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首页> 外文期刊>Oncology reports >Establishment of a bioluminescent MDA-MB-231 cell line for human triple-negative breast cancer research
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Establishment of a bioluminescent MDA-MB-231 cell line for human triple-negative breast cancer research

机译:用于人类三阴性乳腺癌研究的生物发光MDA-MB-231细胞系的建立

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摘要

The aim of this study was to establish a bioluminescent MDA-MB-231 cell line stably expressing luciferase and green fluorescent protein for the generation of a xenografted model of human triple-negative breast cancer (TNBC) in nude mice. Lentivirus vectors carrying eGFP, firefly luc2 and neo fusion genes were used to transduce the MDA-MB-231 human TNBC cells in vitro. After 8 weeks of G418 selection, eGFP and luc2 expression was determined using a fluorescence microscope and a Xenogen IVIS200 bioluminescent imaging system, respectively. The MTT, transwell invasion and wound healing assays were performed to confirm whether cellular proliferation, invasion and migration were altered by lentiviral infection. Cells were orthotopically implanted into female BALB/c nude mice to test the sensitivity and stability of reporter gene expression. Growth of the tumors was monitored with the in vivo imaging system once a week until they were large enough for experiments. The tumor tissues were resected for histology, and cancer cells were harvested for culture. The lentivirus-transduced MDA-MB-231 cells could stably express luc2 and eGFP, and the luciferase activity reached 9689 photons/sec/cell. Meanwhile, no significant difference in biological activities was observed between the lentivirus-transduced MDA-MB-231 cells and parental cells. An orthotopically implanted tumor model of human TNBCs was successfully established in BALB/c nude mice. Lentiviruses may be ideal carriers for luciferase genes due to their highly efficient infectivity and stable transgene expression. The modified MDA-MB-231 cell line stably expressing luciferase could be detected, allowing for immediate and sensitive detection of metastasis sites in nude mice. As the eGFP and luc2 combination are superior to single reporter genes in their ability to mark cells in vivo and in vitro, these cells may provide a visualizable, convenient and sensitive platform for research on the mechanisms of metastasis and the development of new antitumor drugs for human TNBC.
机译:这项研究的目的是建立一种稳定表达荧光素酶和绿色荧光蛋白的生物发光MDA-MB-231细胞系,用于在裸鼠中生成人三阴性乳腺癌(TNBC)的异种移植模型。携带eGFP,萤火虫luc2和neo融合基因的慢病毒载体可在体外转导MDA-MB-231人TNBC细胞。选择G418 8周后,分别使用荧光显微镜和Xenogen IVIS200生物发光成像系统确定eGFP和luc2的表达。进行MTT,穿孔侵袭和伤口愈合试验以证实慢病毒感染是否改变了细胞增殖,侵袭和迁移。将细胞原位植入雌性BALB / c裸鼠中,以测试报告基因表达的敏感性和稳定性。每周一次用体内成像系统监测肿瘤的生长,直到它们足够大以进行实验为止。切除肿瘤组织用于组织学,并收集癌细胞进行培养。慢病毒转导的MDA-MB-231细胞可以稳定表达luc2和eGFP,荧光素酶活性达到9689光子/秒/细胞。同时,在慢病毒转导的MDA-MB-231细胞和亲代细胞之间没有观察到生物学活性的显着差异。在LB / c裸鼠中成功建立了人类TNBC的原位植入肿瘤模型。慢病毒由于其高效的感染力和稳定的转基因表达,可能是萤光素酶基因的理想载体。可以检测到稳定表达萤光素酶的改良MDA-MB-231细胞系,从而可以立即灵敏地检测裸鼠中的转移部位。由于eGFP和luc2组合在体内和体外标记细胞的能力优于单个报告基因,因此这些细胞可为研究转移的机制和开发新的抗肿瘤药物提供可视化,方便且敏感的平台。人类TNBC。

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