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Establishment of immortalized mesenchymal stromal cells with red fluorescence protein expression for in vivo transplantation and tracing in the rat model with traumatic brain injury

机译:建立具有红色荧光蛋白表达的永生化间充质基质细胞,用于大鼠脑外伤模型的体内移植和示踪

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Background aims. Human mesenchymal stromal cells (hMSC) play a crucial role in tissue engineering and regenerative medicine, and have important clinical potential for cell therapy. However, many hMSC studies have been restricted by limited cell numbers and difficult detection in vivo. To expand the lifespan, hMSC are usually immortalized by virus-mediated gene transfer. However, these genetically modified cells easily lose critical phenotypes and stable genotypes because of insertional mutagenesis. Methods. We used a non-viral transfection method to establish human telomerase reverse transcriptase-immortalized cord blood hMSC (hTERT-cbMSC). We also established red fluorescent protein (RFP)-expressing hTERT-cbMSC (hTERT/RFP-cbMSC) by the same non-viral transfection method, and these cells were injected into a rat model with traumatic brain injury for in vivo detection analysis. Results. The hTERT-cbMSC could grow more than 200 population doublings with a stable doubling time and maintained differentiation capacities. hTERT/RFP-cbMSC could proliferate efficiently within 2 weeks at the injury location and could be detected easily under a fluorescent microscope. Importantly, both hTERT-cbMSC and hTERT/RFP-cbMSC showed no chromosomal abnormalities by karyotype analysis and no tumor formation in severe combined immunodeficient (SCID) mice by transplantation assay. Conclusions. We have developed immortalized cbMSC with hTERT expression and RFP expression, which will be useful tools for stem cell research and translational study.
机译:背景目标。人间充质基质细胞(hMSC)在组织工程和再生医学中起着至关重要的作用,并且在细胞治疗方面具有重要的临床潜力。但是,许多hMSC研究受到细胞数量有限和体内检测困难的限制。为了延长寿命,通常通过病毒介导的基因转移使hMSC永生。但是,由于插入诱变,这些基因修饰的细胞很容易失去关键的表型和稳定的基因型。方法。我们使用非病毒转染方法来建立人类端粒酶逆转录酶永生化脐带血hMSC(hTERT-cbMSC)。我们还通过相同的非病毒转染方法建立了表达红色荧光蛋白(RFP)的hTERT-cbMSC(hTERT / RFP-cbMSC),并将这些细胞注射到具有外伤性​​脑损伤的大鼠模型中进行体内检测分析。结果。 hTERT-cbMSC可以在稳定的倍增时间和保持分化能力的情况下使200倍的种群倍增。 hTERT / RFP-cbMSC可以在受伤部位2周内有效增殖,并且可以在荧光显微镜下轻松检测到。重要的是,通过核型分析,hTERT-cbMSC和hTERT / RFP-cbMSC均未显示染色体异常,并且通过移植测定在严重的联合免疫缺陷(SCID)小鼠中也未显示肿瘤形成。结论我们已经开发了具有hTERT表达和RFP表达的永生化cbMSC,这将是用于干细胞研究和翻译研究的有用工具。

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