临床前非人灵长类动物模型中胎盘小叶内结构和功能的磁共振成像。

IF 3.1 2区 生物学 Q2 REPRODUCTIVE BIOLOGY Biology of Reproduction Pub Date : 2024-06-12 DOI:10.1093/biolre/ioae035
Andrew Melbourne, Matthias C Schabel, Anna L David, Victoria H J Roberts
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引用次数: 0

摘要

胎盘在向胎儿输送氧气和一系列营养物质、激素、抗体和其他生化物质,以及排出胎儿血液循环中的二氧化碳和其他废物方面起着至关重要的作用。因此,探究胎盘功能对于评估妊娠期胎儿和母体的健康状况至关重要。虽然充足的血流和氧气输送的核心作用是显而易见的,但由于缺乏研究胎盘结构的最佳成像模式,阻碍了我们对胎盘血管功能的了解。核磁共振成像在这一领域的应用日益广泛,但知识缺口依然存在,需要进一步发展核磁共振成像方法。尤其是在区分母体和胎儿胎盘灌注的能力以及对胎盘各小叶功能的了解方面仍有欠缺。胎盘功能的两个关键决定因素是血流和氧合,开发用于体内评估血流和氧合的无创工具可能带来巨大的临床益处。在此,我们总结了过去十年中在动物模型和人类妊娠研究中开发和应用的一些结构和功能磁共振成像技术。我们将简要讨论这些方法的潜在应用和局限性。它们的结合提供了一种新的对比源,可在小叶水平上分析胎盘的结构和功能。我们概述了胎盘 T2 和 T2* 衰减的生理机制,并设计了一个组织成分如何影响观察到的弛豫特性的模型。我们将这一模型应用于从临床前妊娠非人灵长类动物(NHP)模型中获得的纵向 MRI 数据,为这一方法提供了初步的概念验证数据,该方法可量化跨小叶和小叶间的氧传递和胎盘结构。一旦在更大的非人灵长类动物群中完成验证,这种方法有望提高我们对胎盘功能不全的理解和临床管理水平。
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Magnetic resonance imaging of placental intralobule structure and function in a preclinical nonhuman primate model†.

Although the central role of adequate blood flow and oxygen delivery is known, the lack of optimized imaging modalities to study placental structure has impeded our understanding of its vascular function. Magnetic resonance imaging is increasingly being applied in this field, but gaps in knowledge remain, and further methodological developments are needed. In particular, the ability to distinguish maternal from fetal placental perfusion and the understanding of how individual placental lobules are functioning are lacking. The potential clinical benefits of developing noninvasive tools for the in vivo assessment of blood flow and oxygenation, two key determinants of placental function, are tremendous. Here, we summarize a number of structural and functional magnetic resonance imaging techniques that have been developed and applied in animal models and studies of human pregnancy over the past decade. We discuss the potential applications and limitations of these approaches. Their combination provides a novel source of contrast to allow analysis of placental structure and function at the level of the lobule. We outline the physiological mechanisms of placental T2 and T2* decay and devise a model of how tissue composition affects the observed relaxation properties. We apply this modeling to longitudinal magnetic resonance imaging data obtained from a preclinical pregnant nonhuman primate model to provide initial proof-of-concept data for this methodology, which quantifies oxygen transfer and placental structure across and between lobules. This method has the potential to improve our understanding and clinical management of placental insufficiency once validation in a larger nonhuman primate cohort is complete.

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来源期刊
Biology of Reproduction
Biology of Reproduction 生物-生殖生物学
CiteScore
6.30
自引率
5.60%
发文量
214
审稿时长
1 months
期刊介绍: Biology of Reproduction (BOR) is the official journal of the Society for the Study of Reproduction and publishes original research on a broad range of topics in the field of reproductive biology, as well as reviews on topics of current importance or controversy. BOR is consistently one of the most highly cited journals publishing original research in the field of reproductive biology.
期刊最新文献
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