利用人子宫肌瘤和子宫肌瘤干细胞衍生的三维类器官作为了解子宫肌瘤病理生理的稳健模型系统。

IF 5.9 1区 生物学 Q2 CELL BIOLOGY
Mervat M Omran, Somayeh Vafaei, Samar Alkhrait, Farzana Liakath Ali, Maria Victoria Bariani, Tao Bai, Winston E Thompson, Qiwei Yang, Mohamed Ali, Ayman Al-Hendy
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引用次数: 0

摘要

子宫肌瘤(UFs)是影响育龄妇女最常见的妇科良性肿瘤。本研究旨在通过利用源自人类子宫肌瘤干细胞的三维类器官模型来模拟这些肿瘤的体内行为,加深对UFs复杂病因学的理解。将分离的SCs在确定的培养体系中培养7天以上。进行免疫组织化学、免疫荧光、类器官硬度、RNA测序,并采用RT-PCR评估差异基因表达。衍生的类器官显示出不同的细胞群,包括干细胞、平滑肌和成纤维细胞。胶原蛋白和纤维连接蛋白表达显示过度的ECM沉积。我们证实,我们的类器官表达雌激素受体的模式与相应组织相似,并且对类固醇激素有反应。有趣的是,我们揭示了来自不同种族群体的类器官中ECM积累的显著种族差异。理论上,这种增强的ECM沉积可以增强组织刚度,正如杨氏模量所评估的那样。此外,我们的研究表明,在使用维生素D3和多骨化醇治疗后,纤维化标志物显著降低。此外,环境邻苯二甲酸盐的促肌瘤作用进一步阐明了导致UF病理的潜在因素。3D类器官模型可以作为一个强大的平台来研究UFs的潜在分子机制,除了为潜在的治疗干预提供宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilising Human Myometrial and Uterine Fibroid Stem Cell-Derived Three Dimentional Organoids as a Robust Model System for Understanding the Pathophysiology of Uterine Fibroids.

Uterine fibroids (UFs) are the most common benign gynecologic tumours affecting women of reproductive age. This study aims to deepen the understanding of UFs complex aetiology through harnessing the power of 3D organoid models derived from human myometrial stem cells to emulate the in vivo behaviour of these tumours. Isolated SCs were cultured over 7 days under a defined culture system. Immunohistochemistry, Immunofluorescence, organoid stiffness, RNA Sequencing was conducted, and differential gene expression was assessed using RT-PCR. The derived organoids exhibited diverse populations of cells, including stem cells, smooth muscle, and fibroblasts. Excessive ECM deposition was shown via Collagen and Fibronectin expression. We confirmed that our organoids expressed oestrogen receptor in a pattern similar to that in their corresponding tissue, as well as responded to steroid hormone. Interestingly, we revealed significant racial disparities in ECM accumulation within organoids derived from different racial groups. This augmented ECM deposition is theorised to enhance tissue stiffness, as assessed using Young's modulus. Additionally, our research demonstrated significant decreases in fibrotic markers upon treatment with Vitamin D3 and Doxercalciferol. Furthermore, the pro-fibroid effects of environmental phthalates further elucidate the potential factors contributing to UF pathology. The 3D organoid model can serve as a robust platform to study the underlying molecular mechanisms of UFs, besides offering invaluable insights for potential therapeutic interventions.

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来源期刊
Cell Proliferation
Cell Proliferation 生物-细胞生物学
CiteScore
14.80
自引率
2.40%
发文量
198
审稿时长
1 months
期刊介绍: Cell Proliferation Focus: Devoted to studies into all aspects of cell proliferation and differentiation. Covers normal and abnormal states. Explores control systems and mechanisms at various levels: inter- and intracellular, molecular, and genetic. Investigates modification by and interactions with chemical and physical agents. Includes mathematical modeling and the development of new techniques. Publication Content: Original research papers Invited review articles Book reviews Letters commenting on previously published papers and/or topics of general interest By organizing the information in this manner, readers can quickly grasp the scope, focus, and publication content of Cell Proliferation.
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