• Title/Summary/Keyword: reproductive hormones

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Immobilization stress increased cytochrome P450 1A2 (CYP1A2) expression in the ovary of rat

  • Hwang, Jong-Chan;Kim, Hwan-Deuk;Park, Byung-Joon;Jeon, Ryoung-Hoon;Baek, Su-Min;Lee, Seoung-Woo;Jang, Min;Bae, Seul-Gi;Yun, Sung-Ho;Park, Jin-Kyu;Kwon, Young-Sam;Kim, Seung-Joon;Lee, Won-Jae
    • Journal of Animal Reproduction and Biotechnology
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    • v.36 no.1
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    • pp.9-16
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    • 2021
  • Under the stressed condition, a complex feedback mechanism for stress is activated to maintain homeostasis of the body and secretes several stress hormones. But these stress hormones impair synthesis and secretion of the reproductive hormones, followed by suppression of ovarian function. Cytochrome P450 1A2 (CYP1A2) plays a major role in metabolizing exogenous substances and endogenous hormones, and its expression is recently identified at not only the liver but also several organs with respect to the pancreas, lung and ovary. Although the expression of CYP1A2 can be also affected by several factors, understanding for the changed pattern of the ovarian CYP1A2 expression upon stress induction is still limited. Therefore, CYP1A2 expression in the ovaries from immobilization stress-induced rats were assessed in the present study. The stress-induced rats in the present study exhibited the physiological changes in terms of increased stress hormone level and decreased body weight gains. Under immunohistological observation, the ovarian CYP1A2 expression in both control and the stressed ovary was localized in the antral to pre-ovulatory follicles. However, its expression level was significantly (p < 0.01) higher in the stress-induced group than control group. In addition, stress-induced group presented more abundant CYP1A2-positive follicles (%) than control group. Since expression of the ovarian CYP1A2 was highly related with follicle atresia, increased expression of CYP1A2 in the stressed ovary might be associated with changes of the ovarian follicular dynamics due to stress induction. We hope that these findings have important implications in the fields of the reproductive biology.

유기주석화합물 (Tributyltin)이 미성숙 생쥐의 웅성 생식기관들에 미치는 영향에 대한 연구

  • Lee Kyeong Jin;Lee Jong Bin
    • Proceedings of the Korea Society of Environmental Biology Conference
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    • 2002.11a
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    • pp.33-37
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    • 2002
  • The present was performed to identify the effects of tributyltin (TBT) in the immature mice testes. 3-week-old male ICR mice were orally administrated on one time basis of TBT dose of O (Vehicle control, VC), 25 (TBT 25 mg/kg, T$_{25}$ ), 50 (TBT 50 mg/kg, T$_{50}$ ), 100 (TBT 100 mg/kg, T$_{100}$ ) mg/kg per each one. After 3 days the time treated of TBT, mice were sacrified and wighted body, testis, epididymis, seminal vesicle, vas deferens, and prostate. As the result of weighing, wights of each oragan and gonad index were tendency decresed in comparing groups of TBT treated with that (C) of unteated (p <0.05). As the result of examination of steroid hormones in the immature male mice, The concentrations of serum and intratesticular testosterone were significatly increased rather than the control group. But concentrations of estradiol were decresed objectly. A group of the highest change of concentrations of steroid hormones is T$_{100}$ . The high dose group, T$_{100}$ , was decreased all of concentrations of steroid hormones rather than those of T$^{25}$ . The result of observation with histological changes in testis showed a tendency for innercellular wall to increase damage and extinction in seminiferous tubles. As the result of investigation apoptotic cell numbers in the testis using teminal deoxy-nucleotidyl transferase -mediated dUTP-digoxygenin nick end-labeling immunohistochemical straia, The ratio of Apoptic cells significantly was incensed in depending on treatment of TBT does. In conclusion, these results shows that TBT triggers apoptosis on reproductive cell in testis and changes level of concentrations of steroid hormones in the immature male mice , as endocrine disruptors (EDs).

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Induction of Apoptosis in Chinese Hamster Lung Cells by NOCF via Caspase-dependent Bax expression and Cytochorme c release.

  • Lee, Bang-Wool;Oh, Seon-Hee;Lee, Byung-Hoon
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.96.2-97
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    • 2003
  • Carbofuran(CF) is one the most widely used carbamate pesticides in the world applied for insect and nematode control. Due to its widespred use in agriculture and households, contamination of food, water, and air has become serious, and consequently adverse health effects are inevitable in humans, animals, wildlife and fish, it has reported that CF alone or in combination with other carbamate insecticides influences the level of reproductive and metabolic hormones such as thyroxine and corticosterone, and results in impairment of endocrine. (omitted)

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Clinical Effectiveness of Korea Ginseng on Climacteric Disturbances and Its Possible Mechanism of Action

  • Ogita, Sacchio
    • Proceedings of the Ginseng society Conference
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    • 1990.06a
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    • pp.20-24
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    • 1990
  • The climacteric is that phase in the aging process during which a woman passes from the reproductive to the non-reproductive stage. The signals, such as hot flashes, vaso-motoric disturbances, perspiration, stiff shoulders, emotional symptoms, are refereed to as climacteric disturbances. Treatment of climacteric symptoms centers on estrogen replacement and transquilizers, but there are many problems to be solved to use these hormones/drugs as far as dosage, duration and complications are concerned. The care of women during the climacteric years should provide relief of distressing symptoms with as high a degree of safety as possible. From this viewpoint, we used red ginseng powder to those patients with high menopausal index successfully. We studied its mechanism of action and proved that red ginseng improved the micro-circulation system via improvement of erythrocyte deferability which enhanced sex steroidgenesis consequently

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Endocrine Aspects of Oestrous Cycle in Buffaloes (Bubalus bubalis): An Overview

  • Mondal, S.;Prakash, B.S.;Palta, P.
    • Asian-Australasian Journal of Animal Sciences
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    • v.20 no.1
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    • pp.124-131
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    • 2007
  • There is worldwide interest in buffalo as an animal for meeting the growing demands of meat, milk and work in the developing countries. One of the major constraints to full exploitation of the productive potential of buffalo has been its inherently low reproductive efficiency as reflected by late maturity, poor expression of oestrus, silent oestrus, irregular oestrous cyclicity, seasonality in breeding, anoestrus, low conception rate, long postpartum interval, repeat breeding etc. Ovarian cyclicity is regulated by endocrine and neuroendocrine mechanisms namely hypothalamic hormones, gonadotropins and ovarian steroids. Detailed endocrine investigations are suggested with special reference to the hypothalamo-hypophysial-ovarian axis to gain a better understanding of reproduction in buffalo and to modify it to derive the maximum benefit from this animal.

Prostaglandins and Female Reproductive System (Prostaglandins와 여성생식기(女性生殖器) 계통(系統))

  • Hong, Ki-Whan;Kim, Hae-Sung
    • The Korean Journal of Pharmacology
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    • v.11 no.1 s.17
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    • pp.61-79
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    • 1975
  • The recent knowledge about the effects and the biological roles of prostaglandins(PGs) in the female reproductive system were reviewed on the following view points in detail and the authors also argued on the efficacy and reliability for the induction of labour and therapeutic abortions in midtrimester pregnancy. 1. The actions of PGs on the myometrium in vivo and in vitro and the effects of ovarian hormones on the actions of PGs. 2. The actions of PGs on the fallopian tube. 3. The role of PGs in the initiation of menstrual bleeding and dysmenorrhea. 4. The biological action of PGs on the mechanism of labour and parturition. 5. The efficacy and reliability of PGs for therapeutic abortion in the first and midtrimester pregnancy. 6. The biological role of PGs in the activity and life-span of corpus luteum.

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Autophagy in the uterine vessel microenvironment: Balancing vasoactive factors

  • Lim, Hyunjung Jade
    • Clinical and Experimental Reproductive Medicine
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    • v.47 no.4
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    • pp.263-268
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    • 2020
  • Autophagy, which has the literal meaning of self-eating, is a cellular catabolic process executed by arrays of conserved proteins in eukaryotes. Autophagy is dynamically ongoing at a basal level, presumably in all cells, and often carries out distinct functions depending on the cell type. Therefore, although a set of common genes and proteins is involved in this process, the outcome of autophagic activation or deficit requires scrutiny regarding how it affects cells in a specific pathophysiological context. The uterus is a complex organ that carries out multiple tasks under the influence of cyclic changes of ovarian steroid hormones. Several major populations of cells are present in the uterus, and the interactions among them drive complex physiological tasks. Mouse models with autophagic deficits in the uterus are very limited, but provide an initial glimpse at how autophagy plays a distinct role in different uterine tissues. Herein, we review recent research findings on the role of autophagy in the uterine mesenchyme in mouse models.

Cichorium intybus L. extract ameliorates testicular oxidative stress induced by lead acetate in male rats

  • Dorostghoal, Mehran;Seyyednejad, Seyyed Mansour;Nejad, Marzieh Noroozi Tabrizi
    • Clinical and Experimental Reproductive Medicine
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    • v.47 no.3
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    • pp.161-167
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    • 2020
  • Objective: Oxidative stress has been suggested as a possible mechanism for the adverse effects of heavy metal toxicity on male reproduction. Cichorium intybus L. is used in Iranian folk medicine as a hepatoprotective agent as well as for its supposed fertility-enhancing properties. The present study was performed to investigate whether the ethanolic extract of C. intybus leaves could protect male rats against lead-induced testicular oxidative stress. Methods: In this experimental study, adult Wistar rats were treated with 0.1% lead acetate in drinking water alone or with 50, 100, or 200 mg/kg body weight of C. intybus extract via gavage once daily for 70 days. The weight of their reproductive organs, levels of serum hormones, histometric parameters of the seminiferous tubules, epidydimal sperm quality, and oxidative stress status were evaluated. Results: The testis weight, seminiferous tubule diameter, epididymal sperm count, serum testosterone level, and testicular levels of superoxide dismutase and glutathione peroxidase were significantly reduced (p< 0.05) in the lead-treated rats. Moreover, significantly (p< 0.05) higher levels of malondialdehyde were observed in the lead-exposed group compared to the control. However, the co-administration of C. intybus ethanolic extract in lead-treated rats was associated with a significant improvement in reproductive parameters. Conclusion: We conclude that C. intybus leaf extract has the potential to prevent lead-induced testicular toxicity and to suppress the adverse effects of lead on male reproductive health.