首页> 外文期刊>Neoplasia: an international journal for oncology research >Three Dimensional Mixed-Cell Spheroids Mimic Stroma-Mediated Chemoresistance and Invasive Migration in hepatocellular carcinoma
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Three Dimensional Mixed-Cell Spheroids Mimic Stroma-Mediated Chemoresistance and Invasive Migration in hepatocellular carcinoma

机译:肝细胞癌中的三维混合细胞球体模拟间质介导的化学抗性和侵袭性迁移。

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Interactions between cancer cells and cancer-associated fibroblasts (CAFs) within the tumor microenvironment (TME) play an important role in promoting the profibrotic microenvironment and epithelial-mesenchymal transition (EMT), resulting in tumor progression and drug resistance in hepatocellular carcinoma (HCC). In the present study, we developed a mixed-cell spheroid model using Huh-7 HCC cells and LX-2 stellate cells to simulate the in vivo tumor environment with respect to tumor-CAF interactions. Spheroids were cultured from cancer cells alone (monospheroids) or as a mixture (mixed-cell spheroids) in ultra-low-attachment plates. Compact, well-mixed, and stroma-rich mixed-cell spheroids were successfully established with heterotypic cell-cell contacts shown by the presence of gap junctions and desmosomes. Mixed-cell spheroids showed enhanced expression of collagen type-I (Col‐I) and pro‐fibrotic factors such as, transforming growth factor beta1 (TGF-β1), and connective tissue growth factor (CTGF) compared to the levels expressed in mono-spheroids. The EMT phenotype was evident in mixed-cell spheroids as shown by the altered expression of E-cadherin and vimentin. Differential drug sensitivity was observed in mixed-cell spheroids, and only sorafenib and oxaliplatin showed dose-dependent antiproliferative effects. Simultaneous treatment with TGF-β inhibitors further improved sorafenib efficacy in the mixed-cell spheroids, indicating the involvement of TGF-β in the mechanism of sorafenib resistance. In 3D matrix invasion assay, mixed-cell spheroids exhibited fibroblast-led collective cell movement. Overall, our results provide evidence that mixed-cell spheroids formed with Huh-7 and LX-2 cells well represent HCC tumors and their TME in vivo and hence are useful in studying tumor-stroma interactions as mechanisms associated with drug resistance and increased cell motility.
机译:肿瘤微环境(TME)中癌细胞与癌症相关成纤维细胞(CAF)之间的相互作用在促进纤维化微环境和上皮-间质转化(EMT)中起重要作用,从而导致肝细胞癌(HCC)的肿瘤进展和耐药性。在本研究中,我们开发了使用Huh-7 HCC细胞和LX-2星状细胞的混合细胞球体模型,以针对肿瘤-CAF相互作用模拟体内肿瘤环境。在超低附着平板中仅从癌细胞(单球体)或作为混合物(混合细胞球体)培养球体。通过间隙连接和桥粒的存在,成功地建立了具有异型细胞接触的紧密,充分混合和富含基质的混合细胞球体。与单细胞表达的水平相比,混合细胞球体显示I型胶原(Col-I)和促纤维化因子(如转化生长因子β1(TGF-β1)和结缔组织生长因子(CTGF))的表达增强。 -球体。 EMT表型在混合细胞球体中很明显,如E-钙粘蛋白和波形蛋白表达的改变所表明的。在混合细胞球体中观察到了不同的药物敏感性,只有索拉非尼和奥沙利铂显示出剂量依赖性的抗增殖作用。 TGF-β抑制剂的同时治疗进一步提高了索拉非尼在混合细胞球体中的功效,表明TGF-β参与了索拉非尼耐药机制。在3D矩阵入侵检测中,混合细胞球体显示出成纤维细胞引导的集体细胞运动。总体而言,我们的结果提供了证据,证明与Huh-7和LX-2细胞形成的混合细胞球体很好地代表了HCC肿瘤及其体内TME,因此可作为与耐药性和细胞运动性增强相关的机制用于研究肿瘤-基质相互作用。

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