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新型人源化子宫内膜的构建,可对 28 天激素治疗产生反应。

Development of a novel human recellularized endometrium that responds to a 28-day hormone treatment.

机构信息

Division of Reproductive Science in Medicine, Department of Obstetrics and Gynecology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois, USA.

Department of Medicinal Chemistry and Pharmacognosy, University of Illinois at Chicago, Illinois, USA.

出版信息

Biol Reprod. 2017 May 1;96(5):971-981. doi: 10.1093/biolre/iox039.

Abstract

Three-dimensional (3D) in vitro models have been established to study the physiology and pathophysiology of the endometrium. With emerging evidence that the native extracellular matrix (ECM) provides appropriate cues and growth factors essential for tissue homeostasis, we describe, a novel 3D endometrium in vitro model developed from decellularized human endometrial tissue repopulated with primary endometrial cells. Analysis of the decellularized endometrium using mass spectrometry revealed an enrichment of cell adhesion molecules, cytoskeletal proteins, and ECM proteins such as collagen IV and laminin. Primary endometrial cells within the recellularized scaffolds proliferated and remained viable for an extended period of time in vitro. In order to evaluate the hormonal response of cells within the scaffolds, the recellularized scaffolds were treated with a modified 28-day hormone regimen to mimic the human menstrual cycle. At the end of 28 days, the cells within the endometrial scaffold expressed both estrogen and progesterone receptors. In addition, decidualization markers, IGFBP-1 and prolactin, were secreted upon addition of dibutyryl cyclic AMP indicative of a decidualization response. This 3D model of the endometrium provides a new experimental tool to study endometrial biology and drug testing.

摘要

三维(3D)体外模型已被建立用于研究子宫内膜的生理学和病理生理学。有新的证据表明,天然细胞外基质(ECM)提供了适当的线索和生长因子,对于组织稳态至关重要,我们描述了一种从去细胞化的人子宫内膜组织中开发的新型 3D 子宫内膜体外模型,该模型用原代子宫内膜细胞重新填充。使用质谱分析对去细胞化的子宫内膜进行分析,发现富含细胞黏附分子、细胞骨架蛋白和 ECM 蛋白,如胶原蛋白 IV 和层粘连蛋白。在重新填充的支架中的原代子宫内膜细胞增殖,并在体外长时间保持活力。为了评估支架内细胞的激素反应,用改良的 28 天激素方案处理重新填充的支架,以模拟人类月经周期。在 28 天后,子宫内膜支架内的细胞表达雌激素和孕激素受体。此外,加入二丁酰环 AMP 后,蜕膜化标志物 IGFBP-1 和催乳素被分泌,表明存在蜕膜化反应。这种子宫内膜的 3D 模型为研究子宫内膜生物学和药物测试提供了新的实验工具。

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