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Alterations in eicosanoid composition during embryonic development in the chorioallantoic membrane of the American alligator (Alligator mississippiensis) and domestic chicken (Gallus gallus)

机译:美国短吻鳄(密西西比短吻鳄)和家禽(鸡)的绒毛尿囊膜胚胎发育过程中类花生酸成分的变化

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摘要

Eicosanoids are signaling lipids known to regulate several physiological processes in the mammalian placenta, including the initiation of parturition. Though all amniotes construct similar extraembryonic membranes during development, the composition and function of eicosanoids in extraembryonic membranes of oviparous reptiles is largely unknown. The majority of effort placed in eicosanoid investigations is typically targeted toward defining the role of specific compounds in disease etiology; however, comprehensive characterization of several pathways in eicosanoid synthesis during development is also needed to better understand the complex role of these lipids in comparative species. To this end, we have examined the chorioallantoic membrane (CAM) of the American alligator (Alligator mississippiensis) and domestic chicken (Gallus gallus) during development. Previously, our lab has demonstrated that the CAM of several oviparous species shared conserved steroidogenic activity, a feature originally attributed to mammalian amniotes. To further explore this, we have developed a liquid chromatography/tandem mass spectrometry method that is used here to quantify multiple eicosanoids in the CAM of two oviparous species at different stages of development. We identified 18 eicosanoids in the alligator CAM; the cyclooxygenase (COX) pathway showed the largest increase from early development to later development in the alligator CAM. Similarly, the chicken CAM had an increase in COX products and COX activity, which supports the LC-MS/MS analyses. Jointly, our findings indicate that the CAM tissue of an oviparous species is capable of eicosanoid synthesis, which expands our knowledge of placental evolution and introduces the possibility of future comparative models of placental function.
机译:类花生酸是信号脂质,已知可调节哺乳动物胎盘的几种生理过程,包括分娩的开始。尽管所有羊膜羊在发育过程中都会构建相似的胚外膜,但卵生爬行动物胚外膜中类花生酸的组成和功能尚不清楚。类花生酸研究中的大部分工作通常旨在确定特定化合物在疾病病因中的作用。然而,还需要对发育过程中类花生酸合成中的几种途径进行全面表征,以更好地了解这些脂质在比较物种中的复杂作用。为此,我们在开发过程中检查了美洲短吻鳄(Alligator mississippiensis)和家养鸡(Gallus gallus)的绒毛膜尿囊膜(CAM)。以前,我们的实验室已经证明了几种卵生动物的CAM具有保守的类固醇生成活性,这最初归因于哺乳动物羊膜。为了进一步探讨这一点,我们开发了一种液相色谱/串联质谱分析方法,该方法在这里用于量化处于不同发育阶段的两个卵子种类的CAM中的多种类花生酸。我们在鳄鱼CAM中鉴定出18种类花生酸。从鳄鱼的早期发育到后期发育,环氧合酶(COX)途径显示出最大的增长。同样,鸡肉CAM的COX产物和COX活性增加,这支持了LC-MS / MS分析。共同地,我们的发现表明卵子物种的CAM组织能够合成类花生酸,从而扩展了我们对胎盘演变的认识,并为将来的胎盘功能比较模型提供了可能性。

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