Monika Horvat Mercnik, Carolin Schliefsteiner, Gonzalo Sanchez-Duffhues, Christian Wadsack
{"title":"TGFβ 信号:整个孕期炎症、胎盘健康和子痫前期之间的联系。","authors":"Monika Horvat Mercnik, Carolin Schliefsteiner, Gonzalo Sanchez-Duffhues, Christian Wadsack","doi":"10.1093/humupd/dmae007","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>The placenta is a unique and pivotal organ in reproduction, controlling crucial growth and cell differentiation processes that ensure a successful pregnancy. Placental development is a tightly regulated and dynamic process, in which the transforming growth factor beta (TGFβ) superfamily plays a central role. This family of pleiotropic growth factors is heavily involved in regulating various aspects of reproductive biology, particularly in trophoblast differentiation during the first trimester of pregnancy. TGFβ signalling precisely regulates trophoblast invasion and the cell transition from cytotrophoblasts to extravillous trophoblasts, which is an epithelial-to-mesenchymal transition-like process. Later in pregnancy, TGFβ signalling ensures proper vascularization and angiogenesis in placental endothelial cells. Beyond its role in trophoblasts and endothelial cells, TGFβ signalling contributes to the polarization and function of placental and decidual macrophages by promoting maternal tolerance of the semi-allogeneic foetus. Disturbances in early placental development have been associated with several pregnancy complications, including preeclampsia (PE) which is one of the severe complications. Emerging evidence suggests that TGFβ is involved in the pathogenesis of PE, thereby offering a potential target for intervention in the human placenta.</p><p><strong>Objective and rationale: </strong>This comprehensive review aims to explore and elucidate the roles of the major members of the TGFβ superfamily, including TGFβs, bone morphogenetic proteins (BMPs), activins, inhibins, nodals, and growth differentiation factors (GDFs), in the context of placental development and function. The review focusses on their interactions within the major cell types of the placenta, namely trophoblasts, endothelial cells, and immune cells, in both normal pregnancies and pregnancies complicated by PE throughout pregnancy.</p><p><strong>Search methods: </strong>A literature search was carried out using PubMed and Google Scholar, searching terms: 'TGF signalling preeclampsia', 'pregnancy TGF signalling', 'preeclampsia tgfβ', 'preeclampsia bmp', 'preeclampsia gdf', 'preeclampsia activin', 'endoglin preeclampsia', 'endoglin pregnancy', 'tgfβ signalling pregnancy', 'bmp signalling pregnancy', 'gdf signalling pregnancy', 'activin signalling pregnancy', 'Hofbauer cell tgfβ signalling', 'placental macrophages tgfβ', 'endothelial cells tgfβ', 'endothelium tgfβ signalling', 'trophoblast invasion tgfβ signalling', 'trophoblast invasion Smad', 'trophoblast invasion bmp', 'trophoblast invasion tgfβ', 'tgfβ preeclampsia', 'tgfβ placental development', 'TGFβ placental function', 'endothelial dysfunction preeclampsia tgfβ signalling', 'vascular remodelling placenta TGFβ', 'inflammation pregnancy tgfβ', 'immune response pregnancy tgfβ', 'immune tolerance pregnancy tgfβ', 'TGFβ pregnancy NK cells', 'bmp pregnancy NK cells', 'bmp pregnancy tregs', 'tgfβ pregnancy tregs', 'TGFβ placenta NK cells', 'TGFβ placenta tregs', 'NK cells preeclampsia', 'Tregs preeclampsia'. Only articles published in English until 2023 were used.</p><p><strong>Outcomes: </strong>A comprehensive understanding of TGFβ signalling and its role in regulating interconnected cell functions of the main placental cell types provides valuable insights into the processes essential for successful placental development and growth of the foetus during pregnancy. By orchestrating trophoblast invasion, vascularization, immune tolerance, and tissue remodelling, TGFβ ligands contribute to the proper functioning of a healthy maternal-foetal interface. However, dysregulation of TGFβ signalling has been implicated in the pathogenesis of PE, where the shallow trophoblast invasion, defective vascular remodelling, decreased uteroplacental perfusion, and endothelial cell and immune dysfunction observed in PE, are all affected by an altered TGFβ signalling.</p><p><strong>Wider implications: </strong>The dysregulation of TGFβ signalling in PE has important implications for research and clinical practice. Further investigation is required to understand the underlying mechanisms, including the role of different ligands and their regulation under pathophysiological conditions, in order to discover new therapeutic targets. Distinguishing between clinically manifested subtypes of PE and studying TGFβ signalling in different placental cell types holistically is an important first step. To put this knowledge into practice, pre-clinical animal models combined with new technologies are needed. This may also lead to improved human research models and identify potential therapeutic targets, ultimately improving outcomes for affected pregnancies and reducing the burden of PE.</p>","PeriodicalId":55045,"journal":{"name":"Human Reproduction Update","volume":" ","pages":"442-471"},"PeriodicalIF":14.8000,"publicationDate":"2024-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11215164/pdf/","citationCount":"0","resultStr":"{\"title\":\"TGFβ signalling: a nexus between inflammation, placental health and preeclampsia throughout pregnancy.\",\"authors\":\"Monika Horvat Mercnik, Carolin Schliefsteiner, Gonzalo Sanchez-Duffhues, Christian Wadsack\",\"doi\":\"10.1093/humupd/dmae007\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>The placenta is a unique and pivotal organ in reproduction, controlling crucial growth and cell differentiation processes that ensure a successful pregnancy. Placental development is a tightly regulated and dynamic process, in which the transforming growth factor beta (TGFβ) superfamily plays a central role. This family of pleiotropic growth factors is heavily involved in regulating various aspects of reproductive biology, particularly in trophoblast differentiation during the first trimester of pregnancy. TGFβ signalling precisely regulates trophoblast invasion and the cell transition from cytotrophoblasts to extravillous trophoblasts, which is an epithelial-to-mesenchymal transition-like process. Later in pregnancy, TGFβ signalling ensures proper vascularization and angiogenesis in placental endothelial cells. Beyond its role in trophoblasts and endothelial cells, TGFβ signalling contributes to the polarization and function of placental and decidual macrophages by promoting maternal tolerance of the semi-allogeneic foetus. Disturbances in early placental development have been associated with several pregnancy complications, including preeclampsia (PE) which is one of the severe complications. Emerging evidence suggests that TGFβ is involved in the pathogenesis of PE, thereby offering a potential target for intervention in the human placenta.</p><p><strong>Objective and rationale: </strong>This comprehensive review aims to explore and elucidate the roles of the major members of the TGFβ superfamily, including TGFβs, bone morphogenetic proteins (BMPs), activins, inhibins, nodals, and growth differentiation factors (GDFs), in the context of placental development and function. The review focusses on their interactions within the major cell types of the placenta, namely trophoblasts, endothelial cells, and immune cells, in both normal pregnancies and pregnancies complicated by PE throughout pregnancy.</p><p><strong>Search methods: </strong>A literature search was carried out using PubMed and Google Scholar, searching terms: 'TGF signalling preeclampsia', 'pregnancy TGF signalling', 'preeclampsia tgfβ', 'preeclampsia bmp', 'preeclampsia gdf', 'preeclampsia activin', 'endoglin preeclampsia', 'endoglin pregnancy', 'tgfβ signalling pregnancy', 'bmp signalling pregnancy', 'gdf signalling pregnancy', 'activin signalling pregnancy', 'Hofbauer cell tgfβ signalling', 'placental macrophages tgfβ', 'endothelial cells tgfβ', 'endothelium tgfβ signalling', 'trophoblast invasion tgfβ signalling', 'trophoblast invasion Smad', 'trophoblast invasion bmp', 'trophoblast invasion tgfβ', 'tgfβ preeclampsia', 'tgfβ placental development', 'TGFβ placental function', 'endothelial dysfunction preeclampsia tgfβ signalling', 'vascular remodelling placenta TGFβ', 'inflammation pregnancy tgfβ', 'immune response pregnancy tgfβ', 'immune tolerance pregnancy tgfβ', 'TGFβ pregnancy NK cells', 'bmp pregnancy NK cells', 'bmp pregnancy tregs', 'tgfβ pregnancy tregs', 'TGFβ placenta NK cells', 'TGFβ placenta tregs', 'NK cells preeclampsia', 'Tregs preeclampsia'. Only articles published in English until 2023 were used.</p><p><strong>Outcomes: </strong>A comprehensive understanding of TGFβ signalling and its role in regulating interconnected cell functions of the main placental cell types provides valuable insights into the processes essential for successful placental development and growth of the foetus during pregnancy. By orchestrating trophoblast invasion, vascularization, immune tolerance, and tissue remodelling, TGFβ ligands contribute to the proper functioning of a healthy maternal-foetal interface. However, dysregulation of TGFβ signalling has been implicated in the pathogenesis of PE, where the shallow trophoblast invasion, defective vascular remodelling, decreased uteroplacental perfusion, and endothelial cell and immune dysfunction observed in PE, are all affected by an altered TGFβ signalling.</p><p><strong>Wider implications: </strong>The dysregulation of TGFβ signalling in PE has important implications for research and clinical practice. Further investigation is required to understand the underlying mechanisms, including the role of different ligands and their regulation under pathophysiological conditions, in order to discover new therapeutic targets. Distinguishing between clinically manifested subtypes of PE and studying TGFβ signalling in different placental cell types holistically is an important first step. To put this knowledge into practice, pre-clinical animal models combined with new technologies are needed. 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引用次数: 0
摘要
背景:胎盘是生殖过程中一个独特而关键的器官,控制着确保成功妊娠的关键生长和细胞分化过程。胎盘的发育是一个受到严格调控的动态过程,其中转化生长因子β(TGFβ)超家族发挥着核心作用。这个多效生长因子家族在很大程度上参与了生殖生物学各方面的调控,尤其是在妊娠头三个月的滋养细胞分化过程中。TGFβ 信号可精确调控滋养细胞的侵袭以及细胞从细胞滋养细胞向体外滋养细胞的转化,这是一个类似于上皮细胞向间质转化的过程。在妊娠后期,TGFβ 信号可确保胎盘内皮细胞的正常血管化和血管生成。除了在滋养层细胞和内皮细胞中的作用外,TGFβ 信号还通过促进母体对半异体胎儿的耐受性,促进胎盘和蜕膜巨噬细胞的极化和功能。胎盘早期发育紊乱与多种妊娠并发症有关,其中包括严重并发症之一的子痫前期(PE)。新的证据表明,TGFβ参与了子痫前期的发病机制,从而为干预人类胎盘提供了一个潜在的靶点。目的和依据:本综述旨在探讨和阐明TGFβ超家族主要成员在胎盘发育和功能中的作用,包括TGFβ、骨形态发生蛋白(BMP)、激活蛋白、抑制蛋白、节点因子和生长分化因子(GDF)。该综述重点关注它们在胎盘主要细胞类型(即滋养层细胞、内皮细胞和免疫细胞)中的相互作用,既包括正常妊娠,也包括整个妊娠过程中因 PE 而复杂化的妊娠:使用 PubMed 和 Google Scholar 进行文献检索,检索词为子痫前TGF信号"、"妊娠TGF信号"、"子痫前tgfβ信号"、"子痫前bmp信号"、"子痫前ggf信号"、"子痫前activin信号"、"子痫前endoglin信号"、"妊娠endoglin信号"、"妊娠tgfβ信号"、"妊娠bmp信号"、"妊娠ggf信号"、妊娠活化素信号"、"霍夫鲍尔细胞 tgfβ 信号"、"胎盘巨噬细胞 tgfβ"、"内皮细胞 tgfβ"、"内皮细胞 tgfβ 信号"、"滋养层细胞侵袭 tgfβ 信号"、"滋养层细胞侵袭 Smad"、"滋养层细胞侵袭 bmp"、滋养层母细胞侵袭 Tgfβ"、"子痫前期 Tgfβ"、"胎盘发育 Tgfβ"、"TGFβ 胎盘功能"、"子痫前期内皮功能障碍 Tgfβ 信号"、"血管重塑胎盘 TGFβ"、"妊娠炎症 Tgfβ"、免疫反应妊娠tgfβ"、"免疫耐受妊娠tgfβ"、"TGFβ妊娠NK细胞"、"bmp妊娠NK细胞"、"bmp妊娠Tregs"、"tgfβ妊娠Tregs"、"TGFβ胎盘NK细胞"、"TGFβ胎盘Tregs"、"子痫前期NK细胞"、"子痫前期Tregs"。仅采用 2023 年之前发表的英文文章:全面了解TGFβ信号及其在调节主要胎盘细胞类型相互关联的细胞功能方面的作用,有助于深入了解妊娠期间胎盘成功发育和胎儿生长所必需的过程。TGFβ 配体通过协调滋养层细胞的侵袭、血管化、免疫耐受和组织重塑,有助于健康的母胎界面正常运作。然而,TGFβ 信号的失调已被认为与 PE 的发病机制有关,在 PE 中观察到的滋养层细胞浅层侵入、血管重塑缺陷、子宫胎盘灌注减少、内皮细胞和免疫功能失调都受到 TGFβ 信号改变的影响:PE 中 TGFβ 信号的失调对研究和临床实践具有重要意义。需要进一步研究以了解其潜在机制,包括不同配体的作用及其在病理生理条件下的调节,从而发现新的治疗靶点。区分临床表现的 PE 亚型并全面研究不同胎盘细胞类型中的 TGFβ 信号是重要的第一步。要将这些知识付诸实践,需要临床前动物模型与新技术相结合。这也可能会改进人类研究模型并确定潜在的治疗目标,最终改善受影响妊娠的预后并减轻 PE 的负担。
TGFβ signalling: a nexus between inflammation, placental health and preeclampsia throughout pregnancy.
Background: The placenta is a unique and pivotal organ in reproduction, controlling crucial growth and cell differentiation processes that ensure a successful pregnancy. Placental development is a tightly regulated and dynamic process, in which the transforming growth factor beta (TGFβ) superfamily plays a central role. This family of pleiotropic growth factors is heavily involved in regulating various aspects of reproductive biology, particularly in trophoblast differentiation during the first trimester of pregnancy. TGFβ signalling precisely regulates trophoblast invasion and the cell transition from cytotrophoblasts to extravillous trophoblasts, which is an epithelial-to-mesenchymal transition-like process. Later in pregnancy, TGFβ signalling ensures proper vascularization and angiogenesis in placental endothelial cells. Beyond its role in trophoblasts and endothelial cells, TGFβ signalling contributes to the polarization and function of placental and decidual macrophages by promoting maternal tolerance of the semi-allogeneic foetus. Disturbances in early placental development have been associated with several pregnancy complications, including preeclampsia (PE) which is one of the severe complications. Emerging evidence suggests that TGFβ is involved in the pathogenesis of PE, thereby offering a potential target for intervention in the human placenta.
Objective and rationale: This comprehensive review aims to explore and elucidate the roles of the major members of the TGFβ superfamily, including TGFβs, bone morphogenetic proteins (BMPs), activins, inhibins, nodals, and growth differentiation factors (GDFs), in the context of placental development and function. The review focusses on their interactions within the major cell types of the placenta, namely trophoblasts, endothelial cells, and immune cells, in both normal pregnancies and pregnancies complicated by PE throughout pregnancy.
Search methods: A literature search was carried out using PubMed and Google Scholar, searching terms: 'TGF signalling preeclampsia', 'pregnancy TGF signalling', 'preeclampsia tgfβ', 'preeclampsia bmp', 'preeclampsia gdf', 'preeclampsia activin', 'endoglin preeclampsia', 'endoglin pregnancy', 'tgfβ signalling pregnancy', 'bmp signalling pregnancy', 'gdf signalling pregnancy', 'activin signalling pregnancy', 'Hofbauer cell tgfβ signalling', 'placental macrophages tgfβ', 'endothelial cells tgfβ', 'endothelium tgfβ signalling', 'trophoblast invasion tgfβ signalling', 'trophoblast invasion Smad', 'trophoblast invasion bmp', 'trophoblast invasion tgfβ', 'tgfβ preeclampsia', 'tgfβ placental development', 'TGFβ placental function', 'endothelial dysfunction preeclampsia tgfβ signalling', 'vascular remodelling placenta TGFβ', 'inflammation pregnancy tgfβ', 'immune response pregnancy tgfβ', 'immune tolerance pregnancy tgfβ', 'TGFβ pregnancy NK cells', 'bmp pregnancy NK cells', 'bmp pregnancy tregs', 'tgfβ pregnancy tregs', 'TGFβ placenta NK cells', 'TGFβ placenta tregs', 'NK cells preeclampsia', 'Tregs preeclampsia'. Only articles published in English until 2023 were used.
Outcomes: A comprehensive understanding of TGFβ signalling and its role in regulating interconnected cell functions of the main placental cell types provides valuable insights into the processes essential for successful placental development and growth of the foetus during pregnancy. By orchestrating trophoblast invasion, vascularization, immune tolerance, and tissue remodelling, TGFβ ligands contribute to the proper functioning of a healthy maternal-foetal interface. However, dysregulation of TGFβ signalling has been implicated in the pathogenesis of PE, where the shallow trophoblast invasion, defective vascular remodelling, decreased uteroplacental perfusion, and endothelial cell and immune dysfunction observed in PE, are all affected by an altered TGFβ signalling.
Wider implications: The dysregulation of TGFβ signalling in PE has important implications for research and clinical practice. Further investigation is required to understand the underlying mechanisms, including the role of different ligands and their regulation under pathophysiological conditions, in order to discover new therapeutic targets. Distinguishing between clinically manifested subtypes of PE and studying TGFβ signalling in different placental cell types holistically is an important first step. To put this knowledge into practice, pre-clinical animal models combined with new technologies are needed. This may also lead to improved human research models and identify potential therapeutic targets, ultimately improving outcomes for affected pregnancies and reducing the burden of PE.
期刊介绍:
Human Reproduction Update is the leading journal in its field, boasting a Journal Impact FactorTM of 13.3 and ranked first in Obstetrics & Gynecology and Reproductive Biology (Source: Journal Citation ReportsTM from Clarivate, 2023). It specializes in publishing comprehensive and systematic review articles covering various aspects of human reproductive physiology and medicine.
The journal prioritizes basic, transitional, and clinical topics related to reproduction, encompassing areas such as andrology, embryology, infertility, gynaecology, pregnancy, reproductive endocrinology, reproductive epidemiology, reproductive genetics, reproductive immunology, and reproductive oncology. Human Reproduction Update is published on behalf of the European Society of Human Reproduction and Embryology (ESHRE), maintaining the highest scientific and editorial standards.