Endothelin-1 receptor blockade impairs invasion patterns in engineered 3D high-grade serous ovarian cancer tumouroids.

IF 6.7 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Clinical science Pub Date : 2024-11-20 DOI:10.1042/CS20240371
Judith Pape, Umber Cheema, Piera Tocci, Rosanna Sestito, Ilenia Masi, Marilena Loizidou, Anna Bagnato, Laura Rosanò
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Abstract

High-grade serous ovarian cancer (HG-SOC), accounting for 70-80% of ovarian cancer deaths, is characterized by a widespread and rapid metastatic nature, influenced by diverse cell types, cell-cell interactions, and acellular components of the tumour microenvironment (TME). Within this tumour type, autocrine and paracrine activation of the endothelin-1 receptors (ET-1R), expressed in tumour cells and stromal elements, drives metastatic progression. The lack of three-dimensional models that faithfully recapitulate the unique HG-SOC TME has been the bottleneck in performing drug screening for personalized medicine. Herein, we developed HG-SOC tumouroids by engineering a dense central artificial cancer mass (ACM) containing HG-SOC cells, nested within a compressed hydrogel recapitulating the stromal compartment comprising type I collagen, laminin, fibronectin, and stromal cells (fibroblasts and endothelial cells). ET-1-stimulated HG-SOC cells in the tumouroids showed an altered migration pattern and formed cellular aggregates, mimicking micrometastases that invaded the stroma. Compared with control cells, ET-1-stimulated tumouroids showed a higher number of invasive bodies, which were reduced by treatment with the dual ET-1 receptor (ET-1R) antagonist macitentan. In addition, ET-1 increased the size of the invading aggregates compared with control cells. This study establishes an experimental 3D multicellular model eligible for mechanical research, investigating the impact of matrix stiffness and TME interactions, which will aid drug screening to guide therapeutic decisions in HG-SOC patients.

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内皮素-1 受体阻断剂会损害工程三维高分化浆液性卵巢癌瘤体的侵袭模式。
高分化浆液性卵巢癌(HG-SOC)占卵巢癌死亡病例的 70-80%,其特点是广泛而快速的转移性,受多种细胞类型、细胞间相互作用以及肿瘤微环境(TME)细胞成分的影响。在这种肿瘤类型中,肿瘤细胞和基质成分中表达的内皮素-1受体(ET-1R)的自分泌和旁分泌激活推动了转移的进展。缺乏能忠实再现独特的 HG-SOC TME 的三维模型一直是进行个性化药物筛选的瓶颈。在此,我们开发了HG-SOC肿瘤,方法是在重现由I型胶原、层粘连蛋白、纤连蛋白和基质细胞(成纤维细胞和内皮细胞)组成的基质区的压缩水凝胶中嵌套含有HG-SOC细胞的致密中央人工癌块(ACM)。肿瘤组织中受 ET-1 刺激的 HG-SOC 细胞显示出改变的迁移模式,并形成细胞聚集,模仿侵入基质的微转移灶。与对照细胞相比,ET-1刺激的肿瘤细胞显示出更多的侵袭体,而用ET-1受体(ET-1R)双拮抗剂马西替坦治疗后,侵袭体的数量减少。此外,与对照细胞相比,ET-1 增加了侵袭聚集体的大小。这项研究建立了一个可用于机械研究的实验性三维多细胞模型,研究了基质硬度和TME相互作用的影响,这将有助于药物筛选,为HG-SOC患者的治疗决策提供指导。
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来源期刊
Clinical science
Clinical science 医学-医学:研究与实验
CiteScore
11.40
自引率
0.00%
发文量
189
审稿时长
4-8 weeks
期刊介绍: Translating molecular bioscience and experimental research into medical insights, Clinical Science offers multi-disciplinary coverage and clinical perspectives to advance human health. Its international Editorial Board is charged with selecting peer-reviewed original papers of the highest scientific merit covering the broad spectrum of biomedical specialities including, although not exclusively: Cardiovascular system Cerebrovascular system Gastrointestinal tract and liver Genomic medicine Infection and immunity Inflammation Oncology Metabolism Endocrinology and nutrition Nephrology Circulation Respiratory system Vascular biology Molecular pathology.
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