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首页> 外文期刊>European review for medical and pharmacological sciences. >Optimization of in vitro cell labeling methods for human umbilical cord-derived mesenchymal stem cells
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Optimization of in vitro cell labeling methods for human umbilical cord-derived mesenchymal stem cells

机译:人脐带间充质干细胞体外细胞标记方法的优化

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BACKGROUND AND OBJECTIVES: Human umbilical cord-derived mesenchymal stem cells (hUCMSCs) are a novel source of seed cells for cell therapy and tissue engineering. However, in vitro labeling methods for hUCMSCs need to be optimized for better detection of transplanted cells. AIM OF THE STUDY: To identify the most stable and efficient method for labeling hUCMSCs in vitro. MATERIALS AND METHODS: hUCMSCs were isolated using a modified enzymatic digestion procedure and cultured. hUCMSCs of passage three (P3) were then labeled with BrdU, PKH26, or lentivirus-GFP and passaged further. Cells from the first labeled passage (LP1), the fourth labeled passage (LP4) and later passages were observed using a fluorescence microscope. The differentiation potential of LP4 cells was assessed by induction with adipogenic and osteogenic medium. Flow cytometry was used to measure the percentage of labeled cells and the percentage of apoptotic or dead cells. The labeling efficiencies of the three hUCMSC-labeling methods were compared in vitro. RESULTS: BrdU, PKH26, and lentivirus-GFP all labeled LP1 cells with high intensity and clarity. However, the BrdU labeling of the LP4 cells was vague and not localized to the cell nuclei; LP9 cells were not detected under a fluorescence microscope. There was also a significant decrease in the fluorescence intensity of PKH26-labeled LP4 cells, and LP11 cells were not detected under a fluorescence microscope. However, the fluorescence of LP4 cells labeled with lentivirus-GFP remained strong, and cells labeled with lentivirus-GFP were detected up to LP14 under a fluorescence microscope. Statistical analyses indicated that percentages of LP1 cells labeled with PKH26 and lentivirus-GFP were significantly higher than that of cells labeled with BrdU (p 0.05) was observed between the death rates of labeled and unlabeled cells. CONCLUSIONS: Lentivirus-GFP is a valid method for long-term in vitro labeling, and it may be used as a long-term hUCMSC tracker following transplantation in vivo.
机译:背景与目的:人脐带间充质干细胞(hUCMSCs)是用于细胞治疗和组织工程的新型种子细胞来源。但是,需要优化hUCMSC的体外标记方法,以更好地检测移植的细胞。研究目的:确定体外标记hUCMSCs的最稳定,最有效的方法。材料与方法:用改良的酶消化程序分离hUCMSCs并进行培养。然后用BrdU,PKH26或慢病毒-GFP标记第3代(P3)的hUCMSC,并进一步传代。使用荧光显微镜观察来自第一个标记的传代(LP1),第四个标记的传代(LP4)和后续传代的细胞。通过用成脂和成骨培养基诱导来评估LP4细胞的分化潜力。流式细胞仪用于测量标记细胞的百分比以及凋亡或死细胞的百分比。体外比较了三种hUCMSC标记方法的标记效率。结果:BrdU,PKH26和慢病毒-GFP均以高强度和清晰度标记了LP1细胞。但是,LP4细胞的BrdU标记含糊不清,并不局限于细胞核。在荧光显微镜下未检测到LP9细胞。 PKH26标记的LP4细胞的荧光强度也显着降低,并且在荧光显微镜下未检测到LP11细胞。然而,用慢病毒-GFP标记的LP4细胞的荧光仍然很强,并且在荧光显微镜下检测到用LP14标记的细胞直至LP14。统计分析表明,在标记细胞和未标记细胞的死亡率之间,PKH26和慢病毒-GFP标记的LP1细胞百分比显着高于BrdU标记的细胞(p 0.05)。结论:慢病毒-GFP是长期体外标记的有效方法,在体内移植后可用作长期hUCMSC追踪剂。

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