• Title/Summary/Keyword: FSH

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Production and Embryo Transfer of In Vivo Embryos by Repeated Superovulation Treatment of Hanwoo Cattle (한우의 반복 과배란 처리에 의한 체내 수정란의 생산과 이식)

  • Shin, Sang-Min;Kim, Yong-Jun;Lee, Hae-Lee;Shin, Dong-Su;Kim, Yong-Su;Kim, Sue-Hee;Lee, Young-Jun
    • Journal of Embryo Transfer
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    • v.24 no.1
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    • pp.47-55
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    • 2009
  • This study was performed to investigate the possibility of repeated superovulation treatment at interval from 27 days to 41 days in Hanwoo cattle and to compare with superovulation effect between doses of FSH 200 mg and FSH 400 mg. Different doses of FSH (200 mg or 400 mg) were injected at Day 8 after controlled internal drug release (CIDR) treatment for superovulation of Hanwoo donors following CIDR treatment (Day 8 after the estrus). Superovulation was repeated four times for one donor and number of corpus luteum (CL), number of embryos, number of transferable embryos and pregnancy rate after embryo transfer (ET) were investigated. 5 cows were used for each FSH treatment (10 cows in total). Average number of CL were $10.16{\pm}3.85$ and $11.56{\pm}2.35$ for the donors treated with FSH 200mg and FSH 400mg, respectively. Average number of embryos collected were $8.85{\pm}4.05$ and $8.30{\pm}1.73$ for the donors treated with FSH 200 mg and FSH 400 mg, respectively. Average number of transferable embryos were $5.48{\pm}2.45$ and $4.58{\pm}2.23$ for the donors treated with FSH 200 mg and FSH 400 mg, respectively. The pregnancy rate following ET with embryos collected from 200 mg FSH treated donors and 400 mg FSH treated donors were 61.9% and 53.8% respectively. The numbers of embryos tended to be decreased as the numbers of repeat of superovulation were elapsed. These results indicated that superovulation treatment by about a month to Hanwoo donors is usable and 200 mg of FSH is preferable for simple FSH treatment following CIDR treatment.

A Study on Relation Inbody, HRV, PTG and FSH, LH (Inbody, HRV, PTG와 FSH, LH의 연관성 연구)

  • Yu, Ju-Hee;Kang, Jong-Geun;Um, Yun-Kyung;Cho, Hye-Sook;Lee, In-Sun;Kim, Kyu-Kon;Kim, Jong-Won;Jeon, Soo-Hyung
    • The Journal of Korean Obstetrics and Gynecology
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    • v.21 no.1
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    • pp.242-256
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    • 2008
  • Purpose: The purpose of this study is to find out the relation of oriental medicine examination(Inbody, HRV, PTG) and FSH, LH. Methods: We have carried out clinical trials who volunteered for Sasang constitutional medicine and Oriental OB & GY, Oriental Medical hospital of Dong-Eui University from November 2005 to January 2006. Women of Volunteers were 129 persons. Because 7 persons didn't exam oriental examination so we analyzed the results statistically for 122 persons. Results: 1. Inbody & FSH, LH In the relation of FSH correlation with results of Waist-Hip Ratio, Visceral Fat Area was increased(+direction), in the relation of LH correlation with results of Edema, Visceral Fat Area was increased (+direction). 2.The fluents of HRV & FSH, LH In the relation of FSH, LH correlation with results of SDNN, RMS, TP, VLF, LF, HF was decreased (-direction). 3.The fluents of PTG & FSH, LH In the relation of FSH, LH correlation with results of the fluents of PTG was decreased (-direction), with results of b_a was increased (+direction), with results of d_a was decreased (-direction). Conclusion: From this study, Inbody and HRV and PTG are corelation with FSH, LH.

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Production of Bovine Nuclear Transfer Embryos Using Fibroblasts Transfected with Single-Chain Human Follicle-Stimulating Hormone Gene

  • Yoon, Ji Young;Kwon, Mo Sun;Kang, Jee Hyun;Ahn, Kwang Sung;Kim, So Seob;Kim, Nam-Hyung;Kim, Jin-Hoi;Kim, Teoan;Shim, Hosup
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.2
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    • pp.168-173
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    • 2009
  • Human follicle-stimulating hormone (hFSH) is a pituitary glycoprotein that regulates follicular development and ovulation. Clinically, hFSH has been used to induce follicular growth in infertile women. The hormone is composed of heterodimers, including a common ${\alpha}$ subunit among the gonadotropin family and a hormone-specific ${\beta}$ subunit. Since assembly of the heterodimer is a rate-limiting step in the production of functional hFSH, transgenic clone cows carrying a single-chain hFSH transgene may efficiently produce functional hormone. Genes encoding the ${\alpha}$ and ${\beta}$ subunits of hFSH were linked using the C-terminal peptide sequence from the ${\beta}$ subunit of human chorionic gonadotropin. Bovine fetal fibroblasts were transfected with the gene construct, including the goat ${\beta}$-casein promoter and a single-chain hFSH coding sequence. Transfected fibroblasts were transferred into enucleated oocytes, and individual nuclear transfer (NT) embryos developed to the blastocyst stage were analyzed for the transgene by polymerase chain reaction. Seventy eight blastocysts (30.8%) were developed from 259 reconstructed embryos. Among these blastocysts, the hFSH gene was detected in 70.8% (34/48) of the embryos. Subsequent transfer of hFSH-transgenic clone embryos to 31 recipients results in 11 (35.5%) early pregnancies. However, all fetuses were lost before reaching day 180 of gestation. The results from this study demonstrated that bovine NT embryos carrying single-chain hFSH could be produced, and further extensive studies in which NT embryos are transferred to more recipients may give rise to single chain hFSH-transgenic cows for biomedical applications.

Studies on In Vivo Embryo Production by FSH-P and SUPER-OV in Korean Native Cattle I. The Factors Influencing In Vivo Embryo Production by Condition of Superovulation Treatment (한우에서 FSH-P와 SUPER-OV에 의한 체내 수정란 생산에 관한 연구 I. 다배란 처리 조건에 따른 체내 수정란 생산에 영향을 미치는 요인)

  • 김흥률;김덕임;원유석;김창근;정영채;서길웅
    • Journal of Embryo Transfer
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    • v.12 no.1
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    • pp.37-48
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    • 1997
  • I. The Factors Influencing In Vivo Embryo Production by Condition of Superovulation Treatment These studies were carried out to establish an effective and practical system for comrnercialization of embryo production techniques by analyzing several factors influencing in vivo embryo production on superovulation treatment in Korean native cattle. In vivo embryos were flushed 226 times from 128 donors.The results obtained from the studies on the factors influencing in vivo embryo production by superovulation treatment were as follows : FSH-P had a significiant advantage(83.0%) over SUPER-OV in the percentage of fertilized embryos(P<0.01). No difference was found loetween FSH-P and SUPER-OV in the percentage of transferable and freezable embryos.2. The response of superovulation by SUPER-OV was greater than that of FSH-P The donors having 8~9 and more than 10 of corpora lutea(CL) derived by FSH-P were 40.0%(most frequent) and 33%, respectively. The donors having more than 12 and 10 CL derived by SUPER -OV were 33.3% (most frequent) and 56.6%, respectively.3. Embryo production after treatment of repeated superovulation was remarkablely decreased at 3rd time by FSH-P but did not differ among 1, 2 and 3rd times by SUPER-OV. Embryo production on intervals of repeated superovulation was significantly different for the number and percentage of fertilized, transferable and free-zable' embryos in FSH-P (P<0.01) and rernarkablely decreased in repeated superovulation of 81~120 interval days. The SUPER-OV showed no differences in interval days of repeated superovulation and was found better than FSH-P in the response of repeated superovulation. (Key words : in Vivo embryo, superovulation, FSH -P, SUPER-OV)

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Studies on In Vivo Embryo Production by FSH-P and SUPER-OV in Korean Native Cattle III. The Factors Influencing In Vivo Embryo Production on Days and Seasons of Flushing (한우에서FSH-P와SUPER-OV에 의한 체내 수정란 생산에 관한 연구 II.계절 및 채란일에 따른 체내 수정란 생산에 영향을 미치는 요인)

  • 김흥률;김덕임;박철진;김창근;정영채;이종완
    • Journal of Embryo Transfer
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    • v.12 no.1
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    • pp.57-66
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    • 1997
  • This study was carried out to establish an effective and practical system for commercialization of embryo production techniques by analyzing several factors influencing in vivo embryo production on days and seasons of flushing in Korean native cattle. In vivo embryos were flushed 226 times from 128 donors. The results obtained for the factors influencing in vivo embryo production on days and seasons of flushing were as follows :1.The percentages of fertilized, transferable and freezable embryos by seasons were significantly different in both FSR-P and SUPER-OV(P<0.01). The percentages of them were highest in sunrrner with FS H-P and highest in autumn with SUPER -OV.2. The production of transferable and freezable embryos by flushing days was highest in 8 days with FSH-P, and there was no difference between 7 and 8 days for SUP ER-OV. 3. The failure rates of recovery were 17.0% in SUPER-OV and 21.2% in FSH-P, respectively. The donors superovulated but failed recovery were 8.5% in SUPER-OV and 12.9% in FSH-P, respectively. Nonsuperovulated donors was 8.4% and donors giving less than 2 eggs at recovery was 8.4% in both FSH -P and SUPER-OV 4. The donors returned to normal estrus after superovulation were 34.1% after 1 cycle,39.4% after 2 cycles, and 16.7% after 3 cycles by FSH-P, respectively. For SUPER-OV, they were 55.3, 33.0 and 9.6%, respectively. Generally, normal estrus after the treatment of superovulation was earlier and the occurrence of ovarian cyst was also lower in SUP ER-OV than in FSH-P.5.The percentages of blastocyst in embryos flushed at 7~8 days after estrus were 21. 9% and 54.3% in FSH -P and SUPER-OV, respectively. The development of embryos was faster in SUPER-OV than in FSH-P.(Key words : in vivo embryo, flushing days, superovulation, FSH-P, SUPER-OV)

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Gonadotropins Improve Porcine Oocyte Maturation and Embryo Development through Regulation of Maternal Gene Expression

  • Wang, Qing-Ling;Zhao, Ming-Hui;Jin, Yong-Xun;Kim, Nam-Hyung;Cui, Xiang-Shun
    • Journal of Embryo Transfer
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    • v.28 no.4
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    • pp.361-371
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    • 2013
  • The present study assessed the effect of FSH and LH on oocyte meiotic, cytoplasmic maturation and on the expression level and polyadenylation status of several maternal genes. Cumulus-oocyte complexes were cultured in the presence of FSH, LH, or the combination of FSH and LH. Significant cumulus expansion and nuclear maturation was observed upon exposure to FSH alone and to the combination of FSH and LH. The combination of FSH and LH during entire IVM increased the mRNA level of four maternal genes, C-mos, Cyclin B1, Gdf9 and Bmp15, at 28 h. Supplemented with FSH or LH significantly enhanced the polyadenylation of Gdf9 and Bmp15; and altered the expression level of Gdf9 and Bmp15. Following parthenogenesis, the exposure of oocytes to combination of FSH and LH during IVM significantly increased cleavage rate, blastocyst formation rate and total cell number, and decreased apoptosis. In addition, FSH and LH down-regulated the autophagy gene Atg6 and upregulated the apoptosis gene Bcl-xL at the mRNA level in blastocysts. These data suggest that the FSH and LH enhance meiotic and cytoplasmic maturation, possibly through the regulation of maternal gene expression and polyadenylation. Overall, we show here that FSH and LH inhibit apoptosis and autophagy and improve parthenogenetic embryo competence and development.

The Ratio of Testosteron and Follicle Stimulating Hormone in the Amniotic Fluid (양수내(羊水內)의 Testosteron대(對) Follicle Stimulating Hormone 비율(比率)에 관(關)한 연구(硏究))

  • Cho, Suk-Shin
    • The Korean Journal of Nuclear Medicine
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    • v.16 no.2
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    • pp.37-47
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    • 1982
  • To evaluate fetal sex-hormonal status before delivery, testosterone and follicle stimulating normone(FSH) levels were measured in 64 amniotic fluid samples at midgestation by radioimmunoassay method. The mean concentration of testosterone in amniotic fluid of 37 cases carrying male fetus was 90.7 pg/ml and 27 cases carrying female fetus was 62.3 pg/ml. The mean :amniotic fluid FSH concentration of male fetus was 1.15 mIU/ml and of female fetus was 11.98 mIU/ml. The amniotic fluid testoserone and FSH concentrations had statistical difference between male and female fetuses. The ratio of testosterone over FSH in the amniotic fluid was 231.2 in male, 9.8 in female respectively and very significant difference was noticed. The levels of testosterone/FSH greater than 25 were found over 92% of male fetus and lesser than 25 were found over 92% female fetus. Measurement of testosterone and FSH especially testosterone/FSH ratio in amniotic fluid in midgestation may be an adjunct to other method of fetal sex determination.

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Optimization of In Vivo Embryo Production and Pregnancy following Embryo Transfer in Hanwoo Cattle

  • Jeon, Soon-Hong;Jung, Kyoung Sub;Choi, Jae-Won;Heo, Young-Tae;Xu, Yong-Nan;Kim, Nam-Hyung
    • Journal of Embryo Transfer
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    • v.28 no.4
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    • pp.307-314
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    • 2013
  • Embryos formed in vivo were collected from 171 donors housed in Chung Cheong Buk-Do Institute of Livestock and Veterinary Research of the Chungbuk community during the years 2009~2012. We evaluated annual embryo collection, effect of follicle stimulating hormone (FSH), controlled internal drug release (CIDR) and prostaglandin (PG) administration to the donor for superovulation and controlling the estrus cycle, seasonal effects of embryo collection and compared the number of embryos recovered as per the collection days and pregnancy rate. In all, 1,243 embryos were collected from 118 donors with an average of $7.31{\pm}5.35$ embryos per donor, out of which 69.4% were transferable. Dosages of FSH required for inducing superovulation in various donors were compared. Average number of embryos collected from donors administered with 30 AU of FSH ($7.13{\pm}5.74$ per donor) was not significantly different from that of donors who were given an injection of 24 AU of FSH ($7.53{\pm}4.91$ per donor). However, the percentage of transferable embryos in the 30AU FSH-administered group (63.2 %, 449 of 711) was higher than that in the 24AU FSH-administered group (77.8%, 414 of 532). In the group of donors under a natural estrus cycle, the FSH dose administered did not influence the number of transferable embryos produced ($7.49{\pm}6.25$ per donor for 30 AU of FSH vs $7.49{\pm}4.92$ per donor for 24 AU of FSH). However, in donors administered with CIDR and PG for controlling the estrus cycle, the FSH dose affected the average number of transferable embryos collected ($4.25{\pm}2.87$ per donor for 30 AU of FSH vs $8.50{\pm}6.36$ per donor for 24 AU of FSH). We collected embryos from donors 6, 7 or 8 days after artificial insemination (AI). Results showed that the percentage of transferable embryos among those collected 8 days after AI was significantly higher than that among embryos collected 6 or 7 days after AI. Seasonal variations did not affect number of recovered embryos and pregnancy rates in natural estrus cycle and CIDR treatment groups (48.28% and 42.55%) but higher than pregnancy rate of frozen embryos (19.63%). These results indicated that administration of FSH beyond a threshold dose (at least 24 AU) has no beneficial effect on the production embryos and that collection of embryos 7~8 days after AI is optimal for embryo recovery. CIDR treatment induced superovulation in short term and had no influence on the natural estrus cycle. Finally, although good-quality embryos were transferred, freezing significantly reduced the pregnancy rates after transfer.

Follicular Degeneration After Treatment of Follicle Stimulating Hormone in Prepubertal Mouse Ovary (미성숙 생쥐에서 난포성숙호르몬 처리에 의한 난포의 퇴화)

  • 이창주;고경수;김지향;김진규;윤용달
    • Development and Reproduction
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    • v.4 no.1
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    • pp.13-17
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    • 2000
  • Follicle stimulating hormone (FSH) stimulates follicle growth, and inhibits the follicle atresia in the immature rodent ovaries. The present study was carried out to know the histological changes of ovarian follicles after FSH treatment in the prepubertal mice. Ten i.u. of recombinant FSH was i.p. injected on 3 weeks old mice. After the treatment, at 1, 2 and 3 days, left ovaries were collected for the histological study. The atretic ratio of preantral follicles increased with time after FSH treatment. However, in the case of antral follicles, there was no significant change in the ratio. The degenerating follicles contained apoptotic granulosa cells, macrophage, and polymorphonuclear leukocytes in the follicular cavity. The present results suggest that follicular degeneration caused by FSH hyperstimulation could be mediated by apoptosis as well as the acute inflammation.

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