Discover this podcast and so much more

Podcasts are free to enjoy without a subscription. We also offer ebooks, audiobooks, and so much more for just $11.99/month.

Human receptive endometrial organoid for deciphering the implantation window

Human receptive endometrial organoid for deciphering the implantation window

FromPaperPlayer biorxiv cell biology


Human receptive endometrial organoid for deciphering the implantation window

FromPaperPlayer biorxiv cell biology

ratings:
Length:
20 minutes
Released:
Jul 28, 2023
Format:
Podcast episode

Description

Link to bioRxiv paper:
http://biorxiv.org/cgi/content/short/2023.07.27.550771v1?rss=1

Authors: Zhao, H., Wu, K., Chen, Z.-J., Zhang, Y., Zhao, R., Yang, C., Song, J., Liu, P., Li, Y., Liu, B., Li, T., Yin, C., Lu, M., Hou, Z., Zhang, C.

Abstract:
Human endometrial receptivity is a critical determinant of pregnancy success; however, in vivo studies of its features and regulation are particularly challenging due to ethical restriction. Recently,the development of human endometrial organoids has provided a powerful model to examine this intricate biological process. In this study, we established a specialized human window-of-implantation (WOI) endometrial organoid system that mimics the in vivo receptive endometrium.The endometrial organoid recapitulates not only the structural attributes of glands and stroma, but also the in vivo endometrium's cell types at the single-cell level. Furthermore, the WOI endometrial organoid exhibits the features of in vivo implantation endometrium such as hormone responsiveness, secretory functions, and distinctive implantation window hallmarks, including decidualization, extracellular matrix (ECM) remodeling, pinopode formation, cilia generation and metabolism. This in vitro model also effectively demonstrates the process of proliferation-secretory transformation, ciliary epithelium differentiation, and epithelial-mesenchymal transition (EMT). As such, WOI organoids hold great promise as a robust platform to unravel the intricate mechanisms governing endometrial receptivity regulation, maternal-fetal interactions, and associated diseases, ultimately driving impactful advancements in the field.

Copy rights belong to original authors. Visit the link for more info

Podcast created by Paper Player, LLC
Released:
Jul 28, 2023
Format:
Podcast episode

Titles in the series (100)

Audio versions of bioRxiv and medRxiv paper abstracts