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Sirt1-PPARgamma signaling in placental development and fetal growth disorders

Sirt1-PPARgamma signaling in placental development and fetal growth disorders
Sirt1-PPARgamma 信号在胎盘发育和胎儿生长障碍中的作用
批准号:
8304761
负责人:
Mana M Parast
金额:
$32.14万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-04-01 至 2017-03-31

项目摘要

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中文摘要
翻译
描述(申请人提供):胎儿生长障碍(包括生长受限和过度生长)是常见的妊娠并发症,它增加了围产期不良后果的风险,并增加了成人疾病的发展风险,包括糖尿病和心血管疾病。胎盘是源于胎儿的器官,其正常的发育和功能是妊娠成功的关键。滋养层细胞构成胎盘的上皮室,调节营养/气体交换功能和母体血流进入胎盘单位。在胎盘形成的早期事件中,胎儿生长异常与滋养层分化和功能障碍有关,从而导致慢性胎儿-胎盘缺氧。PPARGamma是一种配体激活的转录因子,也是噻唑烷二酮类抗糖尿病药物的靶标,Sirt1是一种蛋白质脱乙酰酶,也是PPARGamma的负调控因子,此前已被证明参与了细胞和组织功能的多个方面,包括分化、营养感知和新陈代谢。我们已经证明Sirt1-PPARGamma信号通路特异性地参与了滋养层细胞的分化和缺氧诱导的滋养层细胞损伤。此外,Sirt1基因敲除和PPARγ过度刺激都被证明会导致小鼠胎儿生长受限。最后,在人类胎盘中,PPARGamma及其内源性配体的表达和/或活性在与胎儿生长异常相关的胎盘中发生改变,包括胎儿生长受限、先兆子痫和妊娠期糖尿病。本研究的目的是确定Sirt1-PPARGamma信号在滋养层分化、低氧诱导的胎盘损伤和基于胎盘的胎儿生长障碍中的作用机制。该项目有可能确定这些疾病的治疗目标,从而降低围产期发病率和死亡率。 与公共卫生相关:胎儿生长障碍,包括生长受限和巨大儿,是常见的妊娠并发症,在围产期会增加不良后果的风险,并会发展成成人疾病,包括糖尿病和心血管疾病。该项目探索胎盘中一个特定的信号通路促进胎儿生长的机制,重点关注可能改善胎儿健康的潜在治疗靶点。好了!
英文摘要
DESCRIPTION (provided by applicant): Fetal growth disorders (both growth restriction and overgrowth) are common pregnancy complications, which carry an increased risk of adverse outcomes in the perinatal period and an increased risk of development of adult disease, including diabetes and cardiovascular disease. The placenta is a fetal-derived organ, whose proper development and function are pivotal in pregnancy success. Trophoblastic cells comprise the epithelial compartment of the placenta, and mediate nutrient/gas exchange functions and establishment of maternal blood flow into the feto-placental unit. Abnormal fetal growth has been associated with disorders of trophoblastic differentiation and function during early events in placentation, which lead to chronic feto-placental hypoxia. PPARgamma, a ligand-activated transcription factor and target of the thiazolidinedione family of anti-diabetic drugs, and Sirt1, a protein deacetylase and negative regulator of PPARgamma, have previously been shown to be involved in multiple facets of cell and tissue function, including differentiation nutrient-sensing, and metabolism. We have shown that Sirt1-PPARgamma signaling is specifically involved in trophoblast differentiation and hypoxia-induced trophoblast injury. In addition, both Sirt1-knockout and PPARgamma overstimulation have been shown to cause fetal growth restriction in mice. Finally, in human placentas, the expression and/or activity of PPARgamma and its endogenous ligands are altered in placentas associated with abnormal fetal growth, including fetal growth restriction, preeclampsia, and gestational diabetes. The goal of this proposal is to determine the mechanisms by which Sirt1-PPARgamma signaling contribute to trophoblastic differentiation, hypoxia-induced placental injury, and placenta-based fetal growth disorders. This project has the potential to identify therapeutic targets for these diseases, leading to a decrease in perinatal morbidity and mortality. PUBLIC HEALTH RELEVANCE: Fetal growth disorders, including growth restriction and macrosomia, are common pregnancy complications, which carry an increased risk of adverse outcomes in the perinatal period and development of adult disease, including diabetes and cardiovascular disease. This project explores mechanisms by which one particular signaling pathway in the placenta contributes to fetal growth, focusing on potential therapeutic targets which could improve fetal well-being. !
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