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Enhanced detection and comprehensive in situ phenotypic characterization of circulating and disseminated heteroploid epithelial and glioma tumor cells

机译:增强的循环和弥散性异倍体上皮和神经胶质瘤肿瘤细胞的检测和综合原位表型表征

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摘要

Conventional strategy of anti-EpCAM capture and immunostaining of cytokeratins (CKs) to detect circulating tumor cells (CTCs) is limited by highly heterogeneous and dynamic expression or absence of EpCAM and/or CKs in CTCs. In this study, a novel integrated cellular and molecular approach of subtraction enrichment (SE) and immunostaining-FISH (iFISH) was successfully developed. Both large or small size CTCs and circulating tumor microemboli (CTM) in various biofluid samples including cerebrospinal fluid (CSF) of cancer patients and patient-derived-xenograft (PDX) mouse models were efficiently enriched and comprehensively identified and characterized by SE-iFISH. Non-hematopoietic CTCs with heteroploid chromosome 8 were detected in 87–92% of lung, esophageal and gastric cancer patients. Characterization of CTCs performed by CK18-iFISH showed that CK18, the dual epithelial marker and tumor biomarker, was strong positive in only 14% of lung and 24% of esophageal CTCs, respectively. Unlike conventional methodologies restricted only to the large and/or both EpCAM and CK positive CTCs, SE-iFISH enables efficient enrichment and performing in situ phenotypic and karyotypic identification and characterization of the highly heterogeneous CTC subtypes classified by both chromosome ploidy and the expression of various tumor biomarkers. Each CTC subtype may possess distinct clinical significance relative to tumor metastasis, relapse, therapeutic drug sensitivity or resistance, etc.
机译:抗EpCAM捕获和细胞角蛋白(CK)免疫染色以检测循环肿瘤细胞(CTC)的常规策略受到CTC中EpCAM和/或CK高度异质和动态表达或缺失的限制。在这项研究中,成功​​开发了一种新型的整合细胞和分子的减法富集(SE)和免疫染色-FISH(iFISH)方法。 SE-iFISH有效地丰富和全面鉴定和表征了各种生物流体样品中的大,小号CTC和循环肿瘤微栓塞(CTM),包括癌症患者的脑脊液(CSF)和患者来源的异种移植(PDX)小鼠模型。在肺癌,食道癌和胃癌患者中,有87–92%的人检出了具有8号异源染色体的非造血CTC。 CK18-iFISH对CTC的鉴定表明,双上皮标志物和肿瘤生物标志物CK18分别仅在14%的肺和24%的食管CTC中呈强阳性。与仅限于大型和/或EpCAM和CK阳性CTC的常规方法不同,SE-iFISH能够有效富集并原位进行表型和核型鉴定,并通过染色体倍性和各种表达方式对高度异质的CT​​C亚型进行表征肿瘤生物标志物。每种CTC亚型在肿瘤转移,复发,治疗药物敏感性或耐药性等方面可能具有独特的临床意义。

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