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      • SCOPUSKCI등재

        인간 체외수정 및 배아이식에 있어서 과배란 유도 과정에 사용한 GnRH Agonist가 배란 전 난포내 과립 세포의 세포자연사에 미치는 영향

        양현원,권혁찬,황경주,박종민,오기석,윤용달,Yang, Hyun-Won,Kwon, Hyuck-Chan,Hwang, Kyung-Joo,Park, Jong-Min,Oh, Kie-Suk,Yoon, Yong-Dal 대한생식의학회 1999 Clinical and Experimental Reproductive Medicine Vol.26 No.1

        There have been many reports to date regarding the role of GnRH as a local regulatory factor of ovarian function as studies of human and rat ovaries revealed GnRH and its receptor. In recent studies it has been shown that GnRH directly causes apoptosis in the granulosa cells of the rat ovary, and such results leads to the suggestion that the use of GnRH agonist for more stable long term ovarian hyperstimulation in human IVF-ET programs causes granulosa cell apoptosis which may lead to follicular atresia. Therefore this study attempts to determine if granulosa-luteal cell apoptosis occurs in patients during IVF-ET programs in which GnRH agonist is employed for ovarian hyperstimulation. The quality of oocyte-cumulus complexes obtained during ovum pickup procedures were assessed morphologically and then the fertilization rate and developmental rate was determined. Apoptotic cells among the granulosa-luteal cells obtained during the same procedure were observed after staining with Hematoxylin-eosin. The fragmentation degree of DNA extracted from granulosa-luteal cells was determined and comparatively analyzed. There was no difference in the average age of the patients, the number of oocytes retrieved, and fertilization and developmental rates between the FSH/hMG group and GnRH-long group. There was also no difference in the apoptosis rate and pyknosis rate in the granulosa-luteal cells between the two groups. However, when the oocyte-cumulus complexes were morphoogically divided into the healthy group and atretic group without regard for the method of hyperstimulation, the results showed that the number of oocytes obtained averaged $11.09{\pm}8.75\;and\;10.33{\pm}4.53$ per cycle, respectively, showing no significant difference, but the fertilization rate (77.05%, 56.99%, respectively, p<0.01) and developmental rate (65.96%, 41.51%, respectively, p<0.01) was significantly increased in the healthy group when compared to the atretic group. The degree of apoptosis in the granulosa-luteal cells showed that in the healthy group it was 2.25% which was not significantly different from the atretic group (2.77%), but the pyknosis rate in the atretic group (27.81%) was significantly higher compared to the healthy group (11.35%, p<0.01). The quantity of DNA fragmentation in the FSH/hMG group was 32.22%, while in the GnRH-long group it was 34.27%, showing no significant difference. On the other hand the degree of DNA fragmentation was 39.05% and 11.83% in the healthy group and atretic group, respectively, showing significantly higher increase in the atretic group (p<0.01). The above results suggest that death of granulosa-luteal cells according to the state of the oocyte-cumulus complex is more related to pyknosis rather than apoptosis. Also, the GnRH agonist used in ovarian hyperstimulation does not seem to directly affect the apoptosis of retrieved oocytes and granulosa-luteal cells, and which is thought to be due to the suppression of the apoptogenic effect of GnRH agonist as a result of the high doses of FSH administered.

      • KCI등재

        Lipid Polysaccharides have a Detrimental Effect on the Function of the Ovaries and Uterus in Mice through Increased Pro-Inflammatory Cytokines

        양현원 한국발생생물학회 2022 발생과 생식 Vol.26 No.4

        As the number of coronavirus disease 2019 (COVID-19) vaccinations increases, various side effects are being reported, and menstrual abnormalities have been reported as a side effect in women. However, it is still unclear whether the COVID-19 vaccine has detrimental effects on the female reproductive system. Therefore, we investigated the effect of excessive immune response on reproductive function by administering Lipopolysaccharides (LPS) instead of the COVID-19 vaccine. The immune response in mice was induced by injection of LPS. Mice injected with saline 5 times were used as a control group, and mice injected with LPS 5 times were used as an experimental group. Repeated administration of LPS significantly reduced the number of corpus luteum (CL). On the other hand, the injection of LPS did not affect the development of follicles leading before the CL. The expression of the apoptosis-related genes Fas and Fas-L increased in the experimental group. In addition, the expression of the inflammation-related genes increased in the experimental group. In this study, we confirmed that LPS had detrimental effects on the uterus and ovaries in mice. These results suggest that injection of LPS can cause immune reactions within the uterus and ovaries and cause hormonal changes, which can have adverse effects such as abnormal operation or bleeding of the menstrual cycle. These results are expected to help determine the cause of decreased reproductive function, infertility, or physiological disorders caused by the COVID-19 vaccine.

      • KCI등재

        Tributyltin에 의한 흰쥐 흉선 내 상피세포의 지방세포 유도와 세포자연사 증가

        양현원,이효진,이아라,안보람,전은제,정예지 한국발생생물학회 2011 발생과 생식 Vol.15 No.4

        성 호르몬과 유사한 기능을 하는 것으로 알려진 내분비교란물질은 흰쥐 흉선세포에 세포자연사를 일으켜 흉선의기능을 감소시키는 것으로 보고되고 있으나, 그 작용 기전에 대해서는 잘 알려져 있지 않다. 따라서 본 연구에서는 내분비교란물질 중 하나인 Tributyltin(TBT)를 흰쥐에 투여한 후 흉선의 상피세포가 지방세포로 분화되는지를 조사하고, 이로인한 T 세포의 세포자연사와 연관성을 조사함으로써 TBT가 흉선기능에 미치는 영향을 알아보고자 하였다. 3주령 된 암컷 흰쥐에 각각 TBT 1, 10, 25 ㎎/㎏/day를 1주일 동안 경구 투여한 후, 흉선을 획득하여 무게와 세포 수를 측정하였고,파라핀 절편으로 H&E 염색, TUNEL 분석을 수행하였다. 또한 real-time PCR 방법으로 상피세포 표지 유전자들, 지방세포유도 유전자들과 세포자연사 관련 유전자들을 비교 분석하였으며, 유세포 분석기를 통해 세포자연사 정도를 조사하였다. 흉선의 무게와 세포 수는 대조군과 비교하여 TBT의 농도가 높을수록 유의하게 감소하였다. H&E 염색 결과, TBT의 농도가 증가할수록 흉선의 크기가 감소하고 피질과 수질의 경계가 흐려짐을 관찰하였다. TUNEL 염색 결과에서는 대조군에 비해 TBT를 투여한 군에서 세포자연사가 증가하였으며,유세포 분석결과에서도 TBT 농도 의존적으로 세포자연사가 증가하였다. Real-time PCR 결과, 상피세포 표지유전자인 EVA, IL-7, AIRE, KGF는 TBT의 농도가 증가 할수록 발현량이 유의하게 감소한 반면, 지방세포 유도와 관련된 유전자인 PPARγ, aP2, PEPCK, CD36은 TBT의 농도가증가할수록 발현량이 유의하게 증가하였다. 세포자연사와 관련된 유전자인 TNFα, TNFR1도 TBT의 농도가 증가할수록발현량이 유의하게 증가하였다. 위의 결과를 종합하여볼 때, 내분비교란물질인 TBT는 흉선 상피세포에 직접적으로 작용하여 지방세포로 분화 유도시킴으로써 흉선의 기능을 상실케 만들면서 T 세포의 발달에 영향을 미치는 것으로 보인다. 이러한 결과는 지속적으로 노출되는 TBT가 흉선의 기능을 떨어뜨림으로써 면역력 저하를 유발시킬 수 있음을 제시하고있다.

      • SCOPUSKCI등재

        전핵 시기 및 2-4 세포 시기에 동결 보존된 배아의 발생률 및 임신률

        양현원,최규완,전한식,차영범,이승재,박종민,Yang, Hyun-Won,Choi, Kyoo-Wan,Cheon, Han-Sik,Cha, Young-Beom,Lee, Seung-Jae,Park, Jong-Min 대한생식의학회 1994 Clinical and Experimental Reproductive Medicine Vol.21 No.1

        The survival and pregnancy rates were compared between non-frozen embryos and cryopreserved embryos at either pronucleate or 2-4 cell stages using the freezing and thawing techniques being identical in both groups were compared with fresh embryos. 496 embryos were frozen with 1, 2-propanediol and sucrose and 117 2-4 cell stages embryos had been thawed and 79.6 and 66.0% of them respectively were survival. Clinical pregnancy rate was 19.2% for embryos frozen at the pronucleate stage and 19.0% for embryos frozen at the 2-4 cell stages while the pregnancy rate of non-frozen embryos was 21.3%. There were no significant difference in the survival and pregnancy rates of embryos frozen at pronucleate and 2-4 cell stages. The current cumulative pregnancy rate per retrieval in all cycles with frozen zygotes is 35.4 %, consid~ erably higher than observed in single transfers of embryos without cryopreservation(21.3%); predicted pregnancy rate after transfer of all frozen embryos is 43.3 %. It is concluded that firstly, the survival and pregnancy rate of cryopreserved embryos at pronucleate or 2-4 cell stages are very similar to those from their fresh embryos and non-frozen embryos and secondly, cryopreservation substantially enhances pregnancy attainment from in vitro fertilization.

      • KCI등재

        Determination of Apoptosisin Granulosa-Luteal Cells Obtained from Hyperstimulated Human Ovaries

        양현원 한국발생생물학회 1997 발생과 생식 Vol.1 No.1

        Recent studies have demonstrated that apoptotic cell death plays an important role in the mechanism underlying follicular atresia and luteolysis. However, the mechanisms responsible for initiating these processes have not been elucidated. In in vitro fertilization (IVF) programs, it is highly possible that continuous and repeated administration of FSH/hMG and GnRH agonists for the usage of ovarian hyperstimulation may induce apoptotic death of granulosa cells leading to atresia in the human ovarian follicles. The present study was performed to investigate whether FSH/hMG and GnRh agonists used for a longer period in controlled ovarian hyperstimulation has any effect on the apoptosis of granulosa-luteal (GL) cells obtained from hyperstimulated ovaries. To examine apoptotic cell death in the GL cells, cells were stained with acridie orange followed by observed in some of GL cells. Similar but distinct staining of apoptotic GL cells was observed when the cells were examined by using in situ TUNEL method. The healthy-looking cells with normal nuclear morphology were not stained, whereas cells with pyknotic nuclei or with apoptotic nuclei were intensively stained. After examining the ultrastructural features of GL cells by TEM, it was confirmed that the majority of cells seemed to have normal nuclei while GL cells undergoing apoptotic cel death were rarely found. The DNA extracted from GL cells showed a typical pattern of fragmentation following DNA electrophoretic analysis. We have confirmed that the apoptosis occurs in granulosa-luteal cells obtained from hyperstimulated ovaries. Technically, in situ apoptosis detection method is simple and reproducible and is well suited to identify the quality of oocytes retrieved from hyperstimulated ovaries.

      • KCI등재
      • KCI등재

        Effect of Gonadotropin Releasing Hormone-Agonist on Apoptosis of Luteal Cells in Pregnant Rat

        양현원,김종석,박철홍,윤용달 한국발생생물학회 2002 발생과 생식 Vol.6 No.2

        최근 난포에서 GnRH와 그 수용체의 발현이 확인되면서 GnRH가 국소적으로 난소의 기능을 조절하고,특 히 과립세포의 세포자연사(apoptosis)를 유도하는 것으로 보고되고 있다. 그러나 황체에서 GnRH와 그 수용체의 발현과 기능에 대해서는 잘 알려져 있지 않다. 따라서 본 연구는 임신한 흰쥐의 황체세포에서 GnRH와 그 수용체가 발현되는지를 확인하고, 또한 GnRH가 황체세포의 세포자연사를 직접적으로 유발시킬 수 있는지를 알아보고자 시행하였다. 임 Since GnRH and its receptor genes are expressed in the ovary, it has been suggested that ovarian GnRH might be involved in the regulation of ovarian function and the apoptosis of ovarian cells. However, it was not known well on the expression and function of GnRH and its receptor in the corpus luteum. The present study was undertaken to investigate whether GnRH and its receptor are expressed in luteal cells and GnRH has any effect on the apoptosis of luteal cells. Luteal cells obtained from the pregnant rats were cultured and stained for GnRH and its receptor proteins. Cultured luteal cells showed distinct immunoreactivity against both anti-GnRH and anti-GnRH receptor antibodies. In addition, the presence of GnRH receptor protein in cultured cells was confirmed by Western blot analysis. To investigate the effect of GnRH on the apoptosis of luteal cells, luteal cells were cultured in the presence of 10 M GnRH-agonist(GnRH-Ag) for 3, 8, and 12h. TUNEL assay showed that the number of cells undergoing apoptosis increased 12h after culture(P<0.05). DNA fragmentation analysis confirmed the results such that the cells treated for 12h showed the greatest increase of fragmentation(p<0.05). Further, Western blot analysis of cytochrome c in the mitochondrial and cytoplasmic fractions of the luteal cells showed that GnRH-Ag treatment increased the content of cytochrome c in cytoplasm. These results demonstrate that the luteal cells express GnRH and its receptor and GnRH-Ag treatment induces apoptosis of the luteal cells via mitochondrial release of cytochrome c. The present study suggest that the releasing of cytochrome c from mitochondria might be involved in the luteal cell apoptosis induced by GnRH-Ag.

      • SCOPUSKCI등재

        생쥐 배아 동결시 전핵의 발생시기가 생존률과 발생률에 미치는 영향

        양현원,강희규,최규완,차영범,이승재,박종민,Yang, Hyun-Won,Kang, Hee-Kyoo,Choi, Kyoo-Wan,Cha, Young-Beom,Lee, Seung-Jae,Park, Jong-Min 대한생식의학회 1993 Clinical and Experimental Reproductive Medicine Vol.20 No.1

        The effects of freezing and 1,2-propanediol on early and late pronucleate stage mouse ova were investigated in terms of survival after thawing and development in vitro. The samples were divided into two groups according to different age in pronucleate ova: ova in(1) early pronuclear stage with two distant pronuclei at 18h after hCG injection, and (2) late pronuclear stage with adjacent pronuclei at 30h. Zygotes in the late pronuclear stage have been proven to be more resistant to 1,2-propanediol, showing a significantly higher developmental rate than zygotes in early stage (80.3 versus 66.3%, <0.05), but survival rate was similar in the two groups (91.0 versus 93.5%). After freezing and thawing, survival and developmental rates were decreased in both groups when compared to the control group (54.3 versus 92.3%, 47.7 versus 73.3%. respectively). And developmental rate in the late pronuclear stage zygotes showed significantly higher than in early (55.4 versus 40.0%) after thawing. In conclusion, early pronucleate mouse ova have a lower developmental capacity in vitro and a lower survival rate after freezing and thawing than late ova. These findings suggest that the timing of freezing could be important for survival and further development in vitro in cryopreservation of human pronucleate ova.

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