• Title/Summary/Keyword: ovulation inducing effect

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Development of Luteinizing Hormone Releasing Hormone (LHRH) Delivery Systems for Vaginal Mucosal Route

  • Han, Kun;Park, Jeong-Sook;Youn, Bok-Chung;Nam, Joo-Jeong;Park, Hee-Beom;Joseph-R. Robinson
    • Archives of Pharmacal Research
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    • v.18 no.5
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    • pp.325-331
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    • 1995
  • The objective of this study was to find a rational dosage form for vaginal mucosal delivery of LHRH. Vaginal absorption of LHRH was estimated by measuring its ovulation inducting effect in rat and in vitro vaginal membrane permeation study in rabbit. THe effects of different hydrogel bases, such as Polycarbophil and Pemulen compared with solutions on vaginal membrane permeation of LHRH were investigated. Sodium laurate, disodium ethylenediamine brane permeaiton of LHRH were investigated. Sodium ethylenediamine tetraacetate (EDTA) and sodium tauro-24, 25-dihydrofusidate (STDHF), which are effective peptidase inhibitors were chosen as additives to a LHRH hydrogel delivery system and LHRH solutions. A Polycarbophil compared with a solution formulation 3.4 times increase in LHRH vaginal membrane permeability compared with a solution formulation. Vaginal membrane permeability from the Polycarbophil was greater than that from Pemulen hydrogels. This may be due to the larger bioadhesive values. LHRH solution with EDTA(2%), STDHF(1%) and sodlaurate(0.5%) showed 4.1 times, 4.8 times and 6.0 times of ovulation inducing activity compared with control. These results suggest that enzyme inhibition effect of EDTA, STDHF and sod, laurate may be result in substantial enhancement of vaginal absorption. By administraiton of Polycarbophil hydrogels containing LHRH the ovulation inducing activity was 3.3 times greater than the solutions. This result indicates the bioadhesive hydrogels as well as peptidase in hibition significantly improved absorption of LHRH. By coadministration with these inhibitors the ovulation inducing activity of Polycarbophi hydrogel containing LHRH was comparable with subcutaneous administration in ovulation inducing activity.

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Transmucosal Delivery of Luteinizing Hormone Releasing Hormone(LHRH): Evaluation of Membrane Permeability Enhancement of $[D-Ala^6]$ LHRH in Rabbit Mucosa and Ovulation Inducing Effect in Vaginal Administration of Rat by the Addition of Several Absorption Enhancers (황체호르몬 유리호르몬의 경점막 수송: 수종의 흡수촉진제를 사용한 $[D-Ala^6]$ LHRH의 점막투과촉진 및 흰쥐에 있어서의 배란유도효과 향상)

  • Han, Kun;Jeong, Nam-Joo;Park, Jeong-Sook;Park, Hee-Beom;Chung, Youn-Bok;Moon, Dong-Cheul
    • YAKHAK HOEJI
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    • v.38 no.4
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    • pp.440-450
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    • 1994
  • Due to the limited bioavailability of $[D-Ala^6]$LHRH from nonparenteral transmucosal sites of administration, enhancement of mucosal permeability by coadministration of several protease inhibitors and/or penetration enhancers were studied in rabbit mucosa. As a reliable bioassay method for $[D-Ala^6]$LHRH, ovulation-inducing effect were measured after vaginal administration in the rat. The permeation of $[D-Ala^6]$LHRH through the mucosal membrane of rabbit mounted on George-Grass diffusion cells were examined in the presence of polyoxyethylene 9-lauryl ether (POE), ${\beta}$-cyclodextrin$({\beta}-CyD)$ or ethylene diamine tetra acetate disodium salt(EDTA). The vaginal membrane showed higher permeability of $[D-Ala^6]$LHRH than the rectal and nasal membrane. POE and ${\beta}-CyD$ showed a small promoting effect on the membrane permeation of $[D-Ala^6]$LHRH, but EDTA showed significant enhancement. Ovaluation was enhanced by the coadministration of sodium laurate(0.5%), a protease inhibitor but was not enhanced by EDTA, a penetration enhancer. On the other hands, coadministration of sodium tauro 24,25 dihydrofusidate(1%) and EDTA(2%) enhanced the ovulation inducing-effect 2.8 times. These results suggest that the vaginal administration of $[D-Ala^6]$LHRH with STDHF or sodium laurate as a protease inhibitor, and EDTA as a penetration enhancer, may become an elective method for transmucosal delivery of $[D-Ala^6]$ LHRH.

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Prostaglandin Affects In Vitro Ovulation and 17α, 20β-Dihydroxy-4-pregnen-3-one Production in Longchin Goby, Chasmichthys dolichognathus Oocytes

  • Baek, Hea Ja;Lee, Da Som
    • Development and Reproduction
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    • v.23 no.2
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    • pp.111-117
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    • 2019
  • This study focused on the association of prostaglandins and a progestin, $17{\alpha}$, $20{\beta}P$-dihydroxy-4-pregnen-3-one ($17{\alpha}20{\beta}P$) during the ovulation process in longchin goby, Chasmichthys dolichognathus. We performed several in vitro experiments using $850-920{\mu}m$ diameter oocytes which were at the migratory nucleus stage. With the $890-920{\mu}m$ diameter oocytes, no significant difference in ovulation was observed in any of the prostaglandins (PGE1, PGE2, and $PGF2{\alpha}$) treated groups although PGE2 and $PGF2{\alpha}$ at concentrations of 50 ng/mL increased ovulation slightly compared with controls; however, $17{\alpha}20{\beta}P$ production was stimulated with PGE1 alone at low concentrations (5 ng/mL). In $850{\mu}m$ diameter oocytes, $PGF2{\alpha}$ at concentrations of 50 and 500 ng/mL resulted in a significant increase in ovulation. $17{\alpha}20{\beta}P$ (50 ng/mL) alone had no observable effect on ovulation, but in the combined of $PGF2{\alpha}$ 50 or 500 ng/mL it caused the greatest effect on ovulation. The sensitivity of oocytes to the induction of ovulation varies between 850 and $890-920{\mu}m$, it appeared to vary depending on the migration status of nucleus. These results suggest that $PGF2{\alpha}$ (or combined of $17{\alpha}20{\beta}P$) was more potent in inducing ovulation of the longchin goby.

Effect of Recombinant Human FSH on Ovulation, Pregnancy and In Vitro Fertilization in Androgen-Sterilized Mice

  • Koh, Sang-Bum;Seo, Kwang-Suk;Kim, Seung-Chul;Ahn, Byoung-Ok;Kim, Won-Bae;Lee, Sung-Hee
    • Archives of Pharmacal Research
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    • v.25 no.3
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    • pp.357-363
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    • 2002
  • The effect of a new rhFSH, PG-0801, on oocyte quality, ovulation and in vitro fertilization (IVF) was examined in androgen-sterilized mice. Experimental sterility was induced by a single subcutaneous injection of testosterone propionate (TP, 1 mg/head) into 5 day old female mice. Ovulation was generated in the 10 to 13-week old TP-injected mice by a subcutaneous rhFSH injection (1, 5 or 10 IU/head) followed 48 hours later by a second rhFSH injection (1, 5 or 10 IU/head). For comparison, a subcutaneous PMSG (5 IU/head) injection was used for folliculogenesis and a hCG (5 IU/head) injection was used for ovulation. These were administered using the same protocol. The eggs were harvested from the oviducts and counted 17 to 20 hours after the second injection. IVF was performed by adding sperms ($2{\times}10^{5}/ml{\;}to{\;}2{\times}10^{6}/ml$) to determine the functional activity of the eggs, and the fertilization rate was measured. In addition, the pregnancy rate and fetal development were examined after 15-17 days of gestation. The number of oocytes recovered from the rhFSH/rhFSH group increased dose-dependently and was slightly higher than that of the PMSG/hCG group. The pregnancy rates of the group receiving 1, 5, and 10 IU of rhFSH/rhFSH were 50%, 66.7%, and 75%, respectively, which were significantly higher than that of the control (untreated) group (0%). The numbers of viable fetuses in the 1, 5, and 10 IU/head of the rhFSH/rhFSH group ($8.0{\pm}1.50$, $8.9{\pm}1.02$, and $8.9{\pm}1.12$ fetuses/dam, respectively) were comparable to that of the 5 IU/head PMSG/hCG group ($9.4{\pm}0.94$). The mice receiving rhFSH/rhFSH and PMSG/hCG showed similar fertilization rates (around 65%) via the IVF procedure. These results demonstrate that a new rhFSH, PG-0801, may be useful for inducing ovulation in functionally infertile patients and for superovulation in ovulatory patients participating in assisted reproductive technology (ART) programs.

Effects of Aromatase Inhibitor on Reproductive Hormone Profiles and Ovulation Induction (방향화효소억제제의 생식호르몬 분비와 배란유도에 대한 효과)

  • Kim, Sook-Hyun;Kim, Jeong-Ah;Park, Joon-Cheol;Bae, Jin-Gon;Shin, So-Jin;Kwon, Sang-Hoon;Cho, Chi-Heum;Yoon, Sung-Do;Cha, Soon-Do;Kim, Jong-In;Rhee, Jeong-Ho
    • Clinical and Experimental Reproductive Medicine
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    • v.35 no.2
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    • pp.143-153
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    • 2008
  • Objective: To investigate the effects of aromatase inhibitor on reproductive hormone profiles and evaluate it's ovulation inducing capability in anovulatory infertile women. Methods: We quantified the blood levels of reproductive hormones from 30 healthy normal cycling women in natural cycle (control) and letrozole medicated cycle (study). LH, FSH, estradiol, testosterone, DHEA-S were quantified on third, 11th, 21th day in both cycles, and on 21th day, progesterone was added. Sixth anovulatory infertile women received either letrozole or clomiphene citrate for ovulation induction (n=30 in each groups). We compared the clinical parameters such as ovulation rate, pregnancy rate, the day of LH surge, number of follicles and endometrial thickness, cervical mucus amount, spinnbarkeit, mean diameter of follicles on the day of LH surge. Results: Letrozole had no effect on the LH, FSH, estradiol, DHEA-S secretion but there were significant increase in testosterone level on day 11 and progesterone level on day 21 in letrozole medicated cycle compared than control cycle ($0.40{\pm}0.16$ vs $0.28{\pm}0.11\;ng/ml$, p=0.002, $18.18{\pm}13.07$ vs $8.38{\pm}7.64\;ng/ml$, p=0.001, respectively). In comparison between letrozole and clomiphene groups, there were no significant difference in ovulation rate, pregnancy rate, number of mature follicle, mean diameter of follicles, but showed earlier LH surge, thicker endometrium, more cervical mucus, and higher spinnbarkeit in letrozole group ($12.12{\pm}2.46$ vs $14.52{\pm}3.18$ days, p=0.006, $10.48{\pm}1.23$ vs $8.52{\pm}0.93\;mm$, p=0.000, $2.04{\pm}0.61$ vs $1.57{\pm}0.59$, p=0.012, $6.00{\pm}1.12$ vs $4.95{\pm}1.61\;cm$, p=0.003, respectively). Conclusion: Letrozole may augment folliculogenesis and improve the endometrial condition for implantation in normal cycling women. Ovulation efficacy of letrozole in anovulatory women was comparable to clomiphene citrate and letrozole may be more physiological in ovulation induction.

Transvaginal Delivery of Luteinizing Hormone-Releasing Hormone Using Bioadhesive Hydrogel (생체막점착성 하이드로겔을 이용한 황체형성호르몬 유리호르몬의 질점막 수송)

  • Han, Kun;Park, Hee-Beom;Park, Jeong-Sook;Chung, Youn-Bok
    • Journal of Pharmaceutical Investigation
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    • v.27 no.1
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    • pp.15-22
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    • 1997
  • The mucosal route of administration(nasal, buccal, conjunctival and vaginal) has recently been considered as an alternative to parenteral delivery for many peptide drugs because enzymatic degradation of these agents may be partly avoided. The objective of these study was to establish the optimal mucosal administration dosage form of $LHRH/[D-Ala^6]LHRH$, based on presystemic metabolism. We reported previously the peptidase inhibition effect of medium chain fatty acid salts(sodium caprylate, soadium caprate and sodium laurate), EDTA and STDHF on the proteolysis of $LHRH/[D-Ala^6]LHRH$ in rabbit mucosal homgenates. We also reported that EDTA, STDHF and sodium laurate markedly increased the potency of $LHRH/[D-Ala^6]LHRH$ solution applied vaginally. In the present study, by administration of polycarbophil hydrogel containing LHRH the ovulation inducing activity was 3.3 times greater than solution. These results indicate not only peptidase inhibitor but also polycarbophil hydrogel significantly improved the absorption of this drug. The results of this study would provide the feasibility as a rational dosage form for improving bioavailability and self administration of this hydrogel by the vaginal application.

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In vitro Effects of Hormaonal Teatment on Induced Maturation and Ovulation in the Sea bass, Lateolabrax japonicus (호르몬 처리 (in vitro 실험)에 의한 농어, Lateolabrax japonicus의 난성숙과 배란유도)

  • 백혜자;김형배;안철민;명정인
    • Journal of Aquaculture
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    • v.11 no.1
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    • pp.119-124
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    • 1998
  • The relative effectiveness of C21-steroids and human chorionic gonadotropin(HCG) on maturation and ovulatin was investigated in vitro using the isolated oocytes or ovarian fragments from the sea bass, Lateolabrax japonicus. ${\alpha}$-hydroxy, 20${\beta}$-dihydroprogesterone(17${\alpha}$20${\beta}$OHP : 5, 50, 500, 1000ng/ml), 17${\alpha}$-hydroxy, 20${\alpha}$-dihydroprogesterone(17${\alpha}$20${\alpha}$OHP : 5, 50, 500, 1000ng/ml) and HCG (5, 50, 500IU/ml) were effective in inducing oocyte maturation, GVM (germinal vesicle migration) or GVBD(germinal vesicle breakdown), compared to control except 17${\alpha}$20${\beta}$OHP and 17${\alpha}$20${\alpha}$OHP at 5ng/ml. 17${\alpha}$20${\beta}$OHP showed the greatest effect on oocyte maturation at 50ng/ml. A combination of 17${\alpha}$20${\beta}$OHP(50ng/ml) and HCG(500IU/ml) led to a significant increase (p<0.05) in GVBD when compared with 17${\alpha}$20${\beta}$OHP or HCG alone. These findings suggest that the two in combination acts synergistically to induce GVBD. 17${\alpha}$20${\beta}$OHP (1~1000ng/ml) and HCG(1~500IU/ml) also induced ovulation in ovarian fragments at all concentrations used ; more effective at lower concentrations(1~50ng/ml or IU/ml). It was shown that HCG was more potent in inducting ovulatin than 17${\alpha}$20${\beta}$OHP.

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Factors affecting on the Motility of Semen and the Pregnancy Rate of Artificial Insemination in Equine (말의 정액 형태에 따른 운동성과 인공수정 임신율에 영향을 미치는 요인)

  • Park, Yong-Soo;Cho, Gil-Jae
    • Journal of Embryo Transfer
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    • v.26 no.1
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    • pp.13-17
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    • 2011
  • Research in the area of equine artificial insemination (AI) has led to its increased application in field trials. However, procedures for equine semen collection, cooling and freezing of semen and artificial insemination need further improvement. In experiment 1, we investigated the percentage of total motility (TM) and progressive motility (PM) of sperms at after-collection, cooled-diluted, cooled-transported or frozen-thawed semen. In experiment 2, mares were inseminated with either cooled-diluted, cooled-transported or frozen-thawed semen. In experiment 3, we examined the effect of buffer (skim-milk extender), which was infused into the uterus at the time of AI with frozen-thawed semen. In experiment 4, we compared AI pregnancy rates for mares ovulating spontaneously versus after treatment with hCG. In experiment 1, the average percentage of TM was decreased from 75.3% to 14.4% at the stage of after-collection to frozen-thawed semen (p<0.05). The average percentage of PM was 58.2% and 59.6% at after-collection and cooled-diluted, but it was significantly increased 71.7% after frozen-thawed (p<0.05). In experiment 2, the pregnancy rates after AI using cooled-diluted, cooled-transported and frozen-thawed semen were 60%, 50% and 37.5%, respectively, and similar among treatments. In experiment 3, the pregnancy rate of mares infused with buffer at AI was 40% which was higher than that with no buffer (10%). In experiment 4, the pregnancy rates of mares were similar between ovulated spontaneously (25%) and ovulated with hCG (50%). The results suggest that equine semen that has been cooled-diluted, cooled-transported or frozen can be successfully used to establish AI, pregnancy and foal production. Also, the pregnancy rates after AI can be increased by infusing buffer into the uterus at AI or by inducing ovulation with hCG, but further study is need.

Changes in Plasma Levels of Inhibin and Follicle Stimulating Hormone in Buffaloes Superovulated with eCG

  • Singh, Baljit;Dixit, V.D.;Dixit, V.P.;Singh, P.;Georgie, G.C.;Lohan, I.S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.13 no.9
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    • pp.1205-1209
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    • 2000
  • The present study was undertaken to investigate the effect of stimulation of follicular development with eCG on the peripheral levels of inhibin and FSH in Murrah buffaloes. Estrus was synchronized in five normally cycling females by insertion of Crestar (Intervet, Boxmeer, Holland) implants for nine days. Estradiol valerate was administered i.m. on the day of implant insertion. On the 10th day of the induced estrous cycle a single dose of 3000 IU eCG (Folligon, Intervet, Boxmeer, Holland) was given, followed by treatment with 25 mg of $PGF_2$ alpha (Lutalyse, Upjohn, Belgium) 48 h later. Blood samples were obtained during the induced estrus, on cycle day 10 (luteal phase), at the superovulatory estrus (43 h after PGF) and during the periovulatory period (64 h after PGF). Ultrasonography was done daily to monitor follicular development. Plasma concentrations of inhibin and FSH were determined by specific radioimmunoassays. Differences between $mean{\pm}SEM$ values of different phases of the cycle were compared by ANOVA. The mean number of small (2-5 mm), medium (6-9 mm) and large (>10 mm) follicles observed two days after eCG treatment and on the day of superovulatory estrus was $2.8{\pm}0.31$, $5.2{\pm}0.30$ and $1.4{\pm}0.09$ and $1.9{\pm}0.21$, $2.8{\pm}0.40$ and $5.0{\pm}0.83$, respectively. The mean number of ovulations was $3.6{\pm}0.37$ and the mean number of unovulated follicles was $6.1{\pm}0.47$. Most of the follicles >10 mm in diameter had ovulated (72%). The mean ${\pm}SEM $ of plasma inhibin concentration $(2584.15{\pm}17.92pg/ml)$ during the superovulatory estrus was significantly higher $(p{\leq}0.05)$ than during the induced estrus $(749.87{\pm}17.29pg/ml)$, the luteal phase $(1099.54{\pm}24.98pg/ml)$ and periovulatory period $(1682.71{\pm}29.88pg/ml)$, respectively. $Mean{\pm}SEM$ plasma FSH concentration during the induced estrus $(10.35{\pm}0.41ng/ml)$ was not different from that during the superovulatory estrus $(8.52{\pm}0.39ng/ml)$, but was significantly higher $(p{\leq}0.05)$ than during the luteal phase $(2.81{\pm}0.42ng/ml)$ and periovulatory period $(5.7{\pm}0.28ng/ml)$. These data indicate that treatment with eCG in buffaloes for inducing superovulation results in a significant elevation in plasma inhibin levels and a decrease in plasma FSH levels during the superovulatory estrus. Thus, we suggest that the elevated plasma inhibin coming from fully developed follicles continued for a long time which results in inhibition of FSH leading to poor ovulation in the remaining follicles, which may be the cause of suboptimal superovulatory response.