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Effects of porcine conceptus secreted products on uterine production of prostaglandins.

机译:猪概念分泌产物对子宫前列腺素产生的影响。

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摘要

During early pregnancy in pigs, uterine secretion and production of prostaglandins (PGs) are altered. This is due to a switch in secretion of endometrial PGs from an endocrine to an exocrine direction which is initiated by conceptus-derived estradiol. In addition, results reported within this dissertation indicate that porcine conceptus secretory products (pCSP) stimulate endometrial production of PGs. Exposure of the luminal surface of endometrium to pCSP, in vitro, or incubation of uterine explants with pCSP, stimulated secretion of prostaglandin F{dollar}sb{lcub}2alpha{rcub}{dollar} (PGF{dollar}sb{lcub}2alpha{rcub}{dollar}) and prostaglandin-E{dollar}sb2{dollar} (PGE) and activity of the substance was not dependent on estrogen priming of the endometrium in vivo. The stimulatory factor appears to be a low molecular weight, heat labile and trypsin-sensitive substance which is active at low concentrations (0.5 to 1 {dollar}mu{dollar}g/ml). Additionally, the stimulatory factor may associate with higher molecular weight substances and may be dependent on these carriers for its biological activity.; Results of another study indicate that altered secretion of PGs during early pregnancy in pigs is not related to changes in presence of the PG synthetase enzyme within specific cell types. Further, it is not related to differential activation of a calcium-independent endometrial phospholipase A2 (PLA{dollar}sb2),{dollar} which is thought to be the primary rate limiting enzyme in the synthesis of PGs. However, in vitro, the ability of pCSP to stimulate secretion of PGF{dollar}sb{lcub}2alpha{rcub}{dollar} may depend on PLA{dollar}sb2.{dollar} Characterization of a porcine endometrial PLA{dollar}sb2{dollar} enzyme revealed it to be one of a relatively small number of intracellular calcium-independent PLA{dollar}sb2{dollar} enzymes which may be beneficial to reproduction by regulating uterine production of PGs in pigs.; The results of studies reported in this dissertation also indicate that an initial response of the uterine endometrium to the presence of elongating conceptuses during maternal recognition of pregnancy is increased expression of a transcription regulatory factor, c-fos, which may be involved with altered endometrial secretory activity during this period and extension of the interestrous interval. It is hypothesized that estradiol, secreted by elongating conceptuses, is the primary stimulus for increased transcription of the c-fos gene. In addition, expression of c-fos during the initial maternal recognition of pregnancy period (Days 11 to 12) may alter endometrial responsiveness to estradiol during a second critical window of estrogen secretion (Days 15-16), which is also necessary for maternal recognition of pregnancy.
机译:在猪的早期妊娠期间,子宫分泌和前列腺素(PGs)的产生发生了改变。这是由于子宫内膜PGs的分泌从内分泌向外分泌方向的转变,这是由源自概念的雌二醇引发的。此外,本论文报道的结果表明,猪概念分泌产物(pCSP)刺激子宫内膜产生PGs。子宫内膜腔表面在体外暴露于pCSP或将子宫外植体与pCSP一起孵育会刺激前列腺素F {dollarssb {lcub} 2alpha {rcub} {dollar}(PGF {dollar} sb {lcub} 2alpha {rcub} {dollar})和前列腺素-E {dollar} sb2 {dollar}(PGE),该物质的活性不依赖于体内子宫内膜的雌激素引发。刺激因素似乎是低分子量,对热不稳定且对胰蛋白酶敏感的物质,其在低浓度(0.5至1 {μg}μg/ ml)下具有活性。另外,刺激因子可能与更高分子量的物质有关,并且可能依赖于这些载体的生物活性。另一项研究的结果表明,猪在怀孕初期PG分泌的改变与特定细胞类型中PG合成酶存在的变化无关。此外,它与钙依赖性子宫内膜磷脂酶A2(PLA {dollar} sb2){dollar}的差异激活无关,PLA {dollar} sb2}被认为是PGs合成中的主要限速酶。然而,在体外,pCSP刺激PGF {dollar} sb {lcub} 2alpha {rcub} {dollar}分泌的能力可能取决于PLA {dollar} sb2。{dollar}猪子宫内膜PLA {dollar} sb2的表征{dollar}酶表明它是相对少量的细胞内非钙依赖性PLA {sdol2sb2 {dollar}之一,该酶可能通过调节猪中PG的子宫产生而有益于繁殖。本论文报道的研究结果还表明,子宫内膜对孕产妇识别妊娠期间子宫延长概念的存在的初始反应是转录调节因子c-fos的表达增加,其可能与子宫内膜分泌的改变有关。在此期间的活动和延长利息间隔。据推测,雌二醇是通过延长概念而分泌的,是促进c-fos基因转录的主要刺激因素。此外,在孕期最初的母体识别期间(第11至12天)表达c-fos可能会在雌激素分泌的第二个关键窗口(第15-16天)改变子宫内膜对雌二醇的反应性,这对于母体识别也是必需的怀孕

著录项

  • 作者

    Dubois, Daniel Harry.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 329 p.
  • 总页数 329
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生理学;
  • 关键词

  • 入库时间 2022-08-17 11:50:14

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