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A novel hypoxia-associated subset of FN1highMITFlow melanoma cells: identification, characterization, and prognostic value

机译:新型缺氧相关的FN1 高 MITF 低黑素瘤细胞亚群:鉴定,表征和预后价值

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In many human cancers, the epithelial-to-mesenchymal transition has an important role in the induction of cancer stem-like cells, and hence, in the causation of intratumoral heterogeneity. This process, also referred to as mesenchymal mimicry, is, however, only poorly understood in melanoma and histological correlation is still lacking. In an immunohistochemical analysis of a large prospective series of 220 primary and metastatic melanomas for the well-known epithelial-to-mesenchymal transition marker FN1, we observed melanoma cells with high FN1 expression in metastases with ischemic necrosis, but rarely or not at all in samples lacking evidence of hypoxia. In a blinded, retrospective series of 82 melanoma metastases with 10-year follow-up, the presence of clusters of these FN1high melanoma cells correlated significantly with shortened melanoma-specific survival, highlighting the prognostic value of their presence. We describe in detail the unique light- and electron-microscopic features of these FN1high melanoma cells, enabling their identification in routinely hematoxylin-and-eosin-stained sections. In addition, by laser microdissection and subsequent gene expression analysis and immunohistochemistry, we highlight their distinctive, molecular phenotype that includes expression of various markers of the epithelial-to-mesenchymal transition (eg, ZEB1) and of melanoma stem-like cells (eg, NGFR), and lack of immunoreactivity for the melanocytic marker MITF. This phenotype could be reproduced in vitro by culturing melanoma cells under hypoxic conditions. Functionally, the hypoxic microenvironment was shown to induce a more migratory and invasive cell type. In conclusion, we identified a novel clinically relevant FN1highMITFlow cell type in melanoma associated with ischemic necrosis, and propose that these cells reside at the crossroad of the epithelial-to-mesenchymal transition and stem-like cell induction, plausibly triggered by the hypoxic environment.
机译:在许多人类癌症中,上皮到间充质的转变在诱导癌症干细胞样细胞中起重要作用,因此在肿瘤内异质性的起因中也起着重要的作用。然而,该过程也称为间充质模仿,但在黑素瘤中只有很少的了解,并且仍缺乏组织学相关性。在对广泛的220个原发性和转移性黑素瘤的前瞻性系列免疫组织化学分析中,我们发现了上皮-间质转化标记FN1,我们观察到FN1表达高的黑素瘤细胞在缺血性坏死转移中,但很少或根本没有。样本缺乏缺氧的证据。在一项为期10年的盲法,回顾性研究中,对82例黑色素瘤转移进行了随访,发现这些FN1高黑色素瘤细胞簇的存在与黑色素瘤特异性生存期缩短显着相关,突出了其存在的预后价值。我们详细描述了这些FN1high黑色素瘤细胞的独特的光学和电子显微镜特征,使其能够在常规的苏木精和曙红染色切片中进行鉴定。此外,通过激光显微切割以及随后的基因表达分析和免疫组织化学,我们强调了它们独特的分子表型,包括上皮-间充质转化(例如ZEB1)和黑色素瘤干细胞(例如, NGFR),并且缺乏针对黑素细胞标记MITF的免疫反应性。通过在缺氧条件下培养黑色素瘤细胞,可以在体外复制这种表型。在功能上,低氧微环境显示出诱导更多的迁移和侵袭性细胞类型。总之,我们在与缺血性坏死相关的黑色素瘤中鉴定了一种新型的临床相关FN1highMITFlow细胞类型,并提出这些细胞位于上皮细胞至间充质转化和干细胞样细胞诱导的交叉路口,这可能是由低氧环境引发的。

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