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E R Podack

Publications and source records attributed to E R Podack.

At least 37 records · Page 2Linked to original sources

Perforin/Fas-ligand double deficiency is associated with macrophage expansion and severe pancreatitis.

We report that perforin/Fas-ligand double-deficient mice die early of severe pancreatitis. Female mice, in addition, are infertile and suffer from hysterosalpingitis. Tissue destruction is accompanied by infiltration with Mac-1 (CD11b)-positive monocytes/macrophages, Mac-1-positive T cells, and expansion of CD8+ T cells. In vivo inactivation of monocytes/macrophages by carrageenan reverses disease progression and restores fertility of female mice. Perforin/Fas-ligand double-deficient CD4+ or CD8+ CTL are unable to lyse cognate-activated macrophages, and therefore are unable to mediate negative feedback regulation by lysis of APCs, thereby preventing further T cell activation. These studies demonstrate a novel role for perforin in homeostatic regulation of the immune response.

Animals↗

Age-related decline of perforin expression in human cytotoxic T lymphocytes and natural killer cells.

In this study a flow cytometric technique for detecting cytoplasmic perforin (P) has been used to quantify age-related changes in perforin expression in human peripheral blood lymphocytes (PBL). Proportions of P+ lymphocytes increased after birth, but declined rapidly after the age of 70 years. This was true for both T cells and CD16(+) and CD56(+) natural killer (NK) cells. Children showed in addition to high levels of perforin positive CD8(+) cells a much higher proportion of CD4(+)P+ cells than the other age groups. In elderly individuals there was also a highly significant reduction in mean levels of perforin per cell as compared with all other groups (P < .05 to .001). Adult women had consistently higher mean levels of perforin per cell than adult men for all P+ cell phenotypes. Functional tests clearly showed the deficiency in early spontaneous cytotoxic potential of PBL from elderly persons due to relative P deficiency, which can be corrected by stimulation of cytolytic cells with target cells and interleukin-2 (IL-2). The deficiency in cytolytic activity on the contact with target cells may have implications for antiviral and antitumor immunity in elderly persons.

Adult↗

Expression of the costimulatory receptor CD30 is regulated by both CD28 and cytokines.

Costimulation was originally defined and characterized during primary T cell activation. The signaling events that regulate subsequent antigen encounters by T cells are less well defined. In this study we examined the role of CD30 in T cell activation and defined factors that regulate expression of CD30 on T cells. We demonstrate that CD30 expression is restricted to activated T cells and regulated by CD28 signal transduction. In contrast to CD28-expressing TCR Tg cells, CD28-deficient TCR Tg cells did not express CD30 when cultured with peptide and APCs. However, rIL-4 reconstituted CD30 expression on CD28-deficient TCR Tg cells. Blockade of CD28 interactions or depletion of IL-4 inhibited the induction of CD30, suggesting that both CD28 and IL-4 play important roles in the induction of CD30 expression on wild-type cells. However, CD28 signaling did not up-regulate CD30 expression solely through its ability to augment IL-4 production because IL-4-deficient T cells stimulated with anti-CD3 and anti-CD28 expressed CD30. Induction of CD30 in the absence of IL-4 was not due to the IL-4-related cytokine IL-13. CD30, when expressed on an activated T cell, can act as a signal transducing receptor that enhances the proliferation of T cells responding to CD3 crosslinking. Collectively, the data suggest that T cell expression of CD30 is dependent on the presence of CD28 costimulatory signals or exogenous IL-4 during primary T cell activation. Once expressed on the cell surface, CD30 can serve as a positive regulator of mature T cell function.

Animals↗

Consequences of Fas-ligand and perforin expression by colon T cells in a mouse model of inflammatory bowel disease.

BACKGROUND & AIMS: We describe a type of colitis that develops after transplantation of nonallogeneic wt bone marrow cells into T cell- and natural killer cell-deficient Tg26 mice (BM-->Tg26). In these animals, severe wasting and inflammation of the colon correlates with the expansion of mucosal T lymphocytes that displays cytotoxic activity. The aims of this study were to determine the relative contribution of perforin and Fas ligand (Fas-L) expression to the cytotoxic action of these T cells and to examine the influence of each pathway in this model of colitis. METHODS: Colonic T cells were tested for their ability to mediate Fas- and perforin-dependent killing in redirected cytotoxicity assays. Bone marrow cells from donor mice lacking either Fas-L (gld mice) or perforin (PFPnull mice) or both molecules were used to reconstitute Tg26 mice. RESULTS: Colon cytotoxic T lymphocyte displayed both Fas- and perforin-dependent killing. Deficiency in perforin, but not Fas-L, resulted in reduced incidence of wasting and, to a lesser extent, severe colitis in BM-->Tg26 animals. CONCLUSIONS: Colon T cells from BM-->Tg26 mice express both perforin and Fas-L. Although neither pathway is critical in the development of colitis, perforin does have a measurable influence on disease in the BM-->Tg26 colitis model.

Animals↗

Cytokine and cytotoxic pathways of NK cell rejection of class I-deficient bone marrow grafts: influence of mouse colony environment.

Mouse NK cells may use both cytokine, e.g. IFN-gamma, tumor necrosis factor (TNF)-alpha and IL-12, and cytotoxic, e.g. perforin and Fas-FasL, pathways to reject incompatible bone marrow cell (BMC) grafts. To begin a dissection of these two major pathways, mice bearing deletional mutations of IFN-gamma, TNF-RI/II or perforin, or mice treated with mAb to IL-12, IFN-gamma or NK1.1 were irradiated and challenged with class I-deficient BMC grafts, a system in which only NK cells are the effector cells. Proliferation of the donor-derived cells was judged in terms of splenic incorporation of [125I]iododeoxyuridine 5 or 7 days after cell transfer. All of these mice maintained in a specific pathogen-free (s.p.f.) environment were able to reject the BMC, except those treated with anti-NK1.1 mAb. However, perforin deficient mice maintained in a conventional breeding facility failed to reject class I (Tap-1)-deficient marrow cells. Transfer of mice from the pathogen-free to the conventional facility resulted in a slow and incomplete loss of the ability to reject marrow cells. Thus, the breeding colony environment can elicit otherwise undetectable defects in the rejection ability of perforin-deficient NK cells. This report will hopefully alert those investigators who have only studied immune gene knockout mice in s.p.f. facilities and found no significant abnormalities.

Animals↗

CD30-regulated apoptosis in murine CD8 T cells after cessation of TCR signals.

A variety of culture systems have been developed to study mechanisms of activation-induced cell death in peripheral T lymphocytes either during the initial period after exposure to an activating stimulus or following repeated stimulation of activated T cells. In this study we describe a new culture model for the analysis of apoptosis after withdrawal of TCR signals from activated T cells. T cells activated by anti-CD3 antibodies for 48 h and then further cultured in the presence of IL-2 but absence of continued CD3/TCR stimulation underwent dramatic cell death approximately 4 days following removal of the TCR stimulus. Apoptotic cells generated in this protocol, unlike those produced by hyperstimulation, retained substantial levels of degraded DNA following fixation, consistent with death in the G0/G1 phase of the cell cycle. This "agonist withdrawal" cell death occurred largely within the CD8 T cell subset, with CD4 cells showing lower levels of apoptosis. This form of cell death did not appear to be the result of IL-2 exhaustion, since repeated addition of IL-2 during the culture period did not significantly alter the number of apoptotic cells. Apoptosis induced by agonist withdrawal was not blocked by Fas antigen fusion protein or by anti-TNF alpha-neutralizing antibodies, suggesting a mechanism independent of Fas/FasL and TNF alpha/TNF-R interactions. Cell death was, however, significantly inhibited by treatment with a CD30 fusion protein. CD30 was found to be transiently expressed on CD8 T cells immediately prior to death, with lower expression on CD4 cells, while CD30 ligand was found to be expressed most strongly by CD4 T cells. These results suggest a role for CD30 in regulating the onset of apoptosis in CD8 T cells after interruption of CD3/TCR.

Animals↗

Regulation of Fas-dependent activation-induced T cell apoptosis by cAMP signaling: a potential role for transcription factor NF-kappa B.

TCR-mediated activation of T cell hybridomas induces programmed cell death by a Fas-dependent pathway. We now show that costimulation of 2B4 cells, in the absence or presence of transgenic Bcl-2, with anti-CD3 epsilon and forskolin, an activator of cAMP signaling, resulted in antagonism of Fas-dependent activation-induced cell death that was always accompanied by selective downregulation of the nuclear levels of NF-kappa B p65-p50 (RelA-p50) transcription factor. Forskolin not only inhibited activation-induced cell death and NF-kappa B activation, but also suppressed expression of Fas and Fas ligand (Fas-L). Furthermore, NF-kappa B p65 antisense oligonucleotide down-regulated nuclear levels of NF-kappa B, inhibited cell surface expression of Fas-L and apoptosis of 2B4. Collectively, these finding demonstrate a potential role of NF-kappa B in the regulation of activation-induced apoptosis in T lymphocytes.

Antibodies↗

Roles of IL-4 and IFN-gamma in stabilizing the T helper cell type 1 and 2 phenotype.

It has previously been reported that Th1 CD4 T cell populations can be converted to IL-4 producers, whereas Th2 populations are refractory to IL-12-mediated IFN-gamma production. We have recently shown that CD30 is a marker for the IL-4 response and have therefore used CD30 here to study Th1 and Th2 commitment. We show that Th2 cell populations normally show a stable phenotype and fail to respond to IL-12 because of endogenous IL-4 production. IFN-gamma abrogates this antagonistic effect of IL-4 and permits the conversion of Th2 populations to IFN-gamma producers by IL-12. In the complete absence of IL-4, however, IFN-gamma is not required for this transformation, and Th1 cells generated by IL-12 become committed to the Th1 pathway and lose the ability to respond to IL-4. Thus, the balance between local IL-4 and IFN-gamma in an immune response is a key factor in determining the outcome of the CD4 effector T cell response.

Animals↗

Reciprocal regulation of CD30 expression on CD4+ T cells by IL-4 and IFN-gamma.

Prior studies have implicated CD30 as a marker for Th2 cells, but the mechanism that underlies this correlation was unknown. We show here that CD30 was expressed on activated CD4+ T cells in the presence of IL-4. In the absence of endogenously produced IL-4, however, even Th2 lineage cells lost CD30 expression. Thus, CD30 is not an intrinsic marker of Th2 cells, but is inducible by IL-4. CD30 was also found to be down-regulated by IFN-gamma. Committed Th1 effector cells do not express CD30, although differentiating Th1 lineage cells temporarily express CD30. The transient expression of CD30 on differentiating Th1 lineage cells was mainly the result of endogenously produced IL-4 induced by IL-12. Culture of IL-12-primed cells under conditions that reverse the phenotype (Ag plus IL-4) resulted in two cell populations based upon their ability to express CD30. One population responded to IL-4 upon restimulation and became a CD30-positive, Th0-like cell population, while the other remained CD30 negative and synthesized only IFN-gamma. Thus, CD30 expressed on CD4+ T cells reflected the ability of CD4+ T cells to respond to IL-4.

Animals↗

Graft-versus-host-disease-associated lymphoid hypoplasia and B cell dysfunction is dependent upon donor T cell-mediated Fas-ligand function, but not perforin function.

Allogeneic bone marrow transplant recipients often exhibit a graft-versus-host-disease (GVHD)-associated immune deficiency that can be prolonged and lead to life-threatening infections. We have examined the role of donor T cell-mediated cytotoxic function in the development of GVHD-associated immune deficiency. A major histocompatibility complex-matched model of allogeneic bone marrow transplantation was employed in which lethally irradiated C3H.SW mice received a nonlethal dose of T cells from either perforin-deficient (B6-perforin 0/0), Fas-ligand (FasL)-defective (B6-gld), or normal (B6) allogeneic donor mice. T cell-depleted marrow from B6-Ly-5.1 congenic donor mice was transplanted along with the donor T cell populations to determine the effects of donor T cell-mediated cytotoxicity on engraftment. Our results demonstrate that recipients of perforin-deficient or normal allogeneic T cells exhibit profound lymphoid hypoplasia and severely reduced splenic proliferative responses to lipopolysaccharide in vitro. In contrast, GVHD-associated lymphoid hypoplasia is dramatically reduced and in vitro B cell function is intact in recipients of FasL-defective allogeneic T cells. Engraftment of myeloid and erythroid lineage cells occurs irrespective of donor T cell cytotoxic function. Although recipients of perforin-deficient or normal allogeneic T cells exhibited hematopoietic engraftment exclusively of donor origin, recipients of FasL-defective donor T cells exhibited significant mixed chimerism (Ly-5.1/Ly-5.2). Because only marrow of donor origin was transplanted, this finding suggests that Fas-mediated antirecipient cytotoxicity is required for clearance of residual hematopoietic stem cells of host origin that persist following lethal irradiation.

Animals↗

Impaired nonrestricted cytolytic activity in systemic lupus erythematosus: involvement of a pathway independent of Fas, tumor necrosis factor, and extracellular ATP that is associated with little detectable perforin.

OBJECTIVE: To determine the cytolytic effector pathway involved in impaired generation of nonrestricted cytolytic activity in systemic lupus erythematosus (SLE). METHODS: Peripheral blood mononuclear cells (PBMC) from normal subjects and SLE patients were stimulated in vitro with anti-CD3 monoclonal antibody (MAb) and interleukin-2 to promote the generation of nonrestricted cytolytic activity. On day 13 of culture, the PBMC were assayed for cytolytic activity against Fas-Daudi cells and Fas+ Jurkat cells. The effects on cytotoxicity of calcium chelation, antagonist anti-Fas MAb, tumor necrosis factor (TNF) alpha and beta, and ATP were measured. Intracellular perforin expression was determined by intracellular staining, and perforin messenger RNA levels were determined by quantitative competitive reverse transcription-polymerase chain reaction. RESULTS: We demonstrated the existence of a cytolytic pathway that is independent of Fas, TNF alpha, TNF beta, and ATP, but is dependent upon extracellular calcium. Despite its calcium dependence, this pathway is associated with low-to-undetectable levels of perforin. CONCLUSION: Impaired generation of nonrestricted cytolytic activity in SLE is likely due to decreased activity of this Fas-, TNF alpha-, TNF beta-, ATP-independent pathway associated with very low levels of perforin.

Adenosine Triphosphate↗

CD40-CD40L interactions provide "third-party" costimulation for T cell response against B7-1-transfected human breast tumor cells.

In this study we provide evidence that a human breast carcinoma cell line, MDA-MB-231 (MDA), can be made immunogenic following B7 transfection and that full T cell activation is obtained through cooperation of T-B lymphocytes via CD40-CD40L interactions. Tumor cells transfected with either B7 gene (MDAB7), neomycin-resistant gene only (MDAneo), or untransfected (MDA) were used in an allogeneic mixed lymphocyte tumor culture (MLTC) to investigate their ability to stimulate T cell proliferation and generate cytotoxic T lymphocytes (CTL). MDAB7 induced moderate T cell proliferation while MDAneo or MDA did not. Substantial T cell proliferation and de novo generation of cytolytic T cells was obtained only in response to MDAB7 when B cells were present during the MLTC. CD8+-purified T + B cells proliferated to a greater extent than whole T cell populations + B or CD4+ + B in response to MDAB7. Addition of alpha-B7-1 or alpha-CD40 in the MLTC inhibited T cell proliferation by 65 and 40%, respectively, whereas T cell proliferation and generation of CTL was completely abrogated when MLTC was performed in the presence of both antibodies. These data suggest that the engagement of CD40L on T cells with CD40 on B cells provides a costimulatory signal which, in synergism with TCR-dependent MDAB7-T cell recognition (signal 1) and B7/CD28 interactions (signal 2), leads to full T cell activation.

B-Lymphocytes↗

Increased perforin expression in multiple sclerosis patients during exacerbation of disease in peripheral blood lymphocytes.

The expression of perforin (P) in subpopulations of the PBL of multiple sclerosis (MS) patients in stable and active phase of disease was investigated, by simultaneous detection of P (intracellular molecule) and cell surface antigens. A significant increase of CD4+P+ (p < 0.02) and CD16+P+ (p < 0.001), and decrease of CD56+P+ (p < 0.05) cells in active MS was found. In active disease there is a highly significant increase (p < 0.001) of average fluorescence intensity (AFI) for P in CD4(dim+) cells, and these cells are larger in size and have higher granularity (p < 0.05) compared to CD4(bright+) p(dim+) cells. Surprisingly, there were no CD25+P+ cells in either group of MS patients. These results show that CD4+P+ cells are upregulated in active disease in cell number, in the level of P expression per cell, and in the level of cell activation (increase in cell size and granularity). It is suggested that CD4+P+ cytotoxic cells may play a role in the pathogenetic mechanisms of MS.

Adult↗

Perforin-expressing lymphocytes in peripheral blood and decidua of human first-trimester pathological pregnancies.

PROBLEM: We have shown previously that the decidua of first-trimester human pregnancy is heavily infiltrated with perforin-positive cells. The aim was to detect expression of perforin in both decidual lymphocytes (DL) and peripheral blood lymphocytes (PBL) in the first trimester of pathological pregnancies: Anembryonic pregnancy and missed abortion. METHOD: Decidual tissue from a normal pregnancy group and from pathological pregnancies was obtained by vaginal curettage. Perforin (an intracellular antigen) and the cell surface antigens CD3, CD4, CD8, CD16, CD56, CD11c, and CD45RA were quantified simultaneously by flow cytometric analysis. RESULTS: In the missed abortion group, we found: 1) a relative decrease in the frequency of both CD4+P+ cells and CD56+P+ cells as well as the mean fluorescence intensity for perforin; 2) a relative increase of CD16+P+ PBL cells; and 3) a relative increase of CD4+ cells in PBL compared with anembryonic pregnancy and normal pregnancy. There was also a significant relative decrease in the proportion of CD4+ and CD8+ cells among perforin-positive PBL in both anembryonic pregnancy and missed abortion. CONCLUSION: Our results show that significant decreases in the prevalence of perforin-positive lymphoid cells, their subpopulations, and mean fluorescence intensity for perforin are associated with pregnancy failure.

Abortion, Missed↗

Membrane phenotype and expression of perforin and serine esterases by CD3- peripheral blood and decidual granular lymphocyte-derived clones.

PROBLEM: Human first-trimester pregnancy decidua were found to contain large numbers of perforin (P)-containing cells, which varied in their membrane antigen phenotype. In this study results obtained by analyzing CD3- clones derived from human early pregnancy decidua and peripheral blood are reported. METHOD OF STUDY: Decidual tissue was obtained from vaginal termination of first trimester normal human pregnancies. CD3- clones were generated by limiting dilution cloning after the depletion of CD3+ lymphocytes. The cell membrane phenotype was determine by flow cytometry. Perforin was detected by fluorescence-activated cell sorter (FACS) analysis of permeabilised cells. Serine esterases (SE) were identified by histochemical staining for BLT-esterase. RESULTS: Cloned decidual cell populations retained the overall antigenic phenotype of freshly isolated decidual natural killer (NK)-like cells. All CD3- clones, either derived from decidua or from peripheral blood contained perforin. Serine esterases were present in every decidual clone analyzed. CONCLUSIONS: Limiting dilution cloning allows the clear-cut analysis of homogenous subsets of decidua-derived NK-like clones. The presence of large amounts of perforin in all of the CD3- clones underlines the extensive transcription of the perforin gene by NK-like lymphocytes.

Antigens, Surface↗

Down-regulated expression of perforin-positive/CD16+ cells in the peripheral blood lymphocytes in the first trimester of pregnancy and up-regulation at the end of pregnancy.

PROBLEM: Immunophenotypic profiles of perforin (P)-positive peripheral blood lymphocytes in the first trimester and at the term of human pregnancy were analyzed. METHOD OF STUDY: Perforin expression in peripheral blood lymphocyte subsets was measured by simultaneous detection of P (intracellular antigen) and cell-surface antigens (CD3, CD4, CD8, CD16, and CD56) by flow cytometry in nonpregnant (NP) and pregnant women in the first trimester (FTP) and at the time of parturition (TP). RESULTS: The percentage of total P+ cells in peripheral blood compared to nonpregnant women was slightly lower in the FTP but significantly higher at TP. Perforin-positive cells were significantly elevated in T lymphocyte subsets (CD3+P+, CD4+P+, CD8+P+) in both the FTP and TP groups, as was the percentage of CD56+P+ cells. Profound changes in the CD16+ subpopulation were found in the FTP group compared to both the NP and TP groups (a drastic decrease of CD16+P+ cells; CD16+ cells among P+ cells; P+ cells among CD16+ cells). A considerable part of CD3+ cells in both the FTP and TP groups are CD3+CD56+P+. The average fluorescence intensity (AFI) for P (a measure of P content per cell) was significantly decreased in FTP and increased in TP groups. CONCLUSIONS: The CD16 molecule is Fc gamma RIIIA which is the only Fc receptor responsible for antibody dependent cell-cytotoxicity (ADCC) of NK and T-cells. In the first-trimester human pregnancy this mechanism is severely down-regulated compared to both the NP and TP groups.

Animals↗

Gene transfer of the CD80 costimulatory molecule into ocular melanoma cells using a novel episomal vector.

PURPOSE: The CD80 (B7.1) molecule, which is a necessary costimulatory signal for T-cell activation and proliferation, is a powerful inducer of antitumor immunity. In this study, primary human ocular melanoma cells were transfected with a novel vector (B45-Neo episomal vector) containing the complementary DNA (cDNA) for human CD80 to determine if this vector system is useful for stimulating CD8+ T cells. METHODS: Ocular melanoma cells were transfected with the B45-Neo episomal vector containing the cDNA for human CD80 and were positively selected in medium containing geneticin. The transcription of plasmid cDNA, plasmid copy number, and cell surface expression were determined on transfected tumor cell lines, and cloned tumor cells were obtained by limiting dilution techniques. The stability of CD80 expressed on tumor cells was determined after prolonged culture without geneticin and on irradiated cells. Autologous lymphocytes were restimulated with CD80+ tumor cells in the presence of recombinant interleukin-2 to determine whether CD8+ T cells were stimulated. RESULTS: CD80 was expressed on tumor cells transfected with the B45-Neo vector containing the cDNA for CD80. The level of CD80 expressed on different transfected tumor cell lines was heterogeneous and dependent on the plasmid copy number. High CD80 expression was observed on cloned tumor cells that possessed more than 520 plasmids per cell; intermediate levels were observed on tumor cells with approximately 240 to 520 plasmids. CD80+ ocular melanoma cells maintained a stable CD80 expression even after prolonged culture without geneticin, and on irradiated tumor cells. CD80 expressed on tumor cells was biologically functional and stimulated autologous CD8+ cells. CONCLUSIONS: The B45-Neo episomal vector induces stable expression of the CD80 costimulatory molecule on ocular melanoma cells. Our results indicate that this vector is suitable for experiments designed to genetically engineer ocular melanoma cells to stimulate CD8+ T cells.

B7-1 Antigen↗

The role of the perforin and Fas pathways of cytotoxicity in skin graft rejection.

Cell-mediated cytotoxicity is believed to play an important role in the mechanisms of rejection following organ and tissue transplantation. We have investigated the role of the perforin and Fas pathways of cell-mediated cytotoxicity on the survival of xenogeneic, allogeneic and hemiallogeneic skin grafts. Wild type C57BL/6 (B6), perforin deficient C57BL/6 (B6 PKO) and Fas ligand deficient (B6 gld/gld) mice were grafted with xenogeneic Lewis rat skin grafts, or allogeneic B10.BR, class I disparate B6 bml, class II disparate B6 bm12, and Fas deficient allogeneic C3H lpr/lpr grafts. No significant difference was observed in the timing of rejection with B6 PKO mice as recipients when compared with normal B6 controls. All grafts were also rejected by B6 gld/gld recipients, but with a significantly delayed pattern of rejection, showing, therefore, that Fas, although not critical, may participate to the mechanisms of rejection. Neither perforin nor Fas, however, seem to be essential for rejection of a skin graft, and it is likely that alternative mechanisms assume an important role in the effector phase of rejection once these cell-cytotoxic pathways are abrogated.

Animals↗