• Title/Summary/Keyword: Endometrial stromal cells

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Effects of Insulin-like Growth Factor in Peritoneal Fluid of Patients with Endometriosis on the Proliferation of Endometrial Stromal Cells (자궁내막증 환자의 복강액내 IGF가 자궁내막 기질세포 증식에 미치는 영향)

  • Kim, Jung-Gu;Suh, Chang-Seok;Kim, Seok-Hyun;Choi, Young-Min;Moon, Shin-Yong;Lee, Jin-Yong
    • Clinical and Experimental Reproductive Medicine
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    • v.26 no.3
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    • pp.331-338
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    • 1999
  • The purposes of this study were to evaluate the effects of insulin-like growth factor (IGF)s in peritoneal fluid (PF) from patients with and without endometriosis on the proliferation of endometrial stromal cells and to investigate the effects of type I IGF receptor antibody on the response of endometrial stromal cells to PF from patients with endometriosis. IGFs in PF from patients with endometriosis (n=14) and without endometriosis (n=10) were measured by immunoradiometric assay and PF samples were divided into low IGF-I PF group (less than 85 ng/ml) and high IGF-I PF group (more than 85 ng/ml). Endometrial stromal cells from patients without endometriosis were cultured in serum free media in the presence or absence of 1 % PF and thymidine incorporation test were used to evaluate the proliferation of endometrial stromal cells. Also cultures were incubated with type I IGF receptor monoclonal antibody (${\alpha}IR_3$) before adding PF. PF from patients with endometriosis and without endometriosis increased thymidine incorporation in endometrial stromal cells. In patients with endometriosis, high IGF-I PF group had high IGF-II levels and resulted in higher thymidine incorporation than low IGF-I PF group but no significant difference in increase in thymidine incorporation between high IGF-I and low IGF-I PF group was noted in patients without endometriosis. There was not a significant correlation between increase in thymidine incorporation and IGF-I levels in PF from patients without endometriosis but in PF from patients with endometriosis. Preincubation with ${\alpha}IR_3$ significantly inhibited the mitogenic response of endometrial stromal cells to PF. Our data indicate that IGF-I in PF may be involved in the growth of ectopic endometrium in patients with endometriosis.

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Transforming Growth Factor-$\beta$ is a Possible Paracrine Mediator in the Human Endometrial Decidualization (인간자궁내막의 탈락막화 (Decudualization)에 있어서 TGF-$\beta$ (Transforming Growth Factor-$\beta$)의 역할)

  • Park, Dong-Wook;Choi, Dong-Soon;Kim, Mi-Ran;Hwang, Kyung-Joo;Jo, Mi-Yeong;Ahn, Seong-Hee;Min, Churl-K.;Ryu, Hee-Sug
    • Clinical and Experimental Reproductive Medicine
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    • v.30 no.1
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    • pp.65-75
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    • 2003
  • Objectives: To investigate the role of TGF (Transforming growth factor-$\beta$) involved in the paracrinic communication during decidualization between UEC (uterine epithelial cells) and USC (uterine stromal cells), we have employed a co-culture system composed of human endometrial epithelial and stromal cells in defined hormonal conditions. Design: In the co-culture, endometrial epithelial cells cultured in the matrigel-coated cell culture insert are seeded on top of the endometrial stromal cells cultured within a collagen gel. The co-culture was maintained for 48 hours under the following hormonal conditions: progesterone dominant condition (100 nM P4 and 1 nM E2) or estrogen-dominant condition (100 nM E2 and 1 nM P4). 10 ng/ ml HGF and/or 10 ng/ml TGF-$\beta$1 are added. Methods: RT-PCR is utilized to detect mRNAs quantitatively. Enzyme-linked immunosorbent assay (ELISA) and immunohistochemical staining are utilized to detect proteins in the tissue. Results: Prolactin mRNA is expressed in the co-cultured stromal cells under the progesterone dominant condition. TGF-$\beta$1 and its receptors are expressed in both the co-cultured epithelial and stromal cells irrespective of the steroid present, which is in contrast with no or negligible expression of TGF-$\beta$1 or its receptor in cells separately cultured. Both estrogen and progesterone significantly elevate the concentration of hepatocyte growth factor (HGF) in the conditioned medium of the co-culture with the value of 4, 325 pg/ml in E2-dominant and 2, 000 pg/ml in P4-dominant condition compare to 150 pg/ml in no hormone. In separately cultured stromal cells, administration of HGF induces the expression of TGF receptor 1 in both hormonal conditions, but induction of TGF receptor 2 is only manifest in the P4-dominant condition. Administration of TGF-$\beta$ and HGF directly induce the decidualization marker prolactin mRNA in separately cultured stromal cells. Conclusion: It is likely that steroid hormones induces prolactin mRNA indirectly by promoting the cell to cell communication between the stromal and the epithelial cells. TGF-$\beta$ and HGF are two possible paracrine mediators in the human endometrial decidualization.

3-Dimensional Culture System of Endometrial Cells for Studying the Human Implantation Mechanism (인간의 착상 기전을 연구하기 위한 3차원적 자궁내막 모델 확립)

  • Park, Dong-Wook;Yang, Hyun-Won;Kwon, Hyuck-Chan;Chang, Ki-Hong;Kim, Sei-Kwang;Cho, Dong-Jae;Oh, Kie-Suk
    • Clinical and Experimental Reproductive Medicine
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    • v.26 no.1
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    • pp.1-8
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    • 1999
  • In order to study the implantation mechanism various methods for culture of endometrial cells in vitro have been attempted. However, a disadvantage is that primary cultures of stromal and epithelial cells do not have the ability to differentiate, and therefore cannot be reproduced in the same manner as in vivo endometrium. The object of this study is to establish a three dimensional culture of endometrial cells which are both morphologically and functionally identical to in vivo endometrium. Endometrial tissues obtained after hysterectomies were cut into thin slices and treated with collagenase and trypsin-EDTA. The stromal cells and the epithelial cells were separated by centrifugation and cultured for 24 hours in DMEM media containing 10% FCS, 100 nM progesterone, and 1 nM estradiol. The cultured stromal cells were mixed with collagen gel and solidified, after which it was covered with matrigel. Epithelial cells were inoculated on the top and then cultured for 3 days. The three dimensionally cultured endometrial cells were stained for integrin ${\alpha}1,\;{\alpha}4,\;{\beta}3$, and cyclooxygenase-l, -2 by immunohistochemistry, which all showed strong expression. The cultured epithelial cells showed the formation of microvilli, tight junctions and pinopodes by electron microscopy. Studies are currently under way utilizing this three dimensional culture model to ascertain the interaction between the embryo and human endometrial cells at the time of implantation, and it is thought that further studies into a new culture environment which would allow longer periods of culture will be necessary.

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Characterization and Immortalization of Normal Human Endometrial Cells

  • Hong, In-Sun;Kim, Seok-Hyun;Kung, Mi-Kyung;Jun, Jin-Hyun;Lee, Yong-Soon;Kang, Kyung-Sun
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2003.10b
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    • pp.122-122
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    • 2003
  • Endometrial tissue is an interesting model for intrinsic and extrinsic factors, ie hormones and growth factors, involved in its normal pathologic development and its cyclic growth. The endometrial cells were isolated from endometrial tissue of the proliferative phase obtained by hysterectomy and separated stromal and epithelial cells.(omitted)

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Analysis of Plasminogen Activators Activity and Three Dimensional (3D) Culture of Endometrial Cells in Pigs (돼지 자궁내막 세포의 3차원 배양과 Plasminogen Activator 활성화 분석)

  • Cha, Hye-Jin;Lee, Sang-Hee;Cheong, Hee-Tae;Yang, Boo-Keun;Park, Choon-Keun
    • Journal of Embryo Transfer
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    • v.28 no.3
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    • pp.273-280
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    • 2013
  • The aim of this study was to establish a three dimensional (3D) culture system of endometrial cells and to examine the plasminogen activators (PAs) activity in porcine uterine. The 3D culture system in porcine endometrial cells was composed to mixture 3D gel, stromal cells and epithelial cells. The 3D culture system was used to identify normal structure search as uterine tissue and PAs expression in this study. In results, porcine endometrium epithelial cells forming a top monolayer and endometrium stromal cells developed as fibroblast-like within 3D matrix scaffold. Expression of urokinase-type PA (uPA) and tissue-type PA (tPA) were observed during the 3D culture using immunofluorescence. PA activity in 3D-cultured endometrial cells was no significant difference between the tissue type, but 2D culture system were significantly lower than in 3D-cultured endometrial cells (P<0.05). Therefore, basic system and functional aspect of 3D culture could be established with similar system of endometrium tissue. We suggest that this study was assumed applicable as baseline data to investigate mechanism between porcine uterus cells in vitro.

A Study on the Regulation of Endometrial and Placental Cell Function by Water Extract of 3 Types of Herbal Medicines and Ethanol Extract on Scutellariae Radix (3종 한약 처방 물 추출물과 황금 에탄올 추출물에 의한 자궁내막과 태반세포 기능조절 연구)

  • Park, Seo-Ye;Noh, Eui-Jeong;Seo, Chang-Seob;Lee, Sung-Ki;Shin, Hyeun-Kyoo
    • The Journal of Korean Obstetrics and Gynecology
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    • v.34 no.3
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    • pp.1-14
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    • 2021
  • Methods: We investigated the ability to induce decidualization of human endometrial stromal cells and invasive ability of human trophoblast cells by water extract of three types herbal medicines (Dangguijakyak-san, Siryung-tang, Antae-eum) and ethanol extract on Scutellariae Radix. Results: In the process of decidualization of endometrial stromal cells, three herbal medicines including Dangguijakyak-san, Siryung-tang, and Scutellariae Radix increased the production of decidual markers such as prolactin (PRL) and insulin-like growth factor-binding protein 1 (IGFBP1). However, Antae-eum increased mRNA levels of PRL and IGFBP and secretion of IGFBP in decidual stromal cells, but not PRL. Four herbal medicines inhibited the invasion of trophoblast cells. Conclusions: Four herbal medicines may play a role in implantation in women with reproductive failures. However, further studies are warranted to elucidate whether these medications are helpful in the maintenance of pregnancy.

Observations of a endometrial stromal sarcoma in the rat uterus wall (Rat의 자궁벽에 발생된 stromal sarcoma의 관찰)

  • Kwak, Soo-dong;Kim, Chong-sup
    • Korean Journal of Veterinary Research
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    • v.34 no.3
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    • pp.435-439
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    • 1994
  • The present observation was focussed mainly on the histopathological and immunohistochemical finding of the tumor developing from the outside of rat uterus wall. In gross finding, this tumor were a oval form mass and 0.75cm and 1cm in greatest demension. The sectioned surface showed uniform, solid, gray-white. In histopathological finding, the tumor showed the form of lymphoid nodule-like structure and was composed of the cells with karryorrhexis, karyolysis and necrosis in the central zone, mature cells in the paracentral zone, and concentric layers of compressed, flattened and atrophied smooth muscle fibers by the proliferating of the cells closely resembling endometrial stromal ells in the peripheral zone and a few smaller nodule-like structure in certain areas of the peripheral zone. In immunohistochemical observations, the proliferating cells presents only among the concentric layers of the smooth muscle fibers in the peripheral zone. Labeling index of proliferating cells in the peripheral zone was $4.34{\pm}1.28%$. These tumor cells did not metastasized in another orgns and labeling index was low, So it was concluded that this tumor was benign stomal sarcoma.

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Expression Pattern of Progesterone Receptor, Integrin, Cyclooxygenase (COX) in Human Endometrium of Patients with Endometriosis (자궁내막증 환자의 자궁내막내 성호르몬 수용체, Integrins, Cyclooxygenase의 발현과 변이 양상)

  • Kim, Mi-Ran;Park, Dong-Wook;Kwon, Hyuek-Chan;Hwang, Kyoung-Joo;Joo, Hee-Jae;Cho, Dong-Jae;Kim, Sei-Kwaug;Oh, Kie-Suk
    • Clinical and Experimental Reproductive Medicine
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    • v.27 no.2
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    • pp.117-131
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    • 2000
  • Objectives: To develop a new immunohistochemical marker system for supplementation of the Noyes histological classification of the endometrium in women of child bearing age with regular menstrual cycles, and to employ this system to evaluate pathologic factors involved in endometriosis, and thus to ascertain if it is useful in diagnosis. Materials and Methods: Endometrial biopsies were sampled from the posterior fundus of 41 (24 proliferative phases, 17 secretory phases) women with regular menstrual cycles (28-32 days), and each sample was immunohistochemically stained according to Noyes et al (1975) for determination of expression for estrogen receptor (ER), progesterone receptor (PR), integrin ${\alpha}_1$, ${\alpha}_4$, ${\beta}_3$, COX-1 and COX-2. Then, the PR, integrin ${\beta}_3$ and COX-2 which were clearly expressed in the luteal phase was with endometrial samples were obtained from 20 cases of normal patients (group 1) and 25 cases with endometriosis (group 2) after confirming the day of ovulation by sex steroid level measurements 7-8 days after ovulation Results: In the regular menstruation group the expression of ER showed a tendency to be increased in the proliferative phase and decreased in the secretory phase, and was the highest in the proliferative phase. However, PR in the stromal cells showed no change in the entire menstrual cycle while in the epithelial cells, PR reached a peak in the late proliferative phase and was almost absent in the secretory phase. Integrin (${\alpha}_1$, ${\alpha}_4$, and ${\beta}_3$ expression in the epithelial cells was absent in the proliferative phase but ${\alpha}_1$ was strongly expressed starting from the early secretory phase into the entire secretory phase. ${\alpha}_4$ was expressed strongly in the early and mid secretory phases and disappeared in the late proliferative phase, while ${\beta}_3$ appeared after the mid secretory phase and continued to be expressed until the late secretory phase. Expression in the stromal cells was weak overall and did not show any cyclic pattern. COX-1 expression was shown as a cyclic pattern in the stromal and epithelial cells and was particularly strongly expressed in the mid secretory phase of epithelial cells, and in the mid secretory and menstruation phase of stromal cells. In the endometrial epithelial cells there was strong expression during the entire cycle with stronger expression in the secretory phase compared to the prolferative phase. COX-2 was clearly expressed in the late proliferative, early and mid secretory phases in the stromal cells. No expression was observed in the proliferative phase of the epithelial cells, but which began to appear in the early secretory phase reaching a significant pattern from the mid secretory phase onwards. There was almost no expression in the stromal cells. In the cases with endometriosis showing normal endometrial maturation according to the Noyes classification, PR expression was increased while Integrin-${\beta}_3$의 expression was significantly decreased compared to the normal group. Also, COX-2 expression was slightly decreased in the stromal cells of patients with endometriosis while it was significantly increased in the stromal cells. Conclusion: Immunohistochemical markers can supplement the original Noyes classification of histological endometrial dating and therefore ascertain existing pathologic conditions. Particularly for patients with endometriosis with normally mature endometrial cells, changes in COX-2 and integrin expression patterns may assist in elucidating pathophysiologic mechanisms and therefore aid in the diagnosis of abnormal implantation conditions, and consequently determine a treatment modality.

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Roles of Local Estrogen and Progesterone Mediated Receptors in the Regulation of Endometrial Inflammation (자궁내막 염증에 대한 지엽적 에스트로겐 및 프로게스테론 매개 수용체의 역할)

  • Gyesik Min
    • Journal of Life Science
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    • v.33 no.1
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    • pp.102-113
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    • 2023
  • This review discusses the cellular and molecular mechanisms by which the endometrial estrogen and progesterone receptors regulate local estrogen production, expression of the specific estrogen receptors, progesterone resistance, inflammatory responses and the differentiation and survival of endometriotic cells in endometrial inflammation. The epigenetic aberrations of endometrial stromal cells play an important role in the pathogenesis and progression of endometriosis. In particular, differential methylation of the estrogen receptor genes changes in the stromal cells the dominancy of estrogen receptor from ERα into ERβ, and results in the abnormal estrogen responses including inflammation, progesterone resistance and the disturbance of retinoid synthesis. These stromal cells also stimulate local estrogen production in response to PGE2 and the SF-1 mediated induction of steroidogenic enzyme expression, and the increased estradiol then feeds back into the ERβ to repeat the vicious inflammatory cycle through the activation of COX-2. In addition, high levels of ERβ expression may also change the chromatin structure of endometrial mesenchymal stem cells, and together with the repeated menstrual cycles can induce formation of the endometriotic tissue. The cascade of these serial events then leads to cell adhesion, angiogenesis and survival of the differentiation-disregulated stromal cells through the action of inflammatory factors such as ERβ-mediated estrogen, TNF-α and TGF-β1. Therefore, understanding of the dynamic hormonal changes during the menstrual cycle and the corresponding signal transduction mechanisms of the related nuclear receptors in endometrium would provide new insights for treating inflammatory diseases such as the endometriosis.