcium ionophore Ionomycin. Expression of the p55 chain of the IL-2 receptor behaved similarly. In the absence of exogenous rIL-2, thymocytes proliferated in response to a combination of Ionomycin and PMA; however, replacing PMA by a single addition of DiC8 did not result in proliferation. Stimulation with Ionomycin plus repeated addition of DiC8 induced a low level of thymocyte proliferation and further addition of rIL-1 beta resulted in a significant increase. Purified immature (L3T4-Lyt2-) thymocytes behaved similarly, but showed an increased sensitivity to rIL-1 beta. Taken together, the data support the idea that PMA and the more physiological diacylglycerols do not possess totally equivalent activities in lymphocyte stimulation.

Animals

Cytotoxic potential despite impaired activation pathways in T lymphocytes infiltrating nasopharyngeal carcinoma.

Nasopharyngeal carcinoma (NPC) is an epithelial tumor consistently associated with EBV. The histological picture is characterized by a strikingly abundant lymphocytic infiltrate. Furthermore, the epithelial tumor cells present several immunological characteristics which suggest an important role for tumor-infiltrating lymphocytes (TIL) in the biology of this tumor. The present study reports the phenotypic and functional characterization of TIL from NPC obtained after enzymatic digestion of 15 NPC biopsies. Flow cytometric analysis of TIL suspensions indicated that most TIL were mature CD3+ T lymphocytes (mean = 60%) with a variable CD4/CD8 ratio. Most TIL were TCR alpha/beta-positive (mean = 55%) and only a few TCR gamma-delta-positive cells could be identified. A small percentage (mean = 9%) displayed an activated phenotype (CD25+, HLA class II+). Using limiting dilution analysis, we found that the average frequency of proliferative T-lymphocyte precursors (PTL-P) is lower among TIL (1/40) than in autologous (1/7) or normal PBL (1/1.4). Moreover, sorting experiments have shown that this defect is significantly more pronounced in the CD8+ than in the CD4+ TIL subset. Accordingly, the TCR and the CD2-mediated antigen-independent pathways of activation were impaired. Different types of cytotoxic precursor could be detected. These included lectin-dependent cell cytotoxicity (LDCC) and NK-like or lymphokine-activated killer (LAK) activity. Interestingly, some TIL from NPC were able to lyse an NPC tumor (C15) maintained in nude mice. Thus, despite impaired activation pathways, the cytolytic potential of proliferating TIL in NPC is preserved.

Adolescent

Effect of transforming growth factor beta on the EL4 thymoma variant EL4/6.1: dissociation of inhibition of proliferation from expression of IL-1 and IL-2 receptors.

In order to further characterize the action of transforming growth factor beta (TGF-beta) on lymphoid cells, we investigated the effects of porcine TGF-beta 1 and -2 on the IL-1 sensitive EL4/6.1 thymoma cell line. The proliferation of EL4/6.1 thymoma cells was inhibited by TGF-beta 1 and TGF-beta 2 (1 ng/ml) to a similar degree, the population doubling time was increased by 50-60%, total inhibition was not achieved. This decrease of proliferation was associated with an increase of the number of cells in the G0/G1 compartment of the cell cycle. TGF-beta-mediated inhibition could not be overcome by adding exogenous rIL-1 nor was the binding capacity for IL-1 reduced. In addition, TGF-beta did not interfere with the induction of IL-2 receptors by a combination of Ionomycin+PMA+IL-1. The data suggest that TGF-beta mediated inhibition of thymocyte/lymphocyte proliferation is not associated with an inhibition of the expression or the induction of expression of IL-2 or IL-1 receptors.

Animals

Stimulation of FACS-analysed CD4+ and CD8+ human tumour-infiltrating lymphocytes with ionomycin + phorbol-12,13-dibutyrate does not overcome their proliferative deficit.

Human tumour-infiltrating lymphocytes (TIL) were prepared by enzyme digestion from a series of different tumours and were purified on a fluorescence-activated cell sorter (FACS II) according to their CD4+ and CD8+ phenotype. CD4+ and CD8+ TIL were stimulated separately in a low density microculture system with phytohaemagglutinin (PHA) or with ionomycin plus phorbol-12, 13-dibutyrate (PDBu). The PHA-induced proliferation of TIL was highly decreased when compared with control peripheral blood lymphocytes. A decreased proliferation of TIL was also observed when cells were stimulated with ionomycin plus PDBu, a combination which is thought to circumvent early events associated with lymphocyte activation. Some TIL were also plated in limiting dilution where they showed decreased frequencies of proliferating T cell precursors. The data suggest that one component of the inhibition of TIL must be acting 'downstream' of the early events of lymphocyte activation.

CD4-Positive T-Lymphocytes

Comparison of the immunosuppressive properties of milk growth factor and transforming growth factors beta 1 and beta 2.

The effects of the newly isolated bovine milk growth factor (MGF) which shows N-terminal homology to transforming growth factor beta 2 were compared with the effects of porcine transforming growth factor beta 1 and beta 2 (pTGF-beta 1 and -beta 2) on human T lymphocyte activation. Freshly isolated human PBMC were stimulated with either PHA, anti-CD3 + phorbol-12,13-dibutyrate (PDBu), or with a combination of ionomycin + PDBu. MGF, pTGF-beta 1, and pTGF-beta 2 decreased mitogen-induced [3H]thymidine incorporation by 30 to 75% in a dose-dependent manner. The maximum degree of inhibition was obtained at 1 ng/ml (40 pM) and could not be increased by increasing the concentration of teh transforming growth factor 10-fold. Stimulation of fresh T cells with the recall Ag tetanus toxoid was also inhibited (85%) by MGF at pM concentrations as was the proliferation of a human T cell clone specific for purified protein derivative. The effects of MGF and pTGF-beta 1 on anti-CD3-mediated increase of intracellular Ca2+ (Cai2+) was investigated by using the Fura-2 method. Neither MGF nor pTGF-beta 1 inhibited this increase in Cai2+ induced by a mitogenic concentration of anti-CD3 antibody. In order to determine whether TGF-beta preferentially inhibited the CD4+ or CD8+ subpopulation of human T cells, a limiting dilution analysis system, which allows every T cell to proliferate, was used. pTGF-beta 1 at a concentration of 5 ng/ml decreased the frequency of proliferating T cell precursors of both the CD4+ and CD8+ subsets to a similar extent. Furthermore, MGF, pTGF-beta 1, and pTGF-beta 2 also decreased IL-2 mediated [3H]thymidine incorporation into human PBL Con A blasts and the IL-4-mediated [3H]thymidine incorporation of purified T lymphocytes costimulated with PDBu by 70%. In conclusion, bovine MGF exerts suppressive effects on human T cells stimulated with Ag, mitogens, or interleukins, and the degree of T cell suppression is similar (or identical) to those of pTGF-beta 1 or -beta 2.

Animals

Transforming growth factors beta 1 and beta 2 as well as milk growth factor decrease anti-CD3-induced proliferation of human lymphocytes without inhibiting the anti-CD3-mediated increase of [Ca2+]i and the activation of protein kinase C.

Porcine transforming growth factor 1 and 2 (pTGF-beta 1 and -beta 2) and milk growth factor (MGF) at 1 ng/ml significantly inhibited the proliferation of human lymphocytes induced by anti-CD3 antibodies. In contrast, the anti-CD3-mediated increase of intracellular Ca2+ and the activation and translocation of protein kinase C were not affected by the transforming growth factors.

Animals

Comparison of phorbol-12-myristate-13-acetate and dioctanoyl-sn-glycerol in the activation of EL4/6.1 thymoma cells.

The present study compared the role of two protein kinase C (PK-C) activating agents, the phorbol ester phorbol-12-acetate-13-myristate (PMA) and the membrane-permeating diacylglycerol dioctanoyl-sn-glycerol (DiC8) in the activation of EL4/6.1 thymoma cells. These cells have been shown to express interleukin-2 receptors (IL-2R) upon stimulation with optimal amounts of PMA (10 ng/ml); also, suboptimal amounts of PMA (1 ng/ml) synergized with the Ca2+ ionophore ionomycin and recombinant interleukin-1 (rIL-1) (Lowenthal et al., 1986). Comparing PMA and DiC8 led to the following results: PMA at 10 ng/ml induced IL-2R; in contrast, DiC8 (30-3 micrograms/ml) alone was unable to induce IL-2R, although it did synergize with ionomycin (0.5 micrograms/ml) and rIL-1. Bihourly additions of DiC8 did not change this pattern. The addition of DiC8 together with rIL-2 also resulted in no IL-2R expression. Furthermore, DiC8 (10 micrograms/ml) effectively translocated PK-C. Therefore, the differences observed between PMA and DiC8 do not seem to be due to differences in metabolism or to an inability to translocate PK-C. Analysis of messenger (m) RNA produced in stimulated EL4/6.1 cells revealed that DiC8 was also unable to induce mRNA for IL-2R. Our data suggest that PMA, especially at "optimal" concentrations, might have effects that cannot be mimicked by diacylglycerol. Furthermore, it seems that the deficient activity of diacylglycerols can be compensated for by a Ca2+ ionophore and, depending on the cellular system, by further signals such as IL-1.

Animals

Transforming growth factors beta slow down cell-cycle progression in a murine interleukin-2 dependent T-cell line.

Transforming growth factors beta (TGF-beta) inhibit the growth of a variety of cell types, including lymphocytes. The immunosuppressive effects of TGF-beta have been attributed to the interference of these molecules with the interleukin-2 (IL-2)-driven component of lymphocyte proliferation. In order to elucidate in more detail the effects of TGF-beta on IL-2-induced proliferation, we investigated the effects of porcine transforming growth factor beta 1 and 2 (pTGF-beta 1 and 2) on the IL-2-driven proliferation of a murine IL-2-dependent T-lymphocyte line (CTLL). The results showed that pTGF-beta 1 and 2 decreased 3H-thymidine incorporation in CTLL cells in a dose-dependent fashion (maximum decrease of 75-85%). Combined-time kinetic analysis of the effects of pTGF-beta on 3H-thymidine incorporation, cell growth, and cell-cycle distribution (monitored as DNA content distribution) revealed that, in the first 48 h of culture, pTGF-beta 1 increased the doubling time from 11.4 to 19.2 h without significantly affecting the cell-cycle distribution of CTLL cells. After 96 h of culture in the presence of pTGF-beta 1, cells started to accumulate in G0/G1, although at this time point 30% of the pTGF-beta 1-treated cells were still in S-G2/M. Furthermore, during the first 48 h, neither the expression of the 55 kd chain of the IL-2 receptor (IL-2R) nor the expression of the transferrin receptor (TfR) was affected by TGF-beta. After 72 h of culture in the presence of pTGF-beta 1, the expression of the IL-2R and TfR was decreased. The data suggest that in CTLL cells TGF-beta initially slows the progression of cells in all phases of cell cycle. In addition, the initial TGF-beta-mediated decrease of IL-2-induced 3H-thymidine incorporation and cell proliferation in CTLL cells is not due primarily to downregulation of the IL-2R and/or TfR.

Animals

Preferential clonogenic deficit of CD8-positive T-lymphocytes infiltrating human solid tumors.

The vast majority of tumor infiltrating lymphocytes (TIL) are either CD4+ or CD8+ T-lymphocytes. In order to examine directly the functional capabilities of the individual CD4+ and CD8+ TIL subsets we performed cell sorting of double immunofluorescence-labeled TIL recovered from 15 biopsies by enzyme digestion. These CD4+ and CD8+ TIL subsets were compared with similar subsets of T-lymphocytes from peripheral blood of normal subjects. Both CD4+ and CD8+ TIL showed a reduced clonogenicity as assessed quantitatively by limiting dilution analysis in a microculture system which allows every normal T-lymphocyte to undergo clonal expansion. The reduced clonogenic potential was unequally distributed among the CD4+ and CD8+ subsets with the CD8+ TIL showing a significant reduction of the frequency of proliferating T-lymphocyte precursors compared to the CD4+ TIL (with a median of 1/50 proliferating T-lymphocytes in CD8+ TIL versus a median of 1/11 in CD4+ TIL). The reduced response of CD8+ TIL was not caused by suppressor cells, lack of surface expression of CD2 and CD3 antigens nor of the alpha, beta T-cell receptor, nor by an accumulation of CD8+ cells of large granular lymphocyte morphology. Using low density cultures, the highly purified CD4+ and CD8+ TIL were stimulated either via the T-cell receptor or the CD2-mediated antigen-independent pathway of activation. Whereas CD8+ TIL did not respond to either stimulus the CD4+ TIL showed evidence of responder and nonresponder groups. In addition, we show that the deficient response obtained by triggering CD4+ TIL via the TCR can be restored by activation of the antigen-independent pathway. Finally, a total of 94 clones from four different TIL samples were obtained by limiting dilution and examined for their respective helper and cytolytic capabilities: 57% of the CD4+ TIL clones were able to produce interleukin 2 and 93% of the CD8+ TIL clones demonstrated cytolytic activity mediated by the T-cell receptor complex, indicating that the functional potential of proliferating TIL is intact.

Aged

Proliferative and cytolytic potentials of purified human tumor-infiltrating T lymphocytes. Impaired response to mitogen-driven stimulation despite T-cell receptor expression.

Using limiting dilution analysis (LDA) we have previously shown that in most instances, the frequency (F) of proliferative T lymphocyte precursors (PTL-P) was strikingly reduced in tumor-infiltrating lymphocytes (TIL). In this study involving 19 cases, we show that the impaired clonogenic potential of CD2+ TILs is primarily caused by an intrinsic defect rather than to suppressor T cells or to a direct effect of the tumor cells usually present in the culture system. This was demonstrated by experiments in which the F of PTL-Ps was quantitated both in highly purified CD2+ TILs (using a cell-sorter) and in non-purified TIL suspensions (still containing tumor cells), which originated from the same biopsy specimen. The F of PTL-Ps was virtually identical in either sorted or nonsorted suspensions and the data from LDA were always consistent with the single-hit Poisson model, indicating that no suppressor cells interfered with growth of CD2+ TIL. Stimulation of sorted CD2+ TIL in low-density cultures by either phytohemagglutinin or anti-CD3-monoclonal antibody (MAb) indicated that the antigen-dependent activation pathway was impaired, although structurally intact T-cell receptor (TCR) complexes were apparently expressed, as assessed by immunofluorescence. The depressed proliferative response of CD2+ TIL could not be reversed in vitro when phorbol-esters were used in combination with ionomycin, which bypass the TCR. Nevertheless, 180 clones obtained from 8 cases were analyzed for their cytolytic activity. The majority mediated specific lytic activity (against unknown antigens), as assessed by lectin-dependent cell cytotoxicity, whereas only 6% of them manifested lymphokine-activated killing on appropriate targets.

Antigens, Differentiation, T-Lymphocyte

A sensitive, IL-2-independent, assay for IL-1.

The thymocyte costimulator (LAF) assay, the standard biological test used for IL-1 titration, has a low sensitivity and lacks specificity since it can be potentiated by the IL-2 which is frequently present in IL-1-containing biological fluids. We describe here a new IL-1 titration method which takes advantage of the capacity of a thymoma line, EL4-6.1, to differentiate and express IL-2 receptors upon stimulation by IL-1 in the presence of a suboptimal dose of phorbol diester. Membrane IL-2R measurement on this indicator cell line permits the detection of 1-2 X 10(-4) ng/ml IL-1, compared to 5 X 10(-2) ng/ml in the LAF assay. In addition, rIL-2 up to 250 U/ml has no effect on IL-1 measurement by this assay, which also exhibits a 100-fold lower sensitivity to inhibitory effects of prostaglandin, compared to the LAF assay. Finally, tumor necrosis factor alpha only exerts a weak costimulation effect at very high doses. A flow cytometry technique and an ELISA are described for IL-2 receptor detection. Due to its high sensitivity and specificity, this novel assay should now permit reliable IL-1 titration in biological fluids such as IL-2-rich lymphocyte culture supernatants.

Animals

Induction of responsiveness to IL 2 in Con A-stimulated rat lymphoid cells requires synergistic action of IL 1 and the accessory cell membrane.

Rat spleen or lymph node cells stimulated with Con A and cultured at a low density of 1 x 10(5) cells per ml proliferated in response to IL 2-containing supernatants and thus expressed receptors for IL 2. Cells depleted of accessory cells either by passage over a glassbead-column or by treatment with the lysosomotropic agent leucine methyl ester (Leu-OMe) did not proliferate in response to IL 2-containing supernatants. The diminished proliferative response after adherent cell depletion could be reconstituted by the addition of peritoneal exudate cells (PEC). Reconstitution could also be achieved by synergistic action of IL 1 and paraformaldehyde-fixed peritoneal exudate cells, indicating an important role for the accessory cell membrane in the induction of IL 2-mediated proliferation.

Animals

Induction of responsiveness to interleukin 2 in mouse lymphocytes by synergistic action of ionophore A 23187 and diacylglycerol.

We investigated whether the protein kinase C-binding agents 12-O-tetradecanoyl-phorbol-13-acetate (TPA) and 1-oleoyl-2-acetyl-rac-glycerol (OAG) induced reactivity to interleukin 2 (IL-2) in mouse lymphocytes. 10(-8) M TPA was a strong inducer of reactivity to IL-2 measured by [3H]thymidine incorporation. In contrast OAG alone (6-25 micrograms/ml) did not induce a significant IL-2 mediated proliferative response. Cells stimulated with the ionophore A 23187 + OAG neither proliferated nor produced IL-2. In contrast, cells stimulated with A 23187 + OAG + IL-2 showed a significant proliferative response, indicating the expression of functional high affinity IL-2 receptors. The expression of reactivity to IL-2 induced by A 23187 + OAG was inhibited by 0.04 mM Mn2+; in contrast the TPA-mediated induction of IL-2 responsiveness was not affected by Mn2+. The data suggest differences in the mechanism of induction of IL-2 responsiveness by the two protein kinase C-binding agents, TPA and OAG.

Animals

Studies on the mechanism whereby cyclosporin A inhibits T-lymphocyte activation.

The immunosuppressive drug Cyclosporin A (CyA) inhibited the ConA-induced DNA synthesis in C57B1/6 spleen cells at a concentration of 40 ng/ml totally; this inhibition could not be overcome by the addition of highly purified interleukin-1. ConA-induced RNA synthesis was also inhibited by concentrations of 40 or 200 ng/ml CyA, although total inhibition could not be achieved. In contrast, lipopolysaccharide-induced proliferation could not be inhibited. CyA at a concentration of 40 ng/ml also inhibited the ConA-induced production of interleukin-2 by mouse spleen cells, this inhibition was not due to a toxic mechanism. On the contrary, the proliferative response of T cell blasts from a long-term T cell line (M2) to interleukin-2 containing supernatants was not inhibited by concentrations of 40 or 200 ng/ml CyA; only at 20-100-fold higher concentrations partial inhibition could be observed. One of the earliest events in the course of lymphocyte activation, the enhanced incorporation of unsaturated fatty acids into the lymphocyte plasma membranes; was also inhibited by concentrations of CyA, which abrogated the ConA-induced DNA synthesis. The inhibition of the enhanced incorporation of 14C-oleic acid and 14C-linoleic acid, which are incorporated by the membrane-bound lysolecithin-acyltransferase, thus suggests a molecular site of action for CyA.

Animals