Landberg Göran, Fitzpatrick Paul, Isakson Pauline, Jonasson Emma, Karlsson Joakim, Larsson Erik, Svanström Andreas, Rafnsdottir Svanheidur, Persson Emma, Gustafsson Anna, Andersson Daniel, Rosendahl Jennifer, Petronis Sarunas, Ranji Parmida, Gregersson Pernilla, Magnusson Ylva, Håkansson Joakim, Ståhlberg Anders
Department of Laboratory Medicine, Institute of Biomedicine, Sahlgrenska Academy, Sahlgrenska Cancer Center, University of Gothenburg, SE-41390, Gothenburg, Sweden.
Department of Laboratory Medicine, Institute of Biomedicine, Sahlgrenska Academy, Sahlgrenska Cancer Center, University of Gothenburg, SE-41390, Gothenburg, Sweden.
Biomaterials. 2020 Mar;235:119705. doi: 10.1016/j.biomaterials.2019.119705. Epub 2019 Dec 23.
Tumor cells interact with the microenvironment that specifically supports and promotes tumor development. Key components in the tumor environment have been linked to various aggressive cancer features and can further influence the presence of subpopulations of cancer cells with specific functions, including cancer stem cells and migratory cells. To model and further understand the influence of specific microenvironments we have developed an experimental platform using cell-free patient-derived scaffolds (PDSs) from primary breast cancers infiltrated with standardized breast cancer cell lines. This PDS culture system induced a series of orchestrated changes in differentiation, epithelial-mesenchymal transition, stemness and proliferation of the cancer cell population, where an increased cancer stem cell pool was confirmed using functional assays. Furthermore, global gene expression profiling showed that PDS cultures were similar to xenograft cultures. Mass spectrometry analyses of cell-free PDSs identified subgroups based on their protein composition that were linked to clinical properties, including tumor grade. Finally, we observed that an induction of epithelial-mesenchymal transition-related genes in cancer cells growing on the PDSs were significantly associated with clinical disease recurrences in breast cancer patients. Patient-derived scaffolds thus mimics in vivo-like growth conditions and uncovers unique information about the malignancy-inducing properties of tumor microenvironment.
肿瘤细胞与特定支持和促进肿瘤发展的微环境相互作用。肿瘤环境中的关键成分与各种侵袭性癌症特征相关,并可进一步影响具有特定功能的癌细胞亚群的存在,包括癌症干细胞和迁移细胞。为了模拟并进一步了解特定微环境的影响,我们利用来自原发性乳腺癌的无细胞患者来源支架(PDS)开发了一个实验平台,并将标准化乳腺癌细胞系浸润其中。这种PDS培养系统在癌细胞群体的分化、上皮-间质转化、干性和增殖方面诱导了一系列精心编排的变化,通过功能分析证实了癌症干细胞池的增加。此外,全基因表达谱分析表明,PDS培养物与异种移植培养物相似。对无细胞PDS进行质谱分析,根据其蛋白质组成鉴定出与临床特性(包括肿瘤分级)相关的亚组。最后,我们观察到在PDS上生长的癌细胞中上皮-间质转化相关基因的诱导与乳腺癌患者的临床疾病复发显著相关。因此,患者来源的支架模拟了体内样生长条件,并揭示了有关肿瘤微环境恶性诱导特性的独特信息。