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首页> 外文期刊>BMC Veterinary Research >Isolation and multilineage differentiation of bone marrow mesenchymal stem cells from abattoir-derived bovine fetuses
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Isolation and multilineage differentiation of bone marrow mesenchymal stem cells from abattoir-derived bovine fetuses

机译:屠宰场牛胎儿骨髓间充质干细胞的分离和多系分化

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摘要

Background Mesenchymal stem cells (MSC) are multipotent progenitor cells localized in the stromal compartment of the bone marrow (BM). The potential of MSC for mesenchymal differentiation has been well documented in different animal models predominantly on rodents. However, information regarding bovine MSC (bMSC) is limited, and the differentiation potential of bMSC derived from fetal BM remains unknown. In the present study we sought to isolate bMSC from abattoir-derived fetal BM and to characterize the multipotent and differentiation potential under osteogenic, chondrogenic and adipogenic conditions by quantitative and qualitative analyses. Results Plastic-adherent bMSC isolated from fetal BM maintained a fibroblast-like morphology under monolayer culture conditions. These cells expressed high levels of MSC surface markers ( CD73 , CD90 , and CD105 ) and low levels of hematopoietic surface markers ( CD34 and CD45 ). Culture of bMSC under osteogenic conditions during a 27-day period induced up-regulation of the osteocalcin ( OC ) gene expression and alkaline phosphatase (ALPL) activity, and promoted mineralization of the matrix. Increasing supplementation levels of ascorbic acid to culture media enhanced osteogenic differentiation of bMSC; whereas, reduction of FBS supplementation compromised osteogenesis. bMSC increased expression of cartilage-specific genes aggrecan ( ACAN ), collagen 2A1 ( COL2A1 ) and SRY (sex-determining region Y) box 9 ( SOX9 ) at Day 21 of chondrogenic differentiation. Treatment of bMSC with adipogenic factors increased levels of fatty acid-binding protein 2 ( AP2 ) mRNA and accumulation of lipid vacuoles after 18?days of culture. NANOG mRNA levels in differentiating bMSC were not affected during adipogenic culture; however, osteogenic and chondrogenic conditions induced higher and lower levels, respectively. Conclusions Our analyses revealed the potential multilineage differentiation of bMSC isolated from abattoir-derived fetal BM. NANOG mRNA pattern in differentiating bMSC varied according to differentiation culture conditions. The osteogenic differentiation of bMSC was affected by ascorbic acid and FBS concentrations in culture media. The simplicity of isolation and the differentiation potential suggest that bMSC from abattoir-derived fetal BM are appropriate candidate for investigating MSC biology and for eventual applications for regenerative therapy.
机译:背景间充质干细胞(MSC)是位于骨髓(BM)基质室中的多能祖细胞。在不同的动物模型中,主要是在啮齿类动物上,MSC已经证实了间充质分化的潜力。但是,有关牛MSC(bMSC)的信息是有限的,并且源自胎儿BM的bMSC的分化潜力仍然未知。在本研究中,我们试图从屠宰场衍生的胎儿BM中分离bMSC,并通过定量和定性分析表征成骨,成软骨和成脂条件下的多潜能和分化潜能。结果从胎儿BM分离出的可粘附塑料的bMSC在单层培养条件下保持成纤维样形态。这些细胞表达高水平的MSC表面标志物(CD73,CD90和CD105)和低水平的造血表面标志物(CD34和CD45)。在成骨条件下培养的bMSC在27天的时间内诱导了骨钙素(OC)基因表达和碱性磷酸酶(ALPL)活性的上调,并促进了基质的矿化。增加抗坏血酸对培养基的补充水平可增强bMSC的成骨分化;相反,减少FBS补充会损害成骨作用。在软骨分化的第21天,bMSC增加了软骨特异性基因聚集蛋白聚糖(ACAN),胶原蛋白2A1(COL2A1)和SRY(性决定区Y)框9(SOX9)的表达。培养18天后,用成脂因子处理bMSC可增加脂肪酸结合蛋白2(AP2)mRNA的水平和脂质液泡的积累。在成脂培养过程中,分化的bMSC中的NANOG mRNA水平不受影响。然而,成骨和成软骨条件分别导致较高和较低的水平。结论我们的分析揭示了从屠宰场衍生的胎儿BM中分离出的bMSC的潜在多系分化。分化bMSC中的NANOG mRNA模式根据分化培养条件而变化。培养基中抗坏血酸和FBS的浓度会影响bMSC的成骨分化。分离的简单性和分化潜能表明,来自屠宰场的胎儿BM的bMSC是研究MSC生物学以及最终用于再生治疗的合适候选者。

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