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M D Mitchell

Publications and source records attributed to M D Mitchell.

At least 55 records · Page 3Linked to original sources

Regulation of cytosolic phospholipase A2 expression by cytokines in human amnion cells.

The metabolism of arachidonic acid results in the production of prostaglandins (PGs), which are involved in the initiation of labour at term and preterm. The fetal membranes are a source of pro-inflammatory cytokines which promote increased PG biosynthesis via increased release of arachidonic acid and its conversion to biologically active metabolites such as PGE2 and PGF2alpha. In the amnion, the liberation of arachidonic acid from membrane glycerophospholipid stores can be catalysed by cytosolic phospholipase A2 (cPLA2). In amnion-derived WISH cells, the addition of tumour-necrosis factor alpha (TNF-alpha) (50 ng/ml) provoked a time-dependent increase in the expression of the cPLA2 mRNA which was greatest at 8 and 16 h post-treatment (3.62+/-0.52 and 3.15+/-0.45-fold of control, n=3). The increase in cPLA2 mRNA expression by TNF-alpha was unaffected by the prior addition of interleukin-4 (IL-4) (10 ng/ml), a known inhibitor of prostaglandin endoperoxide H synthase (PGHS)-2 mRNA and protein expression in WISH cells. TNF-alpha also increased the level of immunoreactive cPLA2 protein in a time-dependent manner with the highest levels evident after 8 and 16 h. As with the mRNA, cPLA2 protein levels were unaffected by pre-incubation with IL-4. The inclusion of the cPLA2-specific inhibitor arachidonyl trifluoromethyl ketone (AACOCF3) resulted in a concentration-dependent inhibition of PGE2 biosynthesis in WISH cells treated with TNF-alpha (>95 per cent at 2 microM). We conclude that TNF-alpha increases the abundance of the cPLA2 mRNA and protein in amnion epithelial cells, an effect which plays an important role in amnion PG biosynthesis in the presence of intrauterine infection.

Amnion↗

Interleukin-4 differentially regulates prostaglandin production in amnion-derived WISH cells stimulated with pro-inflammatory cytokines and epidermal growth factor.

Cytokines and growth factors have been proposed to act as in vivo modulators of amnion prostaglandin production at parturition. To characterize the effects of the 'anti-inflammatory' cytokine interleukin (IL)-4 on amnion prostaglandin production, amnion epithelium-derived WISH cells were treated with IL-4 in the presence/absence of IL-1beta, tumour necrosis factor-alpha (TNF-alpha) or epidermal growth factor (EGF). IL-4 (0.08-10 ng/ml) potently inhibited cytokine-stimulated PGE2 production over 16 h (maximal inhibition approximately 66% at 2.0 ng/ml IL-4). Delaying addition of IL-4 (1 ng/ml) by up to 8 h after IL-1beta addition only slightly attenuated its inhibitory effects, from approximately 65% to approximately 50%. EGF-stimulated PGE2 production was either not inhibited or slightly stimulated by IL-4. Immunoblotting studies revealed that IL-4 (10 ng/ml) significantly suppressed prostaglandin-H synthase-2 (PGHS-2) levels in cells stimulated with IL-1beta and TNF-alpha over 16 h, but had no consistent effects on cytosolic phospholipase A2 (cPLA2) levels under any condition. In the presence of arachidonic acid (10 microM), IL-4 again inhibited cytokine-stimulated, but not EGF-stimulated, PGE2 production. The presence of IL-4 also failed to alter the amount of arachidonic acid released in response to EGF. These findings suggest a role and potential therapeutic application for IL-4 in inhibiting amnion PGHS-2 expression and hence prostaglandin production in infection-driven preterm labour, but not labour in the absence of inflammatory initiators.

Amnion↗

Cytokines regulate prostaglandin H synthase-1 transcription in human amnion-derived cells.

We have isolated the prostaglandin H synthase-1 (PGHS-1) promoter from the human amnion cell line WISH by long template PCR. The fragment was 1124 base pairs in length and shared a 96% sequence identity with the sequence in GenBank. The putative transcription start site is located 18 bp upstream of the start codon. The sequence is TATA-less, but contains multiple Sp-1 sites and a GC box at -132. The fragment was subcloned into the promoterless reporter construct pBLCAT3 to produce the promoter reporter construct pPGHS1CAT. pPGHS1CAT expression in amnion-derived AV3 cells was inhibited by the pro-inflammatory cytokines tumor necrosis factor-alpha (TNF-alpha) and interleukin 1-beta (IL-1beta). PGHS-1 mRNA levels however, were unchanged over a 16-h time course with either treatment. These results suggest that PGHS-1 transcription is regulated in a negative manner by cytokines in human amnion-derived cells.

Amnion↗

Characterization of the amnion-derived AV3 cell line for use as a model for investigation of prostaglandin-cytokine interactions in human amnion.

Increased production of prostaglandins and cytokines by amnion, particularly prostaglandin (PG) E2, interleukin (IL)-6 and IL-8, is thought to be an important event in infection-associated preterm labour. We characterized the amnion-derived AV3 cell line to determine its appropriateness as a model for investigation of the regulation of amnion cytokine and PG production. Amnion-derived AV3 cells were treated with tumour necrosis factor-alpha (TNF-alpha, interleukin-1beta (IL-1beta), epidermal growth factor (EGF) and phorbol 12-myristate 13-acetate (PMA) and IL-6, IL-8 and prostaglandin production was determined by immunoassay. Production of IL-6 and IL-8 rose dramatically with all treatments. PGE2, but not PGF2alpha or 6-keto-PGF1alpha, biosynthesis was also increased in a concentration-dependent manner with all treatments. A rapid increase in PGHS-2 (but not PGHS-1) mRNA expression was observed in response to TNF-alpha and IL-1beta. We conclude that the AV3 cell line inflammatory response profile is similar to those observed in primary amnion and other amnion-derived cell lines, and is an appropriate model for human amnion.

Amnion↗

Expression of intercellular adhesion molecule-1 (ICAM-1) in choriodecidua with labour and delivery at term and preterm.

To evaluate the association between intercellular adhesion molecule-1 (ICAM-1) in the choriodecidua and preterm labour and delivery, ICAM-1 mRNA abundance was assessed by northern analysis, and protein levels by ELISA, in samples of this tissue after term and preterm delivery. The median ICAM-1 mRNA expression following preterm delivery (PTD) was 4.8 and 3.8 times (P<0.05), respectively, those following elective Caesarean section prior to labour at term (CST) and following vaginal delivery after spontaneous labour at term (SLT). The concentration of ICAM-1 protein in the PTD samples was 2.2 and 3.0 times (P<0.05) those in CST and SLT samples, respectively. The differences between the term groups were not significant. The results were substantially the same when a preterm spontaneous labour (PTL) subgroup, exclusive of deliveries complicated by pre-eclampsia or intrauterine growth restriction, was compared with the term groups. Choriodecidual ICAM-1 mRNA expression, but not ICAM-1 protein concentration, significantly correlated to the degree of leukocyte infiltration of the PTD gestational membranes. Neither correlated significantly to clinical indications of intrauterine or neonatal infection. These findings indicate that ICAM-1 is expressed by the human choriodecidua and that this expression is elevated with preterm labour and delivery, particularly with increased leukocyte infiltration.

Albuterol↗

Labour-associated changes in the regulation of production of immunomodulators in human amnion by glucocorticoids, bacterial lipopolysaccharide and pro-inflammatory cytokines.

Parturition is associated with changes in the production of inflammatory mediators by gestational tissues. An explant system was established to study the change in response of human amnion to various regulating factors during labour. Disks of tissue (6 mm) were excised from amnion membranes obtained either at term by Caesarian section before labour (n = 5-6) or after spontaneous vaginal delivery (n = 3-7). After 24 h equilibration in media, the tissues were treated with interleukin 1 beta (10 ng ml-1), tumour necrosis factor alpha (100 ng ml-1), lipopolysaccharide (5 micrograms ml-1) and dexamethasone (1 mumol l-1) or an appropriate vehicle control for 24 h (n = 3 wells per treatment). Media were harvested and interleukin 10, interleukin 6 and prostaglandin E2 concentrations were determined by immunoassay. In tissues taken both before and after the onset of labour, basal interleukin 10 production by amnion explants was near to the limit of detection. Basal production rates of PGE2 by amnion explants were significantly higher (P < 0.0012; Mann-Whitney U test) in tissues taken during labour than in tissues taken before the onset of labour, while interleukin 6 production was not significantly altered by labour. Production rates of interleukin 6 and prostaglandin E2 were significantly increased by interleukin 1 beta, tumour necrosis factor alpha and lipopolysaccharide in explants from tissues taken during and before labour, while the responsiveness of interleukin 10 production to these treatments was inconsistent. Dexamethasone had no effect on interleukin 6 production by amnion explants, but significantly inhibited prostaglandin E2 production, although this inhibition was approximately 30% lower in tissues obtained after the onset of labour. These results support the presence of inflammatory positive feedback cycles, coincident with a deficiency of an anti-inflammatory factor within gestational tissue, which may be involved in the progression or maintenance of labour.

Adjuvants, Immunologic↗

Amnion-derived cells express intercellular adhesion molecule-1: regulation by cytokines.

We have examined the expression of the intercellular adhesion molecule-1 (ICAM-1) mRNA in primary and established amnion-derived cell cultures and regulation of this expression by tumour necrosis factor-alpha (TNF-alpha) and interleukin (IL)-1beta. TNF-alpha (50 ng/ml) and IL-1beta (1.0 ng/ml) induced 18- and 11-fold increases respectively in expression of the ICAM-1 mRNA in WISH cells (an amnion epithelium-derived cell line). The increase was detectable within one hour of treatment and peaked by two hours. The protein synthesis inhibitor, cycloheximide (10 microg/ml) did not inhibit this induction. Increased levels of ICAM-1 protein were detected in the cells within 4 h after initiation of treatment with either cytokine. By 16 h of treatment with IL-1beta or TNF-alpha ICAM-1 reached 40 and 73 pg/microg cellular protein, representing 6- and 11-fold stimulations respectively. In primary amnion cells, basal expression of ICAM-1 mRNA was undetectable. However, TNF-alpha (50 ng/ml) induced ICAM-1 mRNA within two hours, peak expression being reached between four and eight hours after initiation of treatment. The present report demonstrates for the first time that amnion derived cells can express ICAM-1 and, further, that this expression is regulated by pro-inflammatory cytokines. This has implications for the amnion as a possible source for soluble ICAM-1, for this gene product as a marker for preterm labour, and for participation of the amnion, additional to its reported secretory role, in inflammatory processes of the fetal membranes.

Amnion↗

Concentrations of activin A, inhibin A and follistatin in human amnion, choriodecidual and placental tissues at term and preterm.

To investigate labour-associated changes in production of activin and related hormones by gestational tissues we prepared extracts from amnion, choriodecidual and placental tissues delivered at term before labour (TNL; n=15), at term after spontaneous labour (TSL; n=15) or preterm (PTD; n=31) and measured concentrations of inhibin A, activin A and follistatin by ELISA. Activin concentrations in placental tissues were significantly (Mann-Whitney U-test; P<0.05) elevated with term labour (pg/mg protein, median; 1313 vs 2591), but in the PTD tissues concentrations were lower than those delivered spontaneously at term (3650 vs 2649). Inhibin concentrations also increased with term labour in the placenta (480 vs 686), but paradoxically decreased in amnion (188 vs 64) and choriodecidua (657 vs 358). Little or no significant changes in follistatin concentrations were observed. Concentrations of all three proteins were significantly correlated between amnion and choriodecidual tissues, and were significantly correlated with each other in most tissues (Spearman's ranked correlation; P<0.05). The activin:inhibin ratio in term amnion and choriodecidual tissues was increased 2 to 3-fold (P<0.0005 by Mann-Whitney U-test) after term labour, with similar trends also observed in the activin:follistatin ratio in placental tissue. These data suggest that a modest increase in placental activin and inhibin production may occur with labour at term. In addition, an increase in activin bioactivity may occur with labour, potentiating any paracrine effects of activin during parturition. The data, however, do not support an association between increased intrauterine activin biosynthesis and preterm delivery.

Activins↗

Anti-inflammatory effects of interleukin-4, interleukin-10, and transforming growth factor-beta on human placental cells in vitro.

PROBLEM: To determine the effects of anti-inflammatory cytokines on the production of inflammatory mediators by placental cells. METHOD OF STUDY: Cells from term human placentas were isolated and cultured in vitro in the presence of anti-inflammatory cytokines interleukin (IL)-4, IL-10, and transforming growth factor (TGF)-beta. Their effects on the production of IL-8 and prostaglandin E2 (PGE2) were investigated under basal conditions and after stimulation with IL-1 beta and tumor necrosis factor (TNF)-alpha. RESULTS: Both IL-10 and IL-4 inhibited IL-1 beta- and TNF-alpha-induced PGE2 production but had no significant effects on the production of PGE2 under basal conditions. TGF-beta 1 was without effect in stimulated cells, whereas under basal conditions TGF-beta 1 stimulated PGE2 production. Similar trends were seen for IL-8 production, with the exceptions that TGF-beta 1 decreased the TNF-alpha-induced production and IL-4 decreased basal IL-8 production. CONCLUSIONS: The anti-inflammatory effects shown by IL-4, IL-10, and (to lesser extent) TGF-beta may play a role in ameliorating the potentially harmful effects of pro-inflammatory mediators in the feto-placental unit.

Anti-Inflammatory Agents, Non-Steroidal↗

Comparative studies on the effects of interleukin-4 and interleukin-13 on cytokine and prostaglandin E2 production by amnion-derived WISH cells.

PROBLEM: In hematopoietic cells, interleukin (IL)-13 shares many actions with IL-4. The effects of IL-13 in gestational tissues have yet to be reported, however. We compared the effects of IL-4 and IL-13 on the production of cytokines and prostaglandin E2 (PGE2) in epithelial amnion-derived WISH cells. METHOD OF STUDY: WISH cells were treated with IL-4 or IL-13 (0.08-10 ng/ml) with/without cotreatment with IL-1 beta (0.2 ng/ml), tumor necrosis factor-alpha (10 ng/ml) or epidermal growth factor (5 ng/ml). The production of IL-6, IL-8, and PGE2 was measured by immunoassay after 16 hr. RESULTS: Both IL-4 and IL-13 inhibited PGE2 production with indistinguishable concentration-response curves, under basal or stimulated conditions. The maximal inhibition of IL-1 beta-stimulated PGE2 production (to 28% +/- 10% of control) was seen at 10 ng/ml of IL-4 or IL-13. Basal IL-6 production was stimulated approximately twofold by IL-4 and IL-13, whereas IL-4 and IL-13 both inhibited cytokine-stimulated (but not basal) IL-8 production by approximately 50%. In the presence of 1 ng/ml of IL-4, IL-13 was unable to further inhibit PGE2 production. CONCLUSIONS: The inhibition of PGE2 and IL-8 production by IL-4 in WISH cells is mimicked by IL-13. Both cytokines, probably through binding to a common receptor complex, may share a role in suppressing inflammatory reactions within intrauterine tissues.

Amnion↗

Labor-associated changes in interleukin-10 production and its regulation by immunomodulators in human choriodecidua.

Parturition is associated with increased production of proinflammatory mediators by gestational tissues. Interleukin-10 (IL-10) is an antiinflammatory cytokine produced by human chorion, decidual, and trophoblast tissues. To study the effects of immunomodulators on IL-10, IL-6, and PGE2 production by human choriodecidua before and after labor, an organ explant system was established. Tissue disks (6 mm) were excised from choriodecidual membranes obtained at term by cesarean section before labor (n=6-7) or after spontaneous vaginal delivery (n=7-8). After 24-h equilibration in medium, the tissues were treated with IL-1beta (10 ng/mL), tumor necrosis factor-alpha (100 ng/mL), lipopolysaccharide (5 microg/mL), dexamethasone (1 micromol/ L), or an appropriate vehicle control (n=3 wells/treatment) for 24 h. Media were harvested, and IL-10, IL-6, and PGE2 concentrations were determined by immunoassay. Basal choriodecidual production rates of IL-10 were significantly decreased with labor (P < 0.001), whereas PGE2 and IL-6 production rates increased. The production of all three substances was increased by IL-1beta, tumor necrosis factor-alpha, and lipopolysaccharide, but inhibited by dexamethasone. In contrast to PGE2 and IL-6, there was significantly increased responsiveness of IL-10 production to inflammatory stimuli after labor, but decreased responsiveness to the inhibitory effects of dexamethasone. These data indicate that IL-10 could play a role in modulating or promoting resolution of the inflammatory processes associated with labor at term and with intrauterine infection-associated preterm labor.

Adjuvants, Immunologic↗

Tumour necrosis factor-alpha stimulates increased expression of prostaglandin endoperoxide H synthase Type 2 mRNA in amnion-derived WISH cells.

We have evaluated the mechanism by which tumour necrosis factor-alpha (TNF-alpha) induces increased prostaglandin (PG) biosynthesis in amnion-derived WISH cells. WISH cells were treated with 50 ng/ml TNF-alpha or vehicle for 0-24 h. PGE2 production was stimulated by TNF-alpha within 2 h and continued to accumulate for at least 24 h. Increased prostaglandin endoperoxide H synthase (PGHS)-2 mRNA expression was evident within 30 min and was highest by 1 h, returning to unstimulated levels by 2 h. The PGHS-2 mRNA was re-induced at 8 h and was also elevated at 16 h. Immunoreactive PGHS-2 protein was nearly undetectable in control cells. However, within 30 min of TNF-alpha treatment, PGHS-2 protein was elevated and was induced for at least 16 h suggesting rapid production of both the PGHS-2 mRNA and protein. Transcription run-on assays indicated that the initial increase in the PGHS-2 mRNA was due to a 20-fold increase in the rate of transcription. The PGHS-2 mRNA decayed with an apparent half-life of 1 h in TNF-alpha-stimulated WISH cells. Induction of PGHS-2 expression proceeded in the presence of 10 microg/ml cycloheximide which agrees with the classification of PGHS-2 as an immediate early gene. These results indicate that a bi-phasic induction of the PGHS-2 mRNA is due, in part, to an initial transcriptional activation which results in rapid and continued synthesis of the PGHS-2 protein. This may be a unique characteristic of amnion cells which may be partially responsible for increased PG concentrations in the amniotic fluid during infection-associated preterm labour.

Amnion↗

Effects of interleukin-4 on the expression and activity of prostaglandin endoperoxide H synthase-2 in amnion-derived WISH cells.

Increased prostaglandin biosynthesis during intrauterine infection may be a possible mechanism by which preterm labour is initiated. Inflammatory cytokines and growth factors are known to stimulate prostaglandin production through an increase in prostaglandin endoperoxide H synthase (PGHS)-2 synthesis and activity. Interleukin-4 (IL-4), an anti-inflammatory cytokine, can downregulate PGHS-2 expression and inhibit prostaglandin production. Therefore, the aims of the current study were to determine the effects of IL-4 on PGHS-1 and PGHS-2 expression in amion-derived WISH cells treated with inflammatory cytokines and growth factors. In WISH cells, near-maximal production of the PGHS-2 mRNA occurred using 5 ng/ml EGF, 1 ng/ml IL-1beta or 50 ng/ml TNF-alpha. Time-course experiments determined that the PGHS-2 mRNA was induced maximally by these stimuli by 1 h. Pretreatment of WISH cells with IL-4 reduced PGHS-2 mRNA levels at 1 h by 67% in cells treated with EGF, 62% in cells treated with IL-1beta and 54% in cells treated with TNF-alpha. Pretreatment with IL-4 more effectively inhibited PGHS-2 expression than simultaneous addition with EGF or IL-1beta but not TNF-alpha. Immunoblot analysis showed a correlation between inhibition of mRNA levels and levels of PGHS-2 protein, although stimulation of PGHS-2 protein production by EGF was undetectable. Levels of PGHS-1 protein and mRNA remained unchanged in all experiments. Increased production of prostaglandin E2 (PGE2) in response to TNF-alpha and IL-1beta treatment was attenuated by IL-4 pretreatment, by 52% and 72%, respectively. No attenuation of EGF-stimulated PGE2 levels was seen. We conclude that IL-4 inhibits PGHS-2 mRNA and protein production in cytokine-stimulated WISH cells, but does not affect EGF-stimulated PGE2 production, suggesting that EGF can induce prostaglandin biosynthesis by a mechanism other than through increased PGHS-2 expression.

Amnion↗

Action of immunoregulatory agents on 5-HETE production by cultured human amnion cells.

Labor in women is associated with increased amniotic fluid prostaglandin (PG) concentrations. AF of women with term and preterm labor also contains elevated concentrations of arachidonic acid metabolites from the lipoxygenase pathway including 5-hydroxyeicosatetraenoic acid (5-HETE). We and others have shown that 5-HETE production within the uterus is increased by inflammatory cytokines. The purpose of this study was to determine whether 5-HETE production is regulated by immunotherapeutic agents that inhibit prostaglandin E2 (PGE2) production, such as interleukin-10 (IL-10) and cyclosporin A (CsA). Cultured confluent amnion cells were incubated for 16 hr with IL-10 (1 100 ng/ml), CsA (1 1000 ng/ml), or controls. Additional incubation of IL-10 and CsA (both at 10 and 100 ng/ml) were conducted on amnion cells in the presence and absence of interleukin-1 beta at 1 ng/ml. 5-HETE was measured by radioimmunoassay and cellular protein determined. IL-1 beta stimulated amnion cell 5-HETE production as expected. However, 5-HETE production by amnion cells was significantly inhibited by incubation with IL-10 and CsA, and both significantly attenuated 5-HETE production in response to IL-1 beta. We speculate that the inhibitory effect of IL-10 and CsA on amnion cell 5-HETE production is at the level of substrate release or inhibition of 5-lipoxygenase and that the use of these agents during pregnancy may not adversely affect pregnancy outcomes.

Amnion↗

Prostaglandin H synthase-2 and cytosolic phospholipase A2 in the hypoxic-ischemic brain: role in neuronal death or survival?

The breakdown of membrane phospholipids and subsequent arachidonic acid metabolism to prostanoids is a well-documented brain response to cerebral ischemia. To further elucidate the components of this signal transduction pathway, immunocytochemistry was used to determine the levels of two potentially important enzymes, cytosolic phospholipase A2 (cPLA2) and prostaglandin H synthase-2 (PGHS-2), in the immature rat brain following moderate unilateral hypoxic-ischemia (HI). The CA1 pyramidal cells of the hippocampus which undergo delayed neuronal death on the injured side following HI demonstrated a significant induction of PGHS-2 immunoreactivity 48 h post-insult. However, a consistent increase in PGHS-2 was also evident in the resistant dentate granule cells at an earlier time point. Although PGHS-2 is present in both susceptible and resistant cell populations following HI, the possibility remains that divergence further down-stream in the pathway is responsible for selective vulnerability. In contrast to the neuronal PGHS-2 expression, cPLA2 immunoreactivity appears to be of glial origin with increases in and around the CAI-2 pyramidal cell layer at the 72-168-h time points. These results suggest that prostanoids are likely to serve important roles in HI brain damage and repair in infant brain.

Animals↗

Regulation of decidual cell chemokine production by group B streptococci and purified bacterial cell wall components.

OBJECTIVE: Our purpose was to determine whether cultured human decidual cells produce chemokines in response to different strains of group B streptococci and purified bacterial cell wall components. STUDY DESIGN: Human decidual cells were cultured from term placentas by standard techniques. Different strains of group B streptococci were isolated from neonates with early-onset group B streptococci sepsis. Confluent cell monolayers were incubated with these different strains of group B streptococci and various concentrations of purified bacterial cell wall components (including lipoteichoic acid, sialic acid, lipopolysaccharide, and lipid A) for 16 hours at 37 degrees C. Culture supernatants were collected and assayed for macrophage inflammatory protein-1 alpha and interleukin-8. Statistical analysis was by analysis of variance. RESULTS: We found that cultured human decidual cells produced significant amounts of the two chemokines macrophage inflammatory protein-1 alpha and interleukin-8 in a strain-specific fashion to the various different strains of group B streptococci tested, from 215% to 421% over baseline production (p < 0.05 by analysis of variance). Also, we found that incubation of decidual cells with various concentrations of lipoteichoic acid, sialic acid, lipopolysaccharide, and lipid A resulted in significant concentration-dependent increases in decidual cell macrophage inflammatory protein-1 alpha and interleukin-8 production (p < 0.05.) CONCLUSIONS: Decidual cells produced significant amounts of the chemokines macrophage inflammatory protein-1 alpha and interleukin-8 in response to intact group B streptococci in a strain-specific fashion and in response to various concentrations of different bacterial cell wall components. Because chemokines are important mediators signaling migration of different immune effector cells into areas of inflammation, we suggest that decidual cell chemokine production in response to bacteria and bacterial cell wall components may be a key early event in the pathogenesis of infection-associated preterm labor.

Analysis of Variance↗

Bacterial lipopolysaccharide-mediated murine fetal death: the role of interleukin-1.

OBJECTIVE: Our purpose was to determine whether interleukin-1 is an important mediator of lipopolysaccharide-induced fetal death and, if so, whether interleukin-1 causes fetal death by inducing prostanoid formation in gestational tissues. STUDY DESIGN: Pregnant C3H/HeN mice were administered lipopolysaccharide, interleukin-1alpha, interleukin-beta, or vehicle on days 11 to 13 of pregnancy. Mice were killed 72 hours later and the fetal status was determined. Some mice were pretreated with anti-interleukin-1-receptor antibodies or indomethacin. Decidual explants were established from treated mice, and supernatants were assayed for interleukin-1beta and prostaglandin E2. RESULTS: Decidua taken from lipopolysaccharide-treated mice produced significantly increased amounts of interleukin-1beta, and pretreatment with anti-interleukin-1-receptor antibodies reduced the proportion of fetal deaths after lipopolysaccharide administration from 100% to 33%. The administration of interleukin-1alpha caused fetal death in a dose-dependent fashion, and decidua taken from interleukin-1-treated mice produced significantly increased amounts of prostaglandin E2. However, pretreatment with doses of indomethacin that abrogated decidual prostaglandin E2 production did not reduce the proportion of fetal death after interleukin-1alpha administration. CONCLUSIONS: Interleukin-1 is an important mediator of lipopolysaccharide-induced fetal death and causes fetal death by prostaglandin-independent effects.

Animals↗