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首页> 外文期刊>Tissue engineering, Part C. Methods >Mimicking Metastases Including Tumor Stroma: A New Technique to Generate a Three-Dimensional Colorectal Cancer Model Based on a Biological Decellularized Intestinal Scaffold
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Mimicking Metastases Including Tumor Stroma: A New Technique to Generate a Three-Dimensional Colorectal Cancer Model Based on a Biological Decellularized Intestinal Scaffold

机译:模仿包括肿瘤基质的转移:一种新的基于生物脱细胞肠道支架产生三维结肠直肠癌模型的新技术

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Tumor models based on cancer cell lines cultured two-dimensionally (2D) on plastic lack histological complexity and functionality compared to the native microenvironment. Xenogenic mouse tumor models display higher complexity but often do not predict human drug responses accurately due to species-specific differences. We present here a three-dimensional (3D) in vitro colon cancer model based on a biological scaffold derived from decellularized porcine jejunum (small intestine submucosa+mucosa, SISmuc). Two different cell lines were used in monoculture or in coculture with primary fibroblasts. After 14 days of culture, we demonstrated a close contact of human Caco2 colon cancer cells with the preserved basement membrane on an ultrastructural level as well as morphological characteristics of a well-differentiated epithelium. To generate a tissue-engineered tumor model, we chose human SW480 colon cancer cells, a reportedly malignant cell line. Malignant characteristics were confirmed in 2D cell culture: SW480 cells showed higher vimentin and lower E-cadherin expression than Caco2 cells. In contrast to Caco2, SW480 cells displayed cancerous characteristics such as delocalized E-cadherin and nuclear location of beta-catenin in a subset of cells. One central drawback of 2D cultures-especially in consideration of drug testing-is their artificially high proliferation. In our 3D tissue-engineered tumor model, both cell lines showed decreased numbers of proliferating cells, thus correlating more precisely with observations of primary colon cancer in all stages (UICC I-IV). Moreover, vimentin decreased in SW480 colon cancer cells, indicating a mesenchymal to epithelial transition process, attributed to metastasis formation. Only SW480 cells cocultured with fibroblasts induced the formation of tumor-like aggregates surrounded by fibroblasts, whereas in Caco2 cocultures, a separate Caco2 cell layer was formed separated from the fibroblast compartment beneath. To foster tissue generation, a bioreactor was constructed for dynamic culture approaches. This induced a close tissue-like association of cultured tumor cells with fibroblasts reflecting tumor biopsies. Therapy with 5-fluorouracil (5-FU) was effective only in 3D coculture. In conclusion, our 3D tumor model reflects human tissue-related tumor characteristics, including lower tumor cell proliferation. It is now available for drug testing in metastatic context-especially for substances targeting tumor-stroma interactions.
机译:基于癌细胞系的肿瘤模型培养二维(2D)对天然微环境相比缺乏组织学复杂性和功能性。异种小鼠肿瘤模型显示出更高的复杂性,但由于物种特异性差异,通常不会准确预测人类药物反应。我们在这里介绍一种基于生物支架的三维(3D)体外结肠癌模型,该模子基于生物支架衍生自脱细胞猪Jejunum(小肠粘膜下颌粘膜,Sismuc)。用原发性成纤维细胞在单殖民栽培中或共培育中使用两条不同的细胞系。经过14天的培养后,我们证明了人CaCO 2结肠癌细胞与保存的基底膜在超微结构水平以及良好分化的上皮的形态特征中紧密接触。为了产生组织工程肿瘤模型,我们选择了据报道的恶性细胞系的人SW480结肠癌细胞。在2D细胞培养中证实了恶性特性:SW480细胞显示出比CaCO 2细胞更高的Vimentin和较低的E-Cadherin表达。与CaCO 2相反,SW480细胞显示癌症特征,例如β-连环蛋白的近代e-cadherin和核定位在细胞的子集中。 2D培养物的一个中心缺点 - 特别是考虑到药物检测 - 它们是其人工高的增殖。在我们的3D组织工程肿瘤模型中,两种细胞系显示出降低的细胞数量降低,从而在所有阶段(UICC I-IV)中的原发性结肠癌的观察结果更精确地相关。此外,在SW480结肠癌细胞中降低了Vimentin,表明对上皮过渡过程的间充质转发过程,归因于转移形成。只有与成纤维细胞共同化的SW480细胞诱导形成由成纤维细胞包围的肿瘤样聚集体,而在CaCO 2培养物中,将单独的CaCO 2细胞层与下方的成纤维细胞分离。为了促进组织产生,构建生物反应器以用于动态培养方法。这诱导了培养的肿瘤细胞与反射肿瘤活组织检查的成纤维细胞的培养肿瘤细胞的紧密组织吻合。用5-氟尿嘧啶(5-FU)的治疗仅在3D共培养中有效。总之,我们的3D肿瘤模型反映了人类组织相关的肿瘤特征,包括肿瘤细胞增殖。现在可以在转移性上下文中进行药物检测 - 尤其适用于靶向肿瘤基质相互作用的物质。

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    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    IGB Fraunhofer Inst Interfacial Engn &

    Biotechnol Translat Ctr Wurzburg Regenerat Therapies Oncol;

    Univ Wurzburg Univ Hosp Dept Surg Mol Oncol &

    Immunol 1 Wurzburg Germany;

    Univ Wurzburg Univ Hosp Dept Surg Mol Oncol &

    Immunol 1 Wurzburg Germany;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

    Univ Wurzburg Univ Hosp Inst Tissue Engn &

    Regenerat Med TERM Rontgenring 11 D-97070 Wurzburg;

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  • 正文语种 eng
  • 中图分类 人体形态学;
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