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Biomedical subjects

Shingo Fujii

Publications and source records attributed to Shingo Fujii.

At least 91 records · Page 5Linked to original sources

Human peripheral blood mononuclear cells (PBMC) in early pregnancy promote embryo invasion in vitro: HCG enhances the effects of PBMC.

BACKGROUND: The aim of this study was to investigate the role of peripheral blood mononuclear cells (PBMC) in embryo invasion at the implantation site and to estimate the effect on PBMC function of human chorionic gonadotrophin (HCG) that is secreted from the human embryo. METHODS AND RESULTS: The effect of PBMC on the invasiveness of murine embryos was examined using an invasion assay. PBMC obtained from women in early pregnancy (5-9 weeks gestation) significantly enhanced both spreading of murine embryos on Matrigel and invasion beneath the gel. These effects were greater than those of PBMC obtained from non-pregnant women in the secretory phase (cycle day 16-24) and the control (in the absence of PBMC). When PBMC obtained from non-pregnant women were incubated with recombinant HCG (10 IU/ml) for 2 days and were subjected to invasion assay using murine embryos, PBMC treated with HCG significantly promoted both spreading and invasion of murine embryos as compared with the non-treated PBMC. On the other hand, embryo outgrowth was not affected by HCG in the absence of PBMC, showing no direct effect of HCG on embryo invasion. CONCLUSION: This study indicated that PBMC from pregnant women promoted murine embryo invasion in vitro and this effect of PBMC was enhanced by HCG. These findings suggest that PBMC at the implantation site are activated by HCG secreted from the embryo, following which PBMC regulate embryo invasion.

Animals↗

Peripheral blood mononuclear cells in early pregnancy promote invasion of human choriocarcinoma cell line, BeWo cells.

BACKGROUND: During the establishment of the maternal blood circulation around the implanting human embryo, maternal peripheral blood mononuclear cells (PBMC) directly contact trophoblasts. To determine the physiological significance of this interaction, the effects of PBMC obtained from pregnant women on the proliferative and invasive properties of a human choriocarcinoma cell line, BeWo cells, were examined. METHODS AND RESULTS: PBMC were obtained from women in early pregnancy and from women in the secretory phase of the menstrual cycle. PBMC from pregnant women significantly increased the number of invading BeWo cells in an invasion assay without affecting the proliferation of BeWo cells (P +/- 0.05). No significant changes were observed in the co-cultures with PBMC from non-pregnant women. The addition of conditioned medium, which was prepared by 2 days of incubation with PBMC from pregnant women, also enhanced BeWo cell invasion in a dose-dependent manner. Moreover, when PBMC obtained from non-pregnant women were incubated with recombinant HCG (0-10 IU/ml) for 2 days, significant augmentation of the effect on BeWo cell invasion was observed in the conditioned medium from HCG-treated PBMC (P +/- 0.05). CONCLUSION: This study indicated that soluble factor(s) secreted from PBMC promote BeWo cell invasion. It also showed the possible involvement of HCG in the regulation of BeWo cell invasion by PBMC. These findings suggest crosstalk between maternal PBMC and trophoblasts via soluble factor(s), which may play an important role in early embryo implantation.

Antibodies, Monoclonal↗

Prostaglandin F(2alpha), cytokines and cyclic mechanical stretch augment matrix metalloproteinase-1 secretion from cultured human uterine cervical fibroblast cells.

Human uterine cervical tissue is composed mainly of fibroblast cells and the extracellular matrix in which collagen types I and III predominate. It is hypothesized that these collagens are degraded by matrix metalloproteinases (MMPs) in the initial step of uterine cervical ripening during parturition. Among the MMPs, MMP-1, -8 and -13 have substrate selectivity for collagen types I and III. In the present study, we examined the regulation of MMP-1 secretion from the human uterine cervix. Immunohistochemistry detected strong staining of MMP-1, but not of MMP-8 or -13, in stromal cells of the pregnant uterine cervix. The MMP-1 expression in the pregnant uterine cervix was further confirmed by Western blot analysis and RT-PCR. To clarify the regulation of MMP-1 production, we subsequently investigated the effects of prostaglandins, inflammatory cytokines and cyclic mechanical stretch on the secretion of MMP-1 from cultured human uterine cervical fibroblast cells. Treatment with prostaglandin (PG)F(2alpha) (10(-7) to 10(-5) mol/l) or interleukin (IL)-1alpha (0.01-1.0 ng/ml) or stimulation with cyclic mechanical stretch increased MMP-1 secretion from cultured human uterine cervical fibroblast cells, with maximal increases of 3.4-, 4.5- and 1.9-fold respectively (24 h of treatment, P < 0.05 for all comparisons). These data suggest that MMP-1 may play a significant role in the degradation of extracellular collagen types I and III in the pregnant uterine cervix during the process of cervical ripening, in response to various stimulations such as PGF(2alpha), IL-1alpha and mechanical stretch.

Cells, Cultured↗

Involvement of dipeptidyl peptidase IV in extravillous trophoblast invasion and differentiation.

Previously, we reported that dipeptidyl peptidase IV (DPPIV), a membrane-bound peptidase, was expressed on human placental cytotrophoblasts. In the present study, we focused on DPPIV expression on extravillous trophoblasts (EVTs). In the first trimester, DPPIV was expressed in the proximal part of the cell column and some EVTs located in the deep portion of the decidua and myometrium. EVTs migrating in the decidua from the cell column were negative for DPPIV. In the second and third trimesters, almost all EVTs were positive for DPPIV. Because negative DPPIV expression was associated with migration or the invasive phenotype of EVTs, using JEG-3 cells (choriocarcinoma cell line) that endogenously produce DPPIV, the influence of DPPIV on the invasive activity was examined. When a competitive inhibitor of DPPIV, diprotin A, was added in Matrigel invasion assay system, JEG-3 cells exhibited a significant enhancement of invasion. Because hypoxia is reported to reduce trophoblastic invasion, the effect of hypoxia was examined on JEG-3 cells. JEG-3 cells became less invasive with increased expression of DPPIV when cultured under hypoxic conditions (1% O(2)). These results suggest that DPPIV is important for the noninvasive EVT phenotype and the down-regulation of this enzyme was strongly associated with migration or invasive EVT phenotype.

Base Sequence↗

Human chorionic gonadotropin (HCG) activates monocytes to produce interleukin-8 via a different pathway from luteinizing hormone/HCG receptor system.

To investigate immune-endocrine interactions between the embryo and the mother early in pregnancy, we examined the effects of human chorionic gonadotropin (HCG) on IL-8 production by peripheral blood mononuclear cells (PBMC). Recombinant HCG promoted IL-8 secretion by PBMC derived from nonpregnant women. The induction of IL-8 mRNA expression was observed after 30 min of HCG stimulation. Adsorption of the HCG with anti-HCG antibodies confirmed the specificity of this effect. The translocation of nuclear factor kappaB into the nucleus and subsequent IL-8 production were observed mainly in monocytes, and IL-8 production was reduced when a proteasome inhibitor was added to inactivate nuclear factor kappaB. Although fluorescein isothiocyanate-labeled HCG was bound to the majority of monocytes, cell surface expression of HCG receptor was hardly detected. IL-8 production by HCG was not affected by inhibitors of protein kinases A and C. In contrast, this stimulation was attenuated by D-mannose, which inhibits binding to C-type lectins. The basal IL-8 production by PBMC from women early in pregnancy was significantly elevated, compared with that from nonpregnant women. This study showed that human monocytes respond to HCG and secrete IL-8 through a pathway different from the HCG receptor system, suggesting that this glycoprotein hormone can react with not only endocrine cells but also immune cells early in pregnancy, probably via primitive systems such as C-type lectins.

Cell Nucleus↗

Tranilast inhibits the proliferation of uterine leiomyoma cells in vitro through G1 arrest associated with the induction of p21(waf1) and p53.

Uterine leiomyoma is a mesenchymal tumor composed of smooth muscle cells with fibrous tissues and many mast cells. Tranilast is known to suppress fibrosis or to work as a mast cell stabilizer and is reported to inhibit proliferation of vascular smooth muscle cells. In this study, we examined the effects of tranilast on cultured human leiomyoma cells in vitro to evaluate whether this agent has the potential to inhibit the growth of uterine leiomyomas. Tranilast inhibited the proliferation of cultured leiomyoma cells in a dose-dependent manner without any cytotoxic effect or induction of apoptosis. In association with the inhibitory effect, tranilast induced the cyclin-dependent kinase (CDK) inhibitor p21(waf1) and tumor suppressor gene p53 and decreased CDK2 activity. These results suggest that tranilast arrests the proliferation of uterine leiomyoma cells at the G0/G1 phase, through the suppression of CDK2 activity via an induction of p21(waf1) and p53. Tranilast was concluded to be a potent agent to inhibit proliferative activity of uterine leiomyoma cells.

Blotting, Western↗

Human endometrial epithelial cells express ephrin A1: possible interaction between human blastocysts and endometrium via Eph-ephrin system.

Eph receptor tyrosine kinases and their cell membrane-bound ligands, ephrins, are well known to function in cell-to-cell interaction and to play an important role in cell migration and adhesion during embryonic development in mammals. To investigate the involvement of the Eph-ephrin system in human embryo implantation, the expression of Eph receptors and ephrins was examined in human blastocysts and the endometrium. Immunohistochemical examination showed that ephrin A1 was expressed on human endometrial luminal and glandular epithelial cells in both the proliferative (cycle d 8-13; n = 8) and secretory (cycle d 18-24; n = 7) phases. RT-PCR analysis of isolated endometrial epithelial cells and stromal cells showed that ephrin A1 mRNA was predominantly expressed in endometrial epithelial cells. Northern blot analysis also confirmed the expression of ephrin A1 mRNA in the endometrium. In addition, nested RT-PCR analysis revealed the mRNA expression of Eph A1, one of the representative receptors for ephrin A1, in human blastocysts obtained from patients undergoing in vitro fertilization treatment. These findings indicate a possible interaction between human blastocysts and endometrial epithelial cells via the Eph-ephrin system. Because intracytoplasmic signals are induced by Eph receptors after ephrin stimulation, this system may be involved in the activation process of the human embryo during the implantation period.

Blastocyst↗

Cyclic mechanical stretch augments prostacyclin production in cultured human uterine myometrial cells from pregnant women: possible involvement of up-regulation of prostacyclin synthase expression.

Prostacyclin (PGI(2)), a potent smooth muscle relaxant, is a major prostaglandin secreted from human myometrium. The concentrations of PGI(2) metabolites in the maternal plasma were reported to be elevated during pregnancy, especially in labor. To clarify the mechanism in PGI(2) secretion from the myometrium, we first investigated the protein expression of cytosolic phospholipase A(2), cyclooxygenase (COX)-1, COX-2, and prostacyclin synthase (PGIS) in the human uterine myometrium at various gestational ages before labor. To elucidate the involvement of labor in the increase in PGI(2) production during labor, we next examined the effect of labor-like cyclic mechanical stretch on PGI(2) production by cultured human myometrial cells. Pregnancy specifically increased COX-1 and PGIS protein expression in the myometrial tissues before labor (P < 0.01 for both). Cyclic mechanical stretch augmented PGIS promoter activity, via activation of activator protein-1 site, and PGIS mRNA and protein expression in cultured human myometrial cells and resulted in a 3.5-fold increase in the concentration of 6-keto-prostaglandin F(1alpha), the stable metabolite of PGI(2), in the culture medium (P < 0.05). However, stretch did not affect the levels of prostaglandin E(2), prostaglandin F(2alpha), or thromboxane A(2) secreted into the same culture media. These results suggest that cyclic mechanical stretch during labor may contribute to the increase in the PGI(2) concentration in the maternal plasma during parturition.

Benzoquinones↗

Secreted frizzled related protein 1 is overexpressed in uterine leiomyomas, associated with a high estrogenic environment and unrelated to proliferative activity.

Secreted frizzled related protein 1 (sFRP1) is a modulator of Wnt signaling. Recently, aberrations of Wnt signaling were reported to be involved in the pathology of various human neoplasms. We investigated the expression and function of sFRP1 in uterine leiomyomas. Secreted FRP1 expression was increased in leiomyomas, compared with normal myometrium using Northern and Western blot analyses. Expression was strongest in the late follicular phase (high estrogenic milieu) of the menstrual cycle. Interestingly, expression was negligible in leiomyomas treated with GnRH agonist. Expression was also prominent in cells during E2 treatment, serum deprivation, and hypoxia. Moreover, induction of apoptosis by serum deprivation in a leiomyosarcoma cell line was enhanced by antisense inhibition of sFRP1. These results suggest that sFRP1 expression was associated with uterine leiomyomas, particularly under high estrogenic conditions. Secreted FRP1 expression was not associated with cell proliferation but rather occurred during cell protection against apoptosis in vitro. Strong sFRP1 expression under high estrogenic conditions seems to contribute to the development of uterine leiomyomas through the antiapoptotic effect of sFRP1, which appear to be independent of cell proliferation.

Adult↗

Altered post-translational modification of redox factor 1 protein in human uterine smooth muscle tumors.

Uterine leiomyomas are the most common benign smooth muscle tumors in the myometrium. The expression of redox factor 1 (Ref-1), a DNA repair enzyme and redox-modifying factor, was studied in the myometrium and uterine smooth muscle tumors to investigate the relevance of Ref-1 in the growth regulation of the tumors. Two forms of Ref-1 protein were detected, using three antibodies against different epitopes of Ref-1. The abundance of the large form of Ref-1 was increased in leiomyoma extracts relative to myometrial tissue extracts, and the large form was dominant in cell lines derived from leiomyosarcomas. A single mRNA transcript was detected in the same samples, leading us to hypothesize that the differentially migrating forms are the result of posttranslational modification(s). In vitro incubation of leiomyoma tissue extract lead to a shift from the large form to the small form, and this conversion was inhibited by either protease or phosphatase inhibitors. Finally, the relative abundance of the large form of Ref-1 was found to correlate with proliferating cell nuclear antigen levels, suggesting a correlation with increased proliferation. These results indicate that altered posttranslational modification of Ref-1 is involved in uterine smooth muscle tumorigenesis.

Adult↗

Possible role of placental leptin in pregnancy: a review.

Leptin was initially identified as an adipocyte-derived hormone that decreases food intake and body weight via its receptor in the hypothalamus. Subsequent animal studies revealed various physiologic functions of leptin. Leptin plays an essential role in reproduction by regulating gonadotropin-releasing hormone secretion from the hypothalamus. It also modulates glucose metabolism by increasing insulin sensitivity and activates the sympathetic nervous system. In humans, leptin is also produced by placental trophoblasts and is secreted into both the maternal and fetal circulation. Leptin production in the placenta is increased in pregnancies complicated with several pathologic conditions. Leptin gene expression in the placenta is augmented in severe preeclampsia, and maternal plasma leptin levels in severe preeclampsia are significantly higher than those in normotensive pregnant women. Leptin production in the placenta is also increased in diabetic pregnancy with insulin treatment. Furthermore, leptin is proposed to play a functional role in implantation by virtue of its stimulatory effect on matrix metalloproteinase expression in cytotrophoblast. Dysregulation of leptin metabolism and/or function in the placenta may be implicated in the pathogenesis of various disorders during pregnancy, such as recurrent miscarriage, gestational diabetes, intrauterine growth retardation, and preeclampsia. In this review, possible roles of placental leptin are discussed.

Adipocytes↗

A case of peripartum cardiomyopathy with a transient increase of plasma interleukin-6 concentration occurred following mirror syndrome.

Peripartum cardiomyopathy (PPCM) is an unusual heart failure of unknown etiology that occurs during pregnancy or postpartum. Mirror syndrome is a characteristic of maternal edema subsequent to fetal and/or placental edema. We report a case of PPCM with a transient increase of interleukin-6 concentration occurring in the postpartum period of mirror syndrome.

Adult↗

Site-specific augmentation of amnion cyclooxygenase-2 and decidua vera phospholipase-A2 expression in labor: possible contribution of mechanical stretch and interleukin-1 to amnion prostaglandin synthesis.

OBJECTIVE: To investigate a possible site-specific augmentation of prostaglandin (PG) synthesis in the fetal membranes during labor. METHODS: We used reverse transcriptase-polymerase chain reaction or Western blot analysis to evaluate the expression of cytosolic phospholipase A2 (cPLA2) and cyclooxygenase-1, -2 (COX-1, -2), in both the upper and lower parts of the amnion, chorion laeve, and decidua vera tissues from term pregnant women before (n = 8) and after labor (n = 24). Prostaglandin E2 (PGE2) secretion from amnion-derived WISH cells was assessed using enzyme-linked immunosorbent assay after stimulation by cyclic mechanical stretching and interleukin-1 (IL-1). RESULTS: The expression of cPLA2 and COX-1 and COX-2 mRNAs was detected in all samples examined. Western blot analysis revealed that COX-2 expression in the upper part of the amnion, chorion laeve, and decidua vera tissues after labor was 4.7-, 4.9-, and 3.7-fold higher than that before labor, respectively (P < .05 for all). The cPLA2 protein expression in the upper part of the amnion and chorion laeve tissues after labor was 14.0- and 8.8-fold higher than that before labor, respectively (P < .05 for both). Moreover, in specimens obtained after labor, the amnion COX-2 expression and the decidua vera cPLA2 expression in the lower part of the fetal membrane was 1.9- and 2.6-fold higher than the respective levels in the upper part (P < .05 for both). In an in vitro study, cyclic mechanical stretching significantly enhanced IL-1-augmented PGE2 secretion from WISH cells. CONCLUSION: In the lower part of the amnion and decidua vera tissues, adjacent to the dilating cervical canal, PG synthesis was upregulated site specifically after labor. Such enhancement of amnion PG synthesis might be regulated at least partly by IL-1 and cyclic distension.

Amnion↗

MR imaging of müllerian mucinous borderline tumors arising from endometriotic cysts.

This report describes MR findings of müllerian mucinous borderline tumors, pathologically proven to have arisen from endometriotic cysts, in three patients. They were unilocular or paucilocular masses with mural nodules. Cystic components showed hyperintensity on both T1- and T2-weighted images, simulating clear cell or endometrioid carcinomas arising from endometriotic cysts. Mural nodules showed prominent high signal intensity on T2-weighted images. Correlation with pathologic findings suggests that this hyperintensity reflects intraluminal mucinous material and stromal edema.

Adult↗

Retained products of conception masquerading as acquired arteriovenous malformation.

This case documents a seldom-described event of retained products of conception masquerading as an acquired arteriovenous malformation (AVM) of the uterus. The patient presented with sudden onset of heavy vaginal bleeding 6 weeks after artificial abortion. Ultrasonography and magnetic resonance imaging revealed a diffuse intramural lesion predominantly consisting of prominent vessels, which raised suspicion of an AVM. Hysterectomy revealed retained products of placenta that were necrotic and encroached into thin myometrium.

Adult↗

Diffusely enlarged uterus: evaluation with MR imaging.

Diffuse uterine enlargement is a common clinical finding. Because this abnormality can represent a physiologic manifestation, benign tumor, or malignancy, the diagnostic dilemma of a diffusely enlarged uterus can be challenging. Clinical findings can provide valuable information in regard to physiologic effects, pregnancy-related changes, and hormonal causes. Cytologic examination is essential for identification of cervical and endometrial malignancies. However, since preoperative histologic examination of myometrial lesions is not possible, preoperative distinction between benign and malignant conditions is frequently difficult. Imaging thus plays an important role in evaluation of myometrial lesions. In particular, magnetic resonance (MR) imaging allows specific diagnosis of several different lesions. Signal voids and prominent vessels at MR imaging are characteristic of vascular lesions. Adenomyosis and leiomyomas can be distinguished from other lesions with MR imaging, although a variety of unusual manifestations can be seen. MR imaging findings that allow distinction between leiomyoma and leiomyosarcoma have yet to be clearly established; however, invasion, hemorrhagic necrosis, or rapid growth is suggestive of malignancy. Endometrial stromal sarcoma tends to have distinct MR imaging features that allow differentiation from benign lesions.

Adult↗

Down-regulation of estrogen receptor by the methylation of the estrogen receptor gene in endometrial carcinoma.

BACKGROUND: Human uterine endometrial carcinomas are composed of estrogen receptor (ER)-positve and ER-negative subgroups, though the mechanisms that down-regulate the ER expression are not understood. The present study was undertaken to examine the involvement of methylation of the ER gene on the ER status. MATERIALS AND METHODS: DNA was extracted from 25 cases of endometrial carcinoma. Polymerase chain reaction (PCR), using the extracted DNA and methylation-sensitive restriction enzymes (Hpa II, Hha I), was performed to detect the methylation of a CpG island in the ER (alpha) gene. The results were compared with the ER expression by immunostaining. RESULTS: In the 25 endometrial carcinomas, methylation at the Hpa II site, or at both the Hpa II and Hha I sites, was found in 6 cases, while methylation was not found in the remaining 19 cases. Immunohistochemically, 5 of the 6 methylation-positive cases were negative for ER, whereas 14 of the 19 methylation-negative cases were ER-positive (p=0.02). CONCLUSION: Methylation of the CpG island of the ER gene is inversely correlated with ER expression in a subset of endometrial carcinomas.

Carcinoma↗