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Potential Research Tool of Stem Cells from Human Exfoliated Deciduous Teeth: Lentiviral Bmi-1 Immortalization with EGFP Marker

机译:来自人类剥落落叶的干细胞的潜在研究工具:慢病毒BMI-1与EGFP标记的永生化

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Stem cells from human exfoliated deciduous teeth (SHED) are a favourable source for tissue engineering, for its great proliferative capacity and the ease of collection. However, the transplantation of stem cells and the study of stem cell-based tissue engineering require massive stem cells. After long-term expansion, stem cells face many challenges, including limited lifespan, senescence, and loss of stemness. Therefore, a cell line capable of overcoming those problems should be built. In this study, we generated a Bmi-1-immortalized SHED cell line with an enhanced green fluorescent protein (EGFP) marker (SHED-Bmi1-EGFP) using lentiviral transduction. We compared this cell line with the original SHED for cell morphology under a microscope. The expression of Bmi-1 was detected with Western blot. Replicative lifespan determination and colony-forming efficiency assessment were using to assay proliferation capability. Senescence-associated β-galactosidase assay was performed to assay the senescence level of cells. Moreover, multipotency, karyotype, and tumour formation in nude mice of SHED and SHED-Bmi1-EGFP were also tested. Our results confirmed that Bmi-1 immortalization did not affect the main features of SHED. SHED-Bmi1-EGFP could be passaged for a long time and stably expressed EGFP. SHED-Bmi1-EGFP at a late passage showed low activity of β-galactosidase and similar multilineage differentiation as SHED at an early passage. The immortalized cells had no potential tumourigenicity ability in vivo. Moreover, we provided some suggestions for potential applications of the immortalized SHED cell line with the EGFP marker. Thus, the immortalized cell line we built can be used as a functional tool in the lab for long-term studies of SHED and stem cell-based regeneration.
机译:来自人剥落的落叶牙齿(SHED)的干细胞是组织工程的有利源,其增殖能力较大和易于收集。然而,干细胞移植和干细胞基组织工程的移植需要大量干细胞。在长期膨胀后,干细胞面临着许多挑战,包括有限的寿命,衰老和茎丧失。因此,应该建立能够克服这些问题的细胞系。在该研究中,我们使用慢病毒转导的增强的绿色荧光蛋白(EGFP)标记(EGFP)标记(SHED-BMI1-EGFP)生成了BMI-1-永生的血细胞系。我们将这种细胞系与显微镜下的细胞形态进行了比较了这种细胞系。用Western印迹检测BMI-1的表达。复制的寿命寿命和菌落形成效率评估用于测定增殖能力。进行衰老相关的β-半乳糖苷酶测定以测定细胞的衰老水平。此外,还测试了诸如裸鼠和脱落BMI1-EGFP的裸鼠中的多引燃性,核型和肿瘤形成。我们的结果证实,BMI-1永生化不会影响棚屋的主要特征。 Shed-BMI1-EGFP可以长时间传代,稳定地表达EGFP。在晚期的阶段脱落-BMI1-EGFP显示出低活性的β-半乳糖苷酶和类似于早期通道的血液的多线粒分化。永生化细胞在体内没有潜在的肿瘤性能力。此外,我们为永生化血管线与EGFP标记的潜在应用提供了一些建议。因此,我们构建的永生化细胞系可以用作实验室中的功能工具,用于对血管和干细胞的再生的长期研究。

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