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乳腺癌循环肿瘤细胞和转移灶中PIK3CA的单细胞突变分析揭示了骨髓来源的培养播散肿瘤细胞中的异质性、不一致性和突变持续性。

Single cell mutational analysis of PIK3CA in circulating tumor cells and metastases in breast cancer reveals heterogeneity, discordance, and mutation persistence in cultured disseminated tumor cells from bone marrow.

作者信息

Deng Glenn, Krishnakumar Sujatha, Powell Ashley A, Zhang Haiyu, Mindrinos Michael N, Telli Melinda L, Davis Ronald W, Jeffrey Stefanie S

机构信息

College of Life Science and Chemistry, Wuhan Donghu University, Wuhan, P, R, China.

出版信息

BMC Cancer. 2014 Jun 19;14:456. doi: 10.1186/1471-2407-14-456.

Abstract

BACKGROUND

Therapeutic decisions in cancer are generally guided by molecular biomarkers or, for some newer therapeutics, primary tumor genotype. However, because biomarkers or genotypes may change as new metastases emerge, circulating tumor cells (CTCs) from blood are being investigated for a role in guiding real-time drug selection during disease progression, expecting that CTCs will comprehensively represent the full spectrum of genomic changes in metastases. However, information is limited regarding mutational heterogeneity among CTCs and metastases in breast cancer as discerned by single cell analysis. The presence of disseminated tumor cells (DTCs) in bone marrow also carry prognostic significance in breast cancer, but with variability between CTC and DTC detection. Here we analyze a series of single tumor cells, CTCs, and DTCs for PIK3CA mutations and report CTC and corresponding metastatic genotypes.

METHODS

We used the MagSweeper, an immunomagnetic separation device, to capture live single tumor cells from breast cancer patients' primary and metastatic tissues, blood, and bone marrow. Single cells were screened for mutations in exons 9 and 20 of the PIK3CA gene. Captured DTCs grown in cell culture were also sequenced for PIK3CA mutations.

RESULTS

Among 242 individual tumor cells isolated from 17 patients and tested for mutations, 48 mutated tumor cells were identified in three patients. Single cell analyses revealed mutational heterogeneity among CTCs and tumor cells in tissues. In a patient followed serially, there was mutational discordance between CTCs, DTCs, and metastases, and among CTCs isolated at different time points. DTCs from this patient propagated in vitro contained a PIK3CA mutation, which was maintained despite morphological changes during 21 days of cell culture.

CONCLUSIONS

Single cell analysis of CTCs can demonstrate genotypic heterogeneity, changes over time, and discordance from DTCs and distant metastases. We present a cautionary case showing that CTCs from any single blood draw do not always reflect metastatic genotype, and that CTC and DTC analyses may provide independent clinical information. Isolated DTCs remain viable and can be propagated in culture while maintaining their original mutational status, potentially serving as a future resource for investigating new drug therapies.

摘要

背景

癌症治疗决策通常由分子生物标志物指导,对于一些新型疗法,则由原发性肿瘤基因型指导。然而,由于生物标志物或基因型可能随着新转移灶的出现而改变,因此正在研究血液中的循环肿瘤细胞(CTC)在疾病进展过程中指导实时药物选择的作用,期望CTC能够全面代表转移灶中基因组变化的全貌。然而,通过单细胞分析识别的乳腺癌CTC和转移灶之间的突变异质性方面的信息有限。骨髓中播散肿瘤细胞(DTC)的存在在乳腺癌中也具有预后意义,但CTC和DTC检测存在差异。在此,我们分析了一系列单个肿瘤细胞、CTC和DTC的PIK3CA突变情况,并报告了CTC及相应转移灶的基因型。

方法

我们使用免疫磁分离装置MagSweeper从乳腺癌患者的原发性和转移性组织、血液及骨髓中捕获活的单个肿瘤细胞。对单个细胞进行PIK3CA基因第9和20外显子的突变筛查。对在细胞培养中生长的捕获DTC也进行PIK3CA突变测序。

结果

在从17例患者中分离并检测突变的242个单个肿瘤细胞中,在3例患者中鉴定出48个突变肿瘤细胞。单细胞分析揭示了CTC与组织中的肿瘤细胞之间的突变异质性。在一名接受连续随访的患者中,CTC、DTC和转移灶之间以及在不同时间点分离的CTC之间存在突变不一致性。该患者的DTC在体外增殖,含有PIK3CA突变,尽管在21天的细胞培养过程中形态发生了变化,但该突变仍得以维持。

结论

对CTC进行单细胞分析可显示基因型异质性、随时间的变化以及与DTC和远处转移灶的不一致性。我们展示了一个警示案例,表明任何一次采血得到的CTC并不总是反映转移灶基因型,并且CTC和DTC分析可能提供独立的临床信息。分离的DTC保持活力,可在培养中增殖,同时保持其原始突变状态,有可能作为未来研究新药物疗法的资源。

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