• 제목/요약/키워드: reproductive tissue

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Hormonal regulation of uterine chemokines and immune cells

  • Park, Dong-Wook;Yang, Kwang-Moon
    • Clinical and Experimental Reproductive Medicine
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    • 제38권4호
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    • pp.179-185
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    • 2011
  • The ultimate function of the endometrium is to allow the implantation of a blastocyst and to support pregnancy. Cycles of tissue remodeling ensure that the endometrium is in a receptive state during the putative 'implantation window', the few days of each menstrual cycle when an appropriately developed blastocyst may be available to implant in the uterus. A successful pregnancy requires strict temporal regulation of maternal immune function to accommodate a semi-allogeneic embryo. To preparing immunological tolerance at the onset of implantation, tight temporal regulations are required between the immune and endocrine networks. This review will discuss about the action of steroid hormones on the human endometrium and particularly their role in regulating the inflammatory processes associated with endometrial receptivity.

Understanding the molecular mechanisms of bisphenol A action in spermatozoa

  • Rahman, Md Saidur;Pang, Myung-Geol
    • Clinical and Experimental Reproductive Medicine
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    • 제46권3호
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    • pp.99-106
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    • 2019
  • Bisphenol A (BPA) is an endocrine-disrupting chemical that is capable of interfering with the normal function of the endocrine system in the body. Exposure to this chemical from BPA-containing materials and the environment is associated with deleterious health effects, including male reproductive abnormalities. A search of the literature demonstrated that BPA, as a toxicant, directly affects the cellular oxidative stress response machinery. Because of its hormone-like properties, it can also bind with specific receptors in target cells. Therefore, the tissue-specific effects of BPA mostly depend on its endocrine-disrupting capabilities and the expression of those particular receptors in target cells. Although studies have shown the possible mechanisms of BPA action in various cell types, a clear consensus has yet to be established. In this review, we summarize the mechanisms of BPA action in spermatozoa by compiling existing information in the literature.

농어, Lateolabrax japonicus의 생식주기 (Reproductive Cycle of Seabass, Lateolabrax japonicus)

  • 강덕영;한형균;안철민
    • 한국어류학회지
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    • 제13권3호
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    • pp.201-209
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    • 2001
  • 본 연구는 농어과, 농어속 어류인 농어 (L. japonicus)를 대상으로 생식주기를 조사한 것이다. 생식소중량지수 (GSI)는 암컷의 경우 10월부터 증가하기 시작하여 2월에 연중 최대값을 나타내었으며, 수컷 생식소중량지수는 12월에 연중 최대값을 나타내었다. 생식소의 월별 조직학적 변화와 생식소중량지수 변화를 토대로 생식주기는 3월~8월의 퇴화 및 휴지기, 9월~11월의 성장기, 11월~12월의 성숙기, 12월~3월의 산란기 등으로 구분할 수 있었다.

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한국 동해 해역에서 채집된 살오징어 (Todarodes pacificus)의 성성숙과 생식주기 (Sexual Maturity and Reproductive Cycle of the Common Squid Todarodes pacificus in the East Sea of Korea)

  • 백혜자;김재원;조윤정;김수암
    • 한국수산과학회지
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    • 제39권6호
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    • pp.472-479
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    • 2006
  • The sexual maturity and reproductive cycle of the common squid, Todarodes pacificus captured from the East Sea, Korea, between January 2004 and January 2006, were investigated by documenting changes in the gonadosomatic index (GSI), gonad development, and oocyte size frequency distribution. The GSI of females began to increase in July, reached a maximum in August, and then gradually decreased. The GSI of males increased from July to March. Using gonad histological observations, we identified four oocyte developmental stages. The changes in GSI and gonad tissue resulted in the classification of the annual reproductive cycle into the following four successive stages: immature (April to June), growing (June to July), mature (July to August), and ripe and spawning (August to March). According to the oocyte diameter size frequency distribution in the ovary, this species appeared to have asynchronous oocyte development and one spawning time.

Rhox in mammalian reproduction and development

  • Lee, Sang-Eun;Lee, Su-Yeon;Lee, Kyung-Ah
    • Clinical and Experimental Reproductive Medicine
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    • 제40권3호
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    • pp.107-114
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    • 2013
  • Homeobox genes play essential roles in embryonic development and reproduction. Recently, a large cluster of homeobox genes, reproductive homeobox genes on the X chromosome (Rhox) genes, was discovered as three gene clusters, ${\alpha}$, ${\beta}$, and ${\gamma}$ in mice. It was found that Rhox genes were selectively expressed in reproduction-associated tissues, such as those of the testes, epididymis, ovaries, and placenta. Hence, it was proposed that Rhox genes are important for regulating various reproductive features, especially gametogenesis in male as well as in female mammals. It was first determined that 12 Rhox genes are clustered into ${\alpha}$ (Rhox1-4), ${\beta}$ (Rhox5-9), and ${\gamma}$ (Rhox10-12) subclusters, and recently Rhox13 has also been found. At present, 33 Rhox genes have been identified in the mouse genome, 11 in the rat, and three in the human. Rhox genes are also responsible for embryonic development, with considerable amounts of Rhox expression in trophoblasts, placenta tissue, embryonic stem cells, and primordial germ cells. In this article we summarized the current understanding of Rhox family genes involved in reproduction and embryonic development and elucidated a previously unreported cell-specific expression in ovarian cells.

포유동물 생식세포 및 생식기관에서 발현되는 Two-Pore Domain 칼륨 통로 (Two-Pore Domain $K^+$ Channels Expressed in Mammalian Reproductive Cells and Organs)

  • 이효진;한재희;강다원
    • 한국수정란이식학회지
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    • 제24권3호
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    • pp.189-197
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    • 2009
  • Two-pore domain 칼륨($K_{2P}$) 통로는 흥분세포 및 비흥분세포의 안정막 전압을 일정하게 유지하는데 관여한다. 그러나 생식세포 및 생식기관에서 발현되는 $K_{2P}$ 통로의 분포영역 및 그 기능에 대해서는 연구자들에 의해 아직 정리되지 못하였다. 본 종설에서는 $K_{2P}$ 통로의 생식세포 및 생식기관에서 발현, 분포 및 생리학적 의의를 논하였다. $K_{2P}$ 통로는 인간 영양막세포, 자궁근층, 태반혈관계, 자궁평활근조직, 태반융모조직 및 임신자궁조직에서 발현되어 임신에 있어서 관련성을 제시되었다. 또한, $K_{2P}$ 통로는 마우스 전핵배, 원숭이 정자 및 한우의 난소, 정소, 난자, 정자 및 수정란에서 발현 변화를 보였다. 특히, $K_{2P}$ 통로는 체외배양 시 변화되는 온도, 산소분압과 같은 배양조건에 의해 조절되는 특징을 보임으로써 수정 및 배 발달에 영향을 줄 수 있는 인자로 제시되었다. 그리고 $K_{2P}$ 통로는 과산화수소에 의해 유도된 마우스 전핵배의 세포 사멸에 있어서 칼륨 이온의 유출에 관여함이 확인되었다. $K_{2P}$ 통로의 생식세포 및 생식기관 내 발현 형태와 생리학적 특징은 생식생리학에 있어서 이온 통로 관련 기능들을 이해하는데 도움이 될 것이다.