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用于模拟哺乳动物着床的生物工程组织策略。

Bioengineering-tissue strategies to model mammalian implantation .

作者信息

Pennarossa Georgia, Arcuri Sharon, Zmijewska Agata, Orini Elena, Gandolfi Fulvio, Brevini Tiziana A L

机构信息

Laboratory of Biomedical Embryology and Tissue Engineering, Department of Veterinary Medicine and Animal Science, Università Degli Studi di Milano, Lodi, Italy.

Department of Animal Anatomy and Physiology, Faculty of Biology and Biotechnology, University of Warmia and Mazury in Olsztyn, Olsztyn, Poland.

出版信息

Front Bioeng Biotechnol. 2024 Jul 26;12:1430235. doi: 10.3389/fbioe.2024.1430235. eCollection 2024.

Abstract

During mammalian implantation, complex and well-orchestrated interactions between the trophectoderm of implanting blastocysts and the maternal endometrium lead to a successful pregnancy. On the other hand, alteration in endometrium-blastocyst crosstalk often causes implantation failure, pregnancy loss, and complications that result in overall infertility. In domestic animals, this represents one of the major causes of economic losses and the understanding of the processes taking place during the early phases of implantation, in both healthy and pathological conditions, is of great importance, to enhance livestock system efficiency. Here we develop highly predictive and reproducible functional tridimensional (3D) models able to mimic the two main actors that play a key role at this developmental stage: the blastocyst and the endometrium. In particular, we generate a 3D endometrial model by co-culturing primary epithelial and stromal cells, isolated from sow uteri, onto highly porous polystyrene scaffolds. In parallel, we chemically reprogram porcine adult dermal fibroblasts and encapsulate them into micro-bioreactors to create trophoblast (TR) spheroids. Finally, we combine the generated artificial endometrium with the TR spheroids to model mammalian implantation and mimic the embryo-maternal interactions. The protocols here described allow the generation of reproducible and functional 3D models of both the maternal compartment as well as the implanting embryo, able to recreate the architecture and physiology of the two tissues . We suggest that these models can find useful applications to further elucidate early implantation mechanisms and to study the complex interactions between the maternal tissue and the developing embryos.

摘要

在哺乳动物着床过程中,着床囊胚的滋养外胚层与母体子宫内膜之间复杂且精心编排的相互作用会促成成功妊娠。另一方面,子宫内膜与囊胚之间的串扰改变通常会导致着床失败、妊娠丢失以及引发导致整体不孕的并发症。在家畜中,这是经济损失的主要原因之一,了解在健康和病理状况下着床早期发生的过程对于提高畜牧系统效率至关重要。在此,我们开发了高度可预测且可重复的功能性三维(3D)模型,该模型能够模拟在这一发育阶段起关键作用的两个主要参与者:囊胚和子宫内膜。具体而言,我们通过将从母猪子宫分离出的原代上皮细胞和基质细胞共培养在高度多孔的聚苯乙烯支架上,生成了一个3D子宫内膜模型。同时,我们对猪成年真皮成纤维细胞进行化学重编程,并将它们封装到微型生物反应器中以创建滋养层(TR)球体。最后,我们将生成的人工子宫内膜与TR球体相结合,以模拟哺乳动物着床并模仿胚胎与母体之间的相互作用。本文所述的方案能够生成母体部分以及着床胚胎的可重复且功能性的3D模型,能够重现这两种组织的结构和生理功能。我们认为,这些模型可用于进一步阐明早期着床机制,并研究母体组织与发育中胚胎之间的复杂相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ccb/11310004/fa5f44f32459/fbioe-12-1430235-g001.jpg

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