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首页> 外文期刊>Biochemical and Biophysical Research Communications >A multicellular 3D heterospheroid model of liver tumor and stromal cells in collagen gel for anti-cancer drug testing
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A multicellular 3D heterospheroid model of liver tumor and stromal cells in collagen gel for anti-cancer drug testing

机译:胶原蛋白凝胶中肝肿瘤和基质细胞的多细胞3D异球形模型用于抗癌药物测试

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Two-dimensional (2D) monolayer cultures are the standard in vitro model for cancer research. However, they fail to recapitulate the three-dimensional (3D) environment and quickly lose their function. In this study, we developed a new 3D multicellular heterospheroid tumor model in a collagen hydrogel culture system that more closely mimics the in vivo tumor microenvironment for anti-cancer drug testing. Three aspects of cancer were chosen to be modeled based on their ability to resist anti-cancer drugs: 3D, multicellularity, and extracellular matrix (ECM) barrier. The hanging drop method and co-culture of liver carcinoma with stromal fibroblasts were used to form controlled and uniform heterospheroids. These heterospheroids were then encapsulated in collagen gel in order to create a 3D model of liver cancer that would act more similarly to in vivo ECM conditions. The 3D heterospheroid tumor model was tested with an anti-cancer drug to determine how each of the above aspects affects drug resistance. The results demonstrate that the 3D heterospheroid model is more resistant to drug over 2D monolayer and homospheroid cultures, indicating stromal fibroblasts and collagen hydrogel culture system provides more resistance to anti-cancer drug. This study will provide useful information toward the development of improved biomimetic tumor models in vitro for cancer research in pre-clinical drug development.
机译:二维(2D)单层培养是癌症研究的标准体外模型。但是,他们无法概括三维(3D)环境并很快失去其功能。在这项研究中,我们在胶原蛋白水凝胶培养系统中开发了一种新的3D多细胞异球形肿瘤模型,该模型可以更紧密地模拟体内肿瘤微环境进行抗癌药物测试。根据癌症的三个抗癌能力,选择了三个方面进行建模:3D,多细胞性和细胞外基质(ECM)屏障。悬滴法和肝癌与间质成纤维细胞的共培养被用来形成受控且均匀的异球体。然后将这些异类球囊封装在胶原蛋白凝胶中,以创建肝癌的3D模型,该模型的作用与体内ECM条件更相似。用抗癌药测试了3D异球体肿瘤模型,以确定上述各个方面如何影响耐药性。结果表明,与2D单层和同卵球形培养相比,3D异球形模型对药物更具抵抗力,表明基质成纤维细胞和胶原水凝胶培养系统对抗癌药物具有更大的抵抗力。这项研究将为临床前药物开发中癌症研究的体外仿生改进肿瘤模型的开发提供有用的信息。

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