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在含有源自人体组织的子宫内膜类器官的微流控装置中形成子宫内膜上皮单层。

Formation of an endometrial epithelial monolayer in a microfluidic device with human tissue-derived endometrial organoids.

作者信息

Shin Seung-Cheol, Hahm Yale, Jeong Yeju, Kim Yup, Park Junsik, Yang Ji Hun, Kim Jin-A, Won Jihee, Chung Seok, Lee Jung-Yun

机构信息

KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul, Republic of Korea.

School of Mechanical Engineering, Korea University, Seoul, Republic of Korea.

出版信息

Lab Chip. 2026 Feb 17;26(4):830-841. doi: 10.1039/d5lc00278h.

Abstract

The endometrium is the uterine lining that supports implantation and pregnancy. Existing systems only partly capture epithelial structure and function. We built a microfluidic model of the human endometrial epithelium using patient-derived organoids and defined a parameterized device and ECM conditions that yield a stable, polarized monolayer on chip. We specify the geometry, surface treatments, and collagen-based hydrogel or coating conditions, and we link these parameters to epithelial morphology and barrier integrity readouts. The epithelial layer maintains histologic features and endometrium-relevant markers and shows hormone-responsive transcript profiles. We quantify donor-to-donor variability across two donors and use it as a design constraint for reproducible culture. Because stromal and immune components shape the reproductive microenvironment, we will extend this platform to modular multicellular co-cultures that incorporate these elements.

摘要

子宫内膜是支持着床和妊娠的子宫内衬。现有的系统只能部分捕捉上皮结构和功能。我们使用患者来源的类器官构建了人类子宫内膜上皮的微流控模型,并定义了一个参数化装置和细胞外基质条件,以在芯片上产生稳定的极化单层。我们指定了几何形状、表面处理以及基于胶原蛋白的水凝胶或涂层条件,并将这些参数与上皮形态和屏障完整性读数联系起来。上皮层保持组织学特征和与子宫内膜相关的标志物,并显示出激素反应性转录谱。我们量化了两个供体之间的供体间变异性,并将其用作可重复培养的设计约束。由于基质和免疫成分塑造了生殖微环境,我们将把这个平台扩展到包含这些元素的模块化多细胞共培养。

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