用空间转录组学解剖哺乳动物生殖。

IF 14.8 1区 医学 Q1 OBSTETRICS & GYNECOLOGY Human Reproduction Update Pub Date : 2023-11-02 DOI:10.1093/humupd/dmad017
Xin Zhang, Qiqi Cao, Shreya Rajachandran, Edward J Grow, Melanie Evans, Haiqi Chen
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引用次数: 0

摘要

背景:哺乳动物的生殖需要两种特殊细胞的融合:卵母细胞和精子。除了产生配子外,生殖系统还为胚胎的适当发育提供了环境。解读生殖系统需要了解每种细胞类型的功能和细胞间的相互作用。最近的单细胞组学技术为男性和女性生殖系统的离散细胞群体中的基因调控网络提供了见解。然而,这些方法无法检测配子或胚胎的细胞状态是如何通过与天然组织环境中相邻体细胞的相互作用来调节的,这是由于组织分离。新兴的空间组学技术通过保留待分析细胞的空间背景来应对这一挑战。这些技术有可能彻底改变我们对哺乳动物繁殖的理解。目的和原理:我们旨在回顾最先进的空间转录组学(ST)技术,重点强调它们在配子发生、胚胎发生和生殖病理学的背景下帮助揭示的关于哺乳动物生殖系统的新生物学见解。我们还旨在讨论将ST技术应用于生殖研究的当前挑战,并窥探空间组学领域在未来几年可以为生殖界提供什么。搜索方法:使用PubMed数据库搜索同行评议的研究文章和评论,使用以下术语的组合:“空间组学”、“生育能力”、“生殖”、“配子发生”、“胚胎发生”、《癌症生殖》、“空间转录组学”,“精子发生”,“卵巢”、“子宫”、“宫颈”、“睾丸”和其他与主题领域相关的关键词。对截至2023年4月的所有相关出版物进行了严格评估和讨论。结果:首先,概述了已应用于生殖系统研究的ST技术。讨论并列出了这些技术的基本设计原则以及优点和局限性,以指导研究人员选择最适合自己研究的技术。其次,对ST分析揭示的哺乳动物繁殖,特别是人类繁殖的新生物学见解进行了全面综述。讨论了三个主要主题。第一个主题关注在多个生殖系统中具有特殊功能的具有非随机空间表达模式的基因;第二个主题围绕功能相互作用的细胞类型展开,这些细胞类型通常在生殖组织中空间聚集;第三个主题讨论了生殖系统中的病理状态,这些状态通常与独特的细胞微环境有关。最后,强调了当前应用ST技术研究哺乳动物繁殖的实验和计算挑战,并提供了应对这些挑战的潜在解决方案。讨论了空间组学技术的未来发展方向,以及它们将如何造福于人类生殖领域,包括细胞和组织动力学的捕获、多模式分子图谱和基因扰动的空间表征。更广泛的含义:与单细胞技术一样,空间组学技术在为哺乳动物繁殖提供重要而新颖的见解方面具有巨大的潜力。我们的综述总结了ST技术提供的这些新的生物学见解,同时揭示了未来的发展。我们的综述为生殖生物学家和临床医生提供了ST技术的最新进展。它还可以促进在基础和临床生殖研究中采用尖端的空间技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Dissecting mammalian reproduction with spatial transcriptomics.

Background: Mammalian reproduction requires the fusion of two specialized cells: an oocyte and a sperm. In addition to producing gametes, the reproductive system also provides the environment for the appropriate development of the embryo. Deciphering the reproductive system requires understanding the functions of each cell type and cell-cell interactions. Recent single-cell omics technologies have provided insights into the gene regulatory network in discrete cellular populations of both the male and female reproductive systems. However, these approaches cannot examine how the cellular states of the gametes or embryos are regulated through their interactions with neighboring somatic cells in the native tissue environment owing to tissue disassociations. Emerging spatial omics technologies address this challenge by preserving the spatial context of the cells to be profiled. These technologies hold the potential to revolutionize our understanding of mammalian reproduction.

Objective and rationale: We aim to review the state-of-the-art spatial transcriptomics (ST) technologies with a focus on highlighting the novel biological insights that they have helped to reveal about the mammalian reproductive systems in the context of gametogenesis, embryogenesis, and reproductive pathologies. We also aim to discuss the current challenges of applying ST technologies in reproductive research and provide a sneak peek at what the field of spatial omics can offer for the reproduction community in the years to come.

Search methods: The PubMed database was used in the search for peer-reviewed research articles and reviews using combinations of the following terms: 'spatial omics', 'fertility', 'reproduction', 'gametogenesis', 'embryogenesis', 'reproductive cancer', 'spatial transcriptomics', 'spermatogenesis', 'ovary', 'uterus', 'cervix', 'testis', and other keywords related to the subject area. All relevant publications until April 2023 were critically evaluated and discussed.

Outcomes: First, an overview of the ST technologies that have been applied to studying the reproductive systems was provided. The basic design principles and the advantages and limitations of these technologies were discussed and tabulated to serve as a guide for researchers to choose the best-suited technologies for their own research. Second, novel biological insights into mammalian reproduction, especially human reproduction revealed by ST analyses, were comprehensively reviewed. Three major themes were discussed. The first theme focuses on genes with non-random spatial expression patterns with specialized functions in multiple reproductive systems; The second theme centers around functionally interacting cell types which are often found to be spatially clustered in the reproductive tissues; and the thrid theme discusses pathological states in reproductive systems which are often associated with unique cellular microenvironments. Finally, current experimental and computational challenges of applying ST technologies to studying mammalian reproduction were highlighted, and potential solutions to tackle these challenges were provided. Future directions in the development of spatial omics technologies and how they will benefit the field of human reproduction were discussed, including the capture of cellular and tissue dynamics, multi-modal molecular profiling, and spatial characterization of gene perturbations.

Wider implications: Like single-cell technologies, spatial omics technologies hold tremendous potential for providing significant and novel insights into mammalian reproduction. Our review summarizes these novel biological insights that ST technologies have provided while shedding light on what is yet to come. Our review provides reproductive biologists and clinicians with a much-needed update on the state of art of ST technologies. It may also facilitate the adoption of cutting-edge spatial technologies in both basic and clinical reproductive research.

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来源期刊
Human Reproduction Update
Human Reproduction Update 医学-妇产科学
CiteScore
28.80
自引率
1.50%
发文量
38
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.
期刊最新文献
Defects in mRNA splicing and implications for infertility: a comprehensive review and in silico analysis. Parental conditions, modifiable lifestyle factors, and first trimester growth and development: a systematic review. Fertility in transgender and gender diverse people: systematic review of the effects of gender-affirming hormones on reproductive organs and fertility Functional hypothalamic amenorrhoea and polycystic ovarian morphology: a narrative review about an intriguing association. Celebrating 30 years at Human Reproduction Update.
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