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首页> 外文期刊>Surgery >Fluorescence-expressing viruses allow rapid identification and separation of rare tumor cells in spiked samples of human whole blood.
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Fluorescence-expressing viruses allow rapid identification and separation of rare tumor cells in spiked samples of human whole blood.

机译:表达荧光的病毒可以快速鉴定和分离人全血加标样品中的稀有肿瘤细胞。

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BACKGROUND: Finding and isolating rare tumor cells in blood allows for diagnosis of disseminated cancer and for molecular profiling to direct the choice of biologic therapy. We explored whether the candidate gene therapy virus NV1066-designed to specifically infect cancer cells and express green fluorescence protein (GFP)-can be used for rapid infection, identification, and isolation of rare circulating tumor cells (CTC) in human whole blood. METHODS: Mixtures of human cancer cell lines and human whole blood were exposed to NV1066 or heat-inactivated virus, incubated, and then examined for GFP expression by fluorescence microscopy and flow cytometry. Fluorescence-assisted cell sorting (FACS) was used to determine the efficiency of virally assisted tumor cell isolation. Sorted cells were subsequently stained for carcinoembryonic antigen (CEA) to determine if cells isolated in this way would maintain sufficient cellular integrity for molecular characterization. RESULTS: In our study, there was 100% specificity for detection of cancer cells. Detection was consistent even at the highest dilution tested (10 cancer cells in 10 ml whole blood). The processing involved simple incubation without the technical demands of immunohistochemistry. FACS allowed for rapid isolation of GFP-expressing cells. Cells isolated by this method can subsequently undergo molecular characterization. CONCLUSION: Oncolytic herpes simplex virus mediated green fluorescence in combination with FACS is a novel technique for the identification and isolation of cancer cells in an experimental model of blood-borne metastases. This procedure is a promising method for improving our diagnosis, staging, and molecular profiling of cancer.
机译:背景:发现和分离血液中的稀有肿瘤细胞可以诊断弥漫性癌症,并进行分子谱分析以指导生物疗法的选择。我们探索了设计用于特异性感染癌细胞并表达绿色荧光蛋白(GFP)的候选基因治疗病毒NV1066-是否可用于快速感染,鉴定和分离人全血中的稀有循环肿瘤细胞(CTC)。方法:将人类癌细胞系和人类全血的混合物暴露于NV1066或热灭活的病毒中,进行孵育,然后通过荧光显微镜和流式细胞术检查GFP的表达。荧光辅助细胞分选(FACS)用于确定病毒辅助肿瘤细胞分离的效率。随后对分选的细胞进行癌胚抗原(CEA)染色,以确定以此方式分离的细胞是否将保持足够的细胞完整性以进行分子鉴定。结果:在我们的研究中,检测癌细胞的特异性为100%。即使在测试的最高稀释度(10 ml全血中有10个癌细胞)下,检测结果也是一致的。该处理涉及简单的孵育,无需免疫组织化学的技术要求。 FACS可以快速分离表达GFP的细胞。通过这种方法分离的细胞可以随后进行分子表征。结论:溶瘤性单纯疱疹病毒介导的绿色荧光与FACS结合是一种在血源性转移实验模型中鉴定和分离癌细胞的新技术。该程序是改善我们对癌症的诊断,分期和分子谱分析的一种有前途的方法。

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