Giulia Fiorentino, Danilo Cimadomo, Federica Innocenti, Daria Soscia, Alberto Vaiarelli, Filippo Maria Ubaldi, Gianluca Gennarelli, Silvia Garagna, Laura Rienzi, Maurizio Zuccotti
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Morphological and functional changes to the growing follicle and to the surrounding tissue are required to produce oocytes capable of supporting preimplantation development to the blastocyst stage.</p><p><strong>Objective and rationale: </strong>This review will summarize the ovarian morphological and functional context that contributes to follicle recruitment, growth and ovulation, as well as to the acquisition of oocyte developmental competence. We will describe the changes occurring during folliculogenesis to the ovarian extracellular matrix (ECM) and to the vasculature, their influence on the mechanical properties of the ovarian tissue, and, in turn, their influence on the regulation of signal transduction. Also, we will outline how their dysregulation might be associated with pathologies such as polycystic ovary syndrome (PCOS), endometriosis or premature ovarian insufficiency (POI). Finally, for each of these three pathologies, we will highlight therapeutic strategies attempting to correct the altered biomechanical context in order to restore fertility.</p><p><strong>Search methods: </strong>For each area discussed, a systematic bibliographical search was performed, without temporal limits, using PubMed Central, Web of Science and Scopus search engines employing the keywords extracellular matrix, mechanobiology, biomechanics, vasculature, angiogenesis or signalling pathway in combination with: ovary, oogenesis, oocyte, folliculogenesis, ovarian follicle, theca, granulosa, cumulus, follicular fluid, corpus luteum, meiosis, oocyte developmental competence, preimplantation, polycystic ovary syndrome, premature ovarian insufficiency or endometriosis.</p><p><strong>Outcomes: </strong>Through search engines queries, we yielded a total of 37 368 papers that were further selected based on our focus on mammals and, specifically, on rodents, bovine, equine, ovine, primates and human, and also were trimmed around each specific topic of the review. After the elimination of duplicates, this selection process resulted in 628 papers, of which 287 were cited in the manuscript. Among these, 89.2% were published in the past 22 years, while the remaining 8.0%, 2.4% or 0.3% were published during the 1990s, 1980s or before, respectively. During folliculogenesis, changes occur to the ovarian ECM composition and organization that, together with vasculature modelling around the growing follicle, are aimed to sustain its recruitment and growth, and the maturation of the enclosed oocyte. These events define the scenario in which mechanical forces are key to the regulation of cascades of molecular signals. Alterations to this context determine impaired folliculogenesis and decreased oocyte developmental potential, as observed in pathological conditions which are causes of infertility, such as PCOS, endometriosis or POI.</p><p><strong>Wider implications: </strong>The knowledge of these mechanisms and the rules that govern them lay a sound basis to explain how follicles recruitment and growth are modulated, and stimulate insights to develop, in clinical practice, strategies to improve follicular recruitment and oocyte competence, particularly for pathologies like PCOS, endometriosis and POI.</p>","PeriodicalId":55045,"journal":{"name":"Human Reproduction Update","volume":"29 1","pages":"1-23"},"PeriodicalIF":14.8000,"publicationDate":"2023-01-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"10","resultStr":"{\"title\":\"Biomechanical forces and signals operating in the ovary during folliculogenesis and their dysregulation: implications for fertility.\",\"authors\":\"Giulia Fiorentino, Danilo Cimadomo, Federica Innocenti, Daria Soscia, Alberto Vaiarelli, Filippo Maria Ubaldi, Gianluca Gennarelli, Silvia Garagna, Laura Rienzi, Maurizio Zuccotti\",\"doi\":\"10.1093/humupd/dmac031\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>Folliculogenesis occurs in the highly dynamic environment of the ovary. 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Also, we will outline how their dysregulation might be associated with pathologies such as polycystic ovary syndrome (PCOS), endometriosis or premature ovarian insufficiency (POI). 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引用次数: 10
摘要
背景:卵泡发生发生在卵巢的高动态环境中。卵泡周期募集、新生血管生成、空间位移、卵泡闭锁和排卵是机械力和分子信号相互作用的主要结果。卵泡和周围组织的形态和功能改变是产生能够支持着床前发育到囊胚期的卵母细胞的必要条件。目的与原理:本文综述了卵泡募集、生长和排卵以及卵母细胞发育能力获得的卵巢形态学和功能背景。我们将描述在卵泡形成过程中发生的卵巢细胞外基质(ECM)和脉管系统的变化,它们对卵巢组织机械特性的影响,以及它们对信号转导调节的影响。此外,我们还将概述它们的失调如何与多囊卵巢综合征(PCOS)、子宫内膜异位症或卵巢早衰(POI)等病理相关。最后,对于这三种病理中的每一种,我们将强调试图纠正改变的生物力学环境以恢复生育能力的治疗策略。检索方法:对于所讨论的每个领域,使用PubMed Central、Web of Science和Scopus搜索引擎进行系统的书目检索,不受时间限制,检索关键词为细胞外基质、机械生物学、生物力学、脉管系统、血管生成或信号通路,并结合:卵巢、卵发生、卵母细胞、卵泡发生、卵巢卵泡、卵泡膜、颗粒、积云、卵泡液、黄体、减数分裂、卵母细胞发育能力、着床前、多囊卵巢综合征、卵巢早衰或子宫内膜异位症。结果:通过搜索引擎查询,我们共获得37368篇论文,这些论文是根据我们对哺乳动物的关注,特别是啮齿动物、牛、马、羊、灵长类动物和人类的关注,并围绕综述的每个特定主题进行了修剪。在剔除重复项后,这一选择过程产生了628篇论文,其中287篇在原稿中被引用。其中,89.2%发表于过去22年,其余8.0%、2.4%和0.3%分别发表于90年代、80年代和之前。在卵泡形成过程中,卵巢ECM的组成和组织发生变化,这些变化与生长卵泡周围的血管模型一起,旨在维持其招募和生长,以及封闭卵母细胞的成熟。这些事件定义了机械力是调节分子信号级联的关键的场景。这种情况的改变决定了卵泡发生受损和卵母细胞发育潜力下降,这在病理条件下是导致不育的原因,如多囊卵巢综合征、子宫内膜异位症或POI。更广泛的影响:对这些机制和支配它们的规则的了解为解释卵泡的募集和生长是如何被调节的奠定了坚实的基础,并激发了在临床实践中开发改善卵泡募集和卵母细胞能力的策略的见解,特别是对于多囊卵巢综合征、子宫内膜异位症和POI等病理。
Biomechanical forces and signals operating in the ovary during folliculogenesis and their dysregulation: implications for fertility.
Background: Folliculogenesis occurs in the highly dynamic environment of the ovary. Follicle cyclic recruitment, neo-angiogenesis, spatial displacement, follicle atresia and ovulation stand out as major events resulting from the interplay between mechanical forces and molecular signals. Morphological and functional changes to the growing follicle and to the surrounding tissue are required to produce oocytes capable of supporting preimplantation development to the blastocyst stage.
Objective and rationale: This review will summarize the ovarian morphological and functional context that contributes to follicle recruitment, growth and ovulation, as well as to the acquisition of oocyte developmental competence. We will describe the changes occurring during folliculogenesis to the ovarian extracellular matrix (ECM) and to the vasculature, their influence on the mechanical properties of the ovarian tissue, and, in turn, their influence on the regulation of signal transduction. Also, we will outline how their dysregulation might be associated with pathologies such as polycystic ovary syndrome (PCOS), endometriosis or premature ovarian insufficiency (POI). Finally, for each of these three pathologies, we will highlight therapeutic strategies attempting to correct the altered biomechanical context in order to restore fertility.
Search methods: For each area discussed, a systematic bibliographical search was performed, without temporal limits, using PubMed Central, Web of Science and Scopus search engines employing the keywords extracellular matrix, mechanobiology, biomechanics, vasculature, angiogenesis or signalling pathway in combination with: ovary, oogenesis, oocyte, folliculogenesis, ovarian follicle, theca, granulosa, cumulus, follicular fluid, corpus luteum, meiosis, oocyte developmental competence, preimplantation, polycystic ovary syndrome, premature ovarian insufficiency or endometriosis.
Outcomes: Through search engines queries, we yielded a total of 37 368 papers that were further selected based on our focus on mammals and, specifically, on rodents, bovine, equine, ovine, primates and human, and also were trimmed around each specific topic of the review. After the elimination of duplicates, this selection process resulted in 628 papers, of which 287 were cited in the manuscript. Among these, 89.2% were published in the past 22 years, while the remaining 8.0%, 2.4% or 0.3% were published during the 1990s, 1980s or before, respectively. During folliculogenesis, changes occur to the ovarian ECM composition and organization that, together with vasculature modelling around the growing follicle, are aimed to sustain its recruitment and growth, and the maturation of the enclosed oocyte. These events define the scenario in which mechanical forces are key to the regulation of cascades of molecular signals. Alterations to this context determine impaired folliculogenesis and decreased oocyte developmental potential, as observed in pathological conditions which are causes of infertility, such as PCOS, endometriosis or POI.
Wider implications: The knowledge of these mechanisms and the rules that govern them lay a sound basis to explain how follicles recruitment and growth are modulated, and stimulate insights to develop, in clinical practice, strategies to improve follicular recruitment and oocyte competence, particularly for pathologies like PCOS, endometriosis and POI.
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.