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Organ-specific isogenic metastatic breast cancer cell lines exhibit distinct Raman spectral signatures and metabolomes

机译:器官特异性等基因转移性乳腺癌细胞系表现出独特的拉曼光谱特征和代谢组

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摘要

Molecular characterization of organ-specific metastatic lesions, which distinguish them from the primary tumor, will provide a better understanding of tissue specific adaptations that regulate metastatic progression. Using an orthotopic xenograft model, we have isolated isogenic metastatic human breast cancer cell lines directly from organ explants that are phenotypically distinct from the primary tumor cell line. Label-free Raman spectroscopy was used and informative spectral bands were ascertained as differentiators of organ-specific metastases as opposed to the presence of a single universal marker. Decision algorithms derived from the Raman spectra unambiguously identified these isogenic cell lines as unique biological entities – a finding reinforced through metabolomic analyses that indicated tissue of origin metabolite distinctions between the cell lines. Notably, complementarity of the metabolomics and Raman datasets was found. Our findings provide evidence that metastatic spread generates tissue-specific adaptations at the molecular level within cancer cells, which can be differentiated with Raman spectroscopy.
机译:器官特异性转移性病变的分子特征将其与原发性肿瘤区分开,可以更好地了解调节转移过程的组织特异性适应性。使用原位异种移植模型,我们从表型与原发性肿瘤细胞系明显不同的器官外植体中直接分离了等基因转移性人乳腺癌细胞系。使用无标记拉曼光谱法,确定信息性谱带作为器官特异性转移的区别剂,而不是单个通用标记物。从拉曼光谱得出的决策算法明确地将这些等基因细胞系鉴定为独特的生物实体,这一发现通过代谢组学分析得到了加强,该分析表明了细胞系之间的起源代谢产物区别。值得注意的是,发现了代谢组学和拉曼数据集的互补性。我们的发现提供了证据,即转移性扩散会在癌细胞内的分子水平上产生组织特异性适应,这可以通过拉曼光谱法进行区分。

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