首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Characterization and differentiation potential of rabbit mesenchymal stem cells for translational regenerative medicine
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Characterization and differentiation potential of rabbit mesenchymal stem cells for translational regenerative medicine

机译:兔间充质干细胞的特性及其分化潜力

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Mesenchymal stem cells (MSCs) derived from the adult bone marrow are multipotent stem cells that can give rise to lineages of bone, cartilage, muscle, fat, and others. The rabbit is a common preclinical model used for cardiovascular and orthopaedic applications. MSCs derived from the rabbit whole bone marrow are routinely investigated in these models for regenerative medicine applications. However, rabbit MSCs (rbMSCs) have not been extensively characterized in terms of immunophenotypic characteristics and differentiation potential and more specifically, in comparison to human MSCs (hMSCs). This study examined rbMSCs' surface antigens as well as their multipotent differentiation potential. In addition, the transduction efficiency of rbMSCs using a lentiviral vector with red fluorescent protein (RFP) as a method for labeling the cells for in vitro and in vivo use was also examined. RbMSCs were positive for CD44 and CD29 and negative for CD45 and CD14, which is similar to hMSCs, but rbMSCs did not express CD90. RbMSCs also expressed the pluripotent transcription factor, Sox2. The rbMSCs at early passages differentiated along the osteoblastic, chondrocytic, and adipocytic lineages. However, quantitative analyses demonstrated lower levels of differentiation markers for rabbit cells as compared to human cells. Transduction efficiency of 90.5% was observed for rbMSC transfected with RFP. Transduced cells also retained their osteogenic potential, but proliferation was reduced in comparison to nontransduced cells. This study demonstrates that MSCs isolated from the rabbit bone marrow have differences from human cells and should be considered when using rbMSCs in preclinical models for MSC regenerative medicine or tissue engineering strategies.
机译:源自成年骨髓的间充质干细胞(MSC)是多能干细胞,可引起骨骼,软骨,肌肉,脂肪等的谱系。兔子是用于心血管和骨科应用的常见临床前模型。在这些模型中,常规研究了源自兔整个骨髓的MSC,以用于再生医学。但是,兔MSC(rbMSC)在免疫表型特征和分化潜能方面尚未得到广泛的表征,更具体地说,与人MSC(hMSC)相比,还没有得到广泛的表征。这项研究检查了rbMSCs的表面抗原及其多能分化潜能。此外,还检查了使用带有红色荧光蛋白(RFP)的慢病毒载体作为标记细胞以供体内和体外使用的方法对rbMSCs的转导效率。 RbMSC对CD44和CD29呈阳性,而对CD45和CD14呈阴性,与hMSC相似,但rbMSC不表达CD90。 RbMSCs还表达了多能转录因子Sox2。早期传代的rbMSCs沿成骨细胞,软骨细胞和脂肪细胞谱系分化。但是,定量分析表明,与人类细胞相比,兔细胞的分化标志物水平较低。对于RFP转染的rbMSC,观察到90.5%的转导效率。转导的细胞也保留了其成骨潜能,但与未转导的细胞相比,增殖减少了。这项研究表明,从兔骨髓中分离出的MSC与人细胞有所不同,在将rbMSCs用于MSC再生医学或组织工程策略的临床前模型中时应予以考虑。

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