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Tumorigenic potential is restored during differentiation in fusion-reprogrammed cancer cells

机译:在融合重编程的癌细胞分化过程中恢复了致瘤潜力

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Detailed understanding of the mechanistic steps underlying tumor initiation and malignant progression is critical for insights of potentially novel therapeutic modalities. Cellular reprogramming is an approach of particular interest because it can provide a means to reset the differentiation state of the cancer cells and to revert these cells to a state of non-malignancy. Here, we investigated the relationship between cellular differentiation and malignant progression by the fusion of four independent mouse cancer cell lines from different tissues, each with differing developmental potentials, to pluripotent mouse embryonic stem (ES) cells. Fusion was accompanied by loss of differentiated properties of the four parental cancer cell lines and concomitant emergence of pluripotency, demonstrating the feasibility to reprogram the malignant and differentiative properties of cancer cells. However, the original malignant and differentiative phenotypes re-emerge upon withdrawal of the fused cells from the embryonic environment in which they were maintained. cDNA array analysis of the malignant hepatoma progression implicated a role for Foxa1, and silencing Foxa1 prevented the re-emergence of malignant and differentiation-associated gene expression. Our findings support the hypothesis that tumor progression results from deregulation of stem cells, and our approach provides a strategy to analyze possible mechanisms in the cancer initiation.
机译:对潜在的肿瘤发生和恶性进展的机制步骤的详细了解,对于洞察潜在的新型治疗方式至关重要。细胞重编程是一种特别令人感兴趣的方法,因为它可以提供一种重置癌细胞分化状态并将这些细胞恢复为非恶性状态的手段。在这里,我们通过将来自不同组织的四个独立的小鼠癌细胞系(具有不同的发展潜力)与多能小鼠胚胎干(ES)细胞融合,研究了细胞分化与恶性进展之间的关系。融合伴随着四个亲代癌细胞系的分化特性的丧失以及多能性的同时出现,证明了重新编程癌细胞的恶性和分化特性的可行性。然而,当融合细胞从维持它们的胚胎环境中撤出时,原始的恶性和分化表型又重新出现。恶性肝癌进展的cDNA阵列分析暗示了Foxa1的作用,而沉默Foxa1阻止了恶性和分化相关基因表达的重新出现。我们的发现支持以下假设,即肿瘤进展是由干细胞失调导致的,我们的方法提供了一种分析癌症起始可能机制的策略。

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