PubMed Health⌕ Search

Biomedical subjects

G Par

Publications and source records attributed to G Par.

7 recordsLinked to original sources

Progesterone-dependent immunomodulation.

The biological effects of progesterone are mediated by a 34-kDa protein named the progesterone-induced blocking factor (PIBF). PIBF, synthesized by lymphocytes of healthy pregnant women in the presence of progesterone, inhibits arachidonic acid release as well as NK activity, and modifies the cytokine balance. Within the cell the full-length PIBF is associated with the centrosome, while secretion of shorter forms is induced by activation of the cell. PIBF induces nuclear translocation of STAT6 as well as PKC phosphorylation and exerts a negative effect on STAT4 phosphorylation. The concentration of PIBF in pregnancy urine is related to the positive or negative outcome of pregnancy; furthermore, premature pregnancy termination is predictable by lower than normal pregnancy PIBF values. In vivo data suggest the biological importance of the above findings. Treatment of pregnant Balb/c mice with the antiprogesterone RU 486 results in an increased resorption rate, which is associated with the inability of spleen cells to produce PIBF. High resorption rates induced by progesterone receptor block as well as those due to high NK activity are corrected by simultaneous PIBF treatment.

Abortifacient Agents, Steroidal↗

Progesterone regulates IL12 expression in pregnancy lymphocytes by inhibiting phospholipase A2.

PROBLEM: Progesterone-induced blocking factor (PIBF) is one of the pathways that mediate the immunological effects of progesterone. PIBF inhibits natural killer (NK) cytotoxic activity. Recently we showed that neutralization of PIBF results in an increased interleukin (IL)-12 expression, which is corrected by cyclooxygenase inhibitors. As exogenous arachidonic acid (AA) voids the NK blocking effect of PIBF, it is likely that PIBF acts before the level of the cyclooxygenase enzyme. Therefore in this study we investigated the effect of PIBF neutralizing antibody and simultaneous phospholipase A2 inhibitor quinacrine (Q) treatment on IL-12 production. METHODS: Pregnancy lymphocytes were treated with anti-PIBF antibody or lipopolysaccharide (LPS) as a positive control, in the presence or absence of Q. IL-12 expression by PBMC was detected by immunocytochemistry. RESULTS: Neutralization of PIBF as well as LPS treatment resulted in an increased IL-12 expression, which was corrected by simultaneous Q treatment. Pre-treatment of lymphocytes with progesterone prevented the stimulating effect of LPS on IL-12 production. CONCLUSION: Progesterone binding of the lymphocytes is followed by the release of PIBF that inhibits AA release. The subsequent block of prostaglandin synthesis reduces IL-12 production and results in a lowered cytotoxic NK activity, which may contribute to a normal pregnancy outcome.

Antibodies↗

Progesterone as an immunomodulatory molecule.

Increased progesterone sensitivity of pregnancy lymphocytes is due to activation-induced appearance of progesterone binding sites in the lymphocytes. Following recognition of fetally derived antigens gamma/delta TCR+ cells develop progesterone receptors. Progesterone binding results in the synthesis of a mediator protein named the progesterone-induced blocking factor (PIBF). PIBF by acting on the phospholipase A2 enzyme interferes with arachidonic acid metabolism, induces a Th2 biased immune response, and by controlling NK activity exerts an anti-abortive effect.

Adjuvants, Immunologic↗

Cyclooxygenase is involved in the effects of progesterone-induced blocking factor on the production of interleukin 12.

OBJECTIVE: Immunologic effects of progesterone are mediated by the progesterone-induced blocking factor. Progesterone-induced blocking factor inhibits natural killer cytotoxic activity and arachidonic acid release from mononuclear cells. The relationship between increased prostaglandin synthesis and increased cytotoxic activity of the lymphocytes is still unclear; therefore we investigated the effect of progesterone-induced blocking factor-neutralizing antibody, as well as simultaneous indomethacin treatment, on interleukin 12 production. STUDY DESIGN: Pregnancy lymphocytes were treated with anti-progesterone-induced blocking factor antibody or lipopolysaccharide as a positive control in the presence or absence of indomethacin. Interleukin 12 production by peripheral blood mononuclear cells was detected by immunocytochemical examination. The 2-tailed Student t test was used for statistical evaluation. RESULTS: Neutralization of progesterone-induced blocking factor, as well as lipopolysaccharide treatment, resulted in an increased expression of interleukin 12 that was corrected by simultaneous indomethacin treatment. CONCLUSION: Progesterone-induced blocking factor reduces the expression of interleukin 12 via the inhibition of arachidonic acid metabolism. This results in lowered cytotoxic natural killer activity, which favors a normal pregnancy outcome.

Cyclooxygenase Inhibitors↗

The role of gamma/delta T cells in progesterone-mediated immunomodulation during pregnancy: a review.

PROBLEM: To determine if pregnancy is recognized by the immune system and if inadequate recognition of fetal antigens might result in failed pregnancy. METHOD OF STUDY: Review of literature and current data. RESULTS: In the decidua gamma/delta TCR positive cells significantly increase in number. A subset of gamma/delta T cells reacts with nonpolymorphic Class I or Class I like molecules. Trophoblast recognition is mediated by the V gamma 1 subset which recognize a conserved mammalian sequence on the trophoblast. Almost all gamma/delta T cells in the decidua are activated and use the V delta 1 chain, whereas the majority of human peripheral gamma/delta lymphocytes expresses V gamma 9/V delta 2 TCR. Peripheral gamma/delta T cells of healthy pregnant women preferentially use V gamma V delta 1 chains, on the other hand, those of recurrent aborters use the V gamma 9V delta 2 combination. Signaling via the V gamma 1.4V delta 1 receptor induces a Th2 type response, whereas activation of the lymphocytes via the V gamma 9V delta 2 receptor results in increased IL-12 production and natural killer (NK) activity. In the presence of progesterone, activated lymphocytes synthesize the progesterone induced blocking factor (PIBF), which inhibits NK activity and exerts an anti abortive effect in vivo. Decidual CD56+ and gamma delta+ cells are to a high extent the same population. CONCLUSION: All decidual CD56+ cells express PIBF, thus it cannot be excluded that local production of this substance contributes to low decidual NK activity and thus to the success of the pregnancy.

Decidua↗

The antiabortive effect of progesterone-induced blocking factor in mice is manifested by modulating NK activity.

Immunologic effects of progesterone are mediated by a protein named the progesterone-induced blocking factor (PIBF), which inhibits NK activity and displays an antiabortive effect in mice. Our previous data provide indirect evidence for the importance of PIBF in the maintenance of normal gestation. This study was aimed at investigating whether neutralization of endogenous PIBF production influences pregnancy outcome and if so, what are the mechanisms that participate in this process. Syngeneically pregnant Balb/c mice on Day 8.5 of pregnancy were injected ip with 0.3 mg/kg of RU 486 or with 0.5 mg of rabbit anti-PIBF IgG alone, or together with anti-NK monoclonal antibodies. Mice treated with the same amount of normal rabbit serum or untreated mice of similar gestational age were used as controls. On Day 10.5 the ratio of living and resorbed embryos and NK activity of the spleen cells were determined. In mice treated with anti-PIBF the ratio of resorbed fetuses was significantly higher than that in untreated controls. In RU 486-treated mice we also observed significantly increased resorption rate, which was associated with the inability of spleen cells to produce PIBF. Both anti-PIBF treatment and that with progesterone receptor blocker resulted in increased splenic NK activity. There was a positive relationship between NK activity and the rate of resorptions. All the above effects were corrected by simultaneous treatment with anti-NK or anti-NC (natural cytotoxic) antibodies. These data allow the conclusion that PIBF contributes to normal gestation in mice and that the effect of PIBF is manifested via blocking NK and/or NC activity.

Abortion, Spontaneous↗

Progesterone and non-specific immunologic mechanisms in pregnancy.

PROBLEM: Progesterone-dependent immunomodulation is one of the mechanisms that enables pregnancy to proceed to term. Immunologic effects of progesterone are mediated by a protein named the progesterone-induced blocking factor (PIBF). Among other effects this protein inhibits natural killer (NK) activity and displays an anti-abortive effect in mice. Recently, we have shown that PIBF induces a Th2 shift in vitro. The present study was aimed at investigating the in vivo effect of PIBF on cytokine production, as well as the relationship between cytokine production, NK activity, and pregnancy loss. METHOD OF STUDY: Balb-c mice on day 8.5 of pregnancy were injected intraperitoneally with 0.5 mg of rabbit anti-PIBF immunoglobulin G (IgG). Another group of mice was simultaneously treated with anti-NK monoclonal antibodies. Mice treated with the same amount of normal rabbit serum or untreated mice of similar gestational age were used as controls. The animals were sacrificed and their uteri were inspected. The ratio of living and resorbed embryos was determined. NK activity as well as cytokine expression on the spleen cells were determined by immunocytochemistry and enzyme-linked immunoadsorbent assay (ELISA). RESULTS: Mitogen-activated spleen cells from anti-PIBF-treated mice produced significantly (P < 0.001) less IL-10 than those of pregnant control mice. A significantly higher percentage (P < 0.001) of spleen cells from anti-PIBF-treated mice expressed interferon-gamma (IFN gamma) as determined by immunocytochemistry, than those of untreated pregnant mice. There was a positive relationship between the percentage of IFN gamma-positive spleen cells and resorption rates, and an inverse relationship between the latter and interleukin-10 (IL-10) production. All these effects were corrected by treatment with anti-NK antibodies. CONCLUSION: Our data suggest that PIBF contributes to the success of gestation via cytokine-mediated inhibition of NK activity.

Animals↗