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生成游离的正常人类上皮-成纤维细胞球体共培养物。

Generating Free-floating Normal Human Epithelial-Fibroblast Spheroid Co-Cultures.

作者信息

Stasch Lisa Marie, Buchholzki Maja, Ketheeswaranathan Vaanilaa, Sevindik Zehra, Jendrossek Verena, Budeus Bettina, Klein Diana

机构信息

Institute for Cell Biology (Cancer Research), Medical Faculty, University of Duisburg-Essen.

Institute for Cell Biology (Cancer Research), Medical Faculty, University of Duisburg-Essen;

出版信息

J Vis Exp. 2025 Jul 3(221). doi: 10.3791/68440.

Abstract

Three-dimensional (3D) culture systems have become increasingly popular due to their ability to reproduce natural cell properties and architectures, thus mimicking tissue-like structures in vitro. Among these models, the culture of spherical cell aggregates (so-called spheroids) embedded in a semi-solid extracellular matrix (ECM) represents an advanced near-in vivo cell culture model, as it allows for different functional cell states as a result of cell-cell and cell-ECM interactions, as well as oxygen and nutrient gradients. Because spheroids are technically less demanding and relatively inexpensive to obtain, they are frequently used in drug screening and toxicity testing, enabling high-content screening for testing new drugs in the preclinical phase. For this purpose, 3D structures of various tumors are predominantly recreated. At the same time, Matrigel is currently one of the most widely used ECMs and is considered the gold standard in spheroid and organoid cultivation, although this is a 3D matrix based on mouse experiments, the extraction of which- like animal testing in general-is associated with major ethical concerns. Here, we present a matrix-free protocol for direct spheroidal co-cultivation of human bronchial epithelial cells and fibroblasts, which can be considered as an optimized co-cultivation method, especially concerning epithelial-fibroblast communication and interactions within the respective spheroids, without relying on an (animal-based) carrier matrix. By establishing these free-floating epithelial-fibroblastoid spheroid co-cultures as a patient-oriented in vitro platform to model normal (lung) tissue toxicities of cancer therapeutic approaches, not only a reduction in the number of experimental animals but also an adequate and meaningful replacement of corresponding animal experiments can be achieved.

摘要

三维(3D)培养系统因其能够重现天然细胞特性和结构,从而在体外模拟组织样结构而越来越受欢迎。在这些模型中,嵌入半固体细胞外基质(ECM)的球形细胞聚集体(即所谓的球体)培养代表了一种先进的近体内细胞培养模型,因为由于细胞-细胞和细胞-ECM相互作用以及氧气和营养梯度,它允许不同的功能细胞状态。由于球体在技术上要求较低且获取成本相对较低,它们经常用于药物筛选和毒性测试,能够在临床前阶段进行高内涵筛选以测试新药。为此,各种肿瘤的3D结构被大量重建。同时,基质胶是目前使用最广泛的ECM之一,被认为是球体和类器官培养的金标准,尽管这是一种基于小鼠实验的3D基质,其提取——与一般的动物实验一样——存在重大伦理问题。在这里,我们提出了一种用于人支气管上皮细胞和成纤维细胞直接球体共培养的无基质方案,该方案可被视为一种优化的共培养方法,特别是在各自球体中的上皮-成纤维细胞通讯和相互作用方面,而无需依赖(基于动物的)载体基质。通过将这些自由漂浮的上皮-成纤维细胞样球体共培养建立为一个以患者为导向的体外平台,以模拟癌症治疗方法对正常(肺)组织的毒性,不仅可以减少实验动物的数量,还可以充分且有意义地替代相应的动物实验。

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