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首页> 外文期刊>BMC Biotechnology >Isolation and characterization of Wharton’s jelly-derived multipotent mesenchymal stromal cells obtained from bovine umbilical cord and maintained in a defined serum-free three-dimensional system
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Isolation and characterization of Wharton’s jelly-derived multipotent mesenchymal stromal cells obtained from bovine umbilical cord and maintained in a defined serum-free three-dimensional system

机译:从牛脐带获得并保留在确定的无血清三维系统中的沃顿氏胶源多能间充质基质细胞的分离和鉴定

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Background The possibility for isolating bovine mesenchymal multipotent cells (MSCs) from fetal adnexa is an interesting prospect because of the potential for these cells to be used for biotechnological applications. Bone marrow and adipose tissue are the most common sources of MSCs derived from adult animals. However, little knowledge exists about the characteristics of these progenitors cells in the bovine species. Traditionally most cell cultures are developed in two dimensional (2D) environments. In mammalian tissue, cells connect not only to each other, but also support structures called the extracellular matrix (ECM). The three-dimensional (3D) cultures may play a potential role in cell biotechnology, especially in tissue therapy. In this study, bovine-derived umbilical cord Wharton’s jelly (UC-WJ) cells were isolated, characterized and maintained under 3D-free serum condition as an alternative of stem cell source for future cell banking. Results Bovine-derived UC-WJ cells, collected individually from 5 different umbilical cords sources, were successfully cultured under serum-free conditions and were capable to support 60 consecutive passages using commercial Stemline? mesenchymal stem cells expansion medium. Moreover, the UC-WJ cells were differentiated into osteocytes, chondrocytes, adipocytes and neural-like cells and cultured separately. Additionally, the genes that are considered important embryonic, POU5F1 and ITSN1, and mesenchymal cell markers, CD105+, CD29+, CD73+ and CD90+ in MSCs were also expressed in five bovine-derived UC-WJ cultures. Morphology of proliferating cells typically appeared fibroblast-like spindle shape presenting the same viability and number. These characteristics were not affected during passages. There were 60 chromosomes at the metaphase, with acrocentric morphology and intense telomerase activity. Moreover, the proliferative capacity of T cells in response to a mitogen stimulus was suppressed when bovine-derived UC-WJ cells was included in the culture which demonstrated the immunossupression profile typically observed among isolated mesenchymal cells from other species. After classified the UC-WJ cells as mesenchymal stromal phenotype the in vitro 3D cultures was performed using the AlgiMatrix? protocol. Based on the size of spheroids (283,07?μm?±?43,10?μm) we found that three weeks of culture was the best period to growth the UC-WJ cells on 3D dimension. The initial cell density was measured and the best value was 1.5?×?106 cells/well. Conclusions We described for the first time the isolation and characterization of UC-WJ cells in a serum-free condition and maintenance of primitive mesenchymal phenotype. The culture was stable under 60 consecutive passages with no genetic abnormalities and proliferating ratios. Taken together all results, it was possible to demonstrate an easy way to isolate and culture of bovine-derived UC-WJ cells under 2D and 3D serum-free condition, from fetal adnexa with a great potential in cell therapy and biotechnology.
机译:背景技术从胎儿附件中分离牛间充质干细胞(MSCs)的可能性是一个有趣的前景,因为这些细胞具有用于生物技术应用的潜力。骨髓和脂肪组织是成年动物来源的MSC的最常见来源。然而,关于牛物种中这些祖细胞特征的知识很少。传统上,大多数细胞培养是在二维(2D)环境中开发的。在哺乳动物组织中,细胞不仅彼此连接,而且还支持称为细胞外基质(ECM)的结构。三维(3D)培养物可能在细胞生物技术中,特别是在组织治疗中发挥潜在作用。在这项研究中,牛源性脐带沃顿氏胶(UC-WJ)细胞被分离,鉴定并保持在无3D血清条件下,作为干细胞来源的替代品,可用于将来的细胞储存。结果分别从5种不同的脐带来源收集的牛来源UC-WJ细胞在无血清条件下成功培养,并能够使用商业Stemline?支持60次连续传代。间充质干细胞扩增培养基。此外,UC-WJ细胞分化为骨细胞,软骨细胞,脂肪细胞和神经样细胞,并分别培养。此外,被认为是重要的胚胎基因POU5F1和ITSN1,以及间充质细胞标记CD105 + ,CD29 + ,CD73 + 和CD90 + 也表达为五种源自牛的UC-WJ培养物。增殖细胞的形态通常表现为成纤维细胞样纺锤形,表现出相同的生存力和数量。这些特征在通过过程中不受影响。中期有60条染色体,具有近端中心形态和强烈的端粒酶活性。此外,当将牛源的UC-WJ细胞包括在培养物中时,T细胞对促细胞分裂剂刺激的增殖能力受到抑制,这证明了在其他物种的分离的间充质细胞中通常观察到免疫抑制特性。将UC-WJ细胞分类为间质基质表型后,使用AlgiMatrix?进行体外3D培养。协议。根据球状体的大小(283,07?μm?±?43,10?μm),我们发现培养三周是3D维度上生长UC-WJ细胞的最佳时期。测量初始细胞密度,最佳值为1.5?×?10 6 /孔。结论我们首次描述了无血清条件下UC-WJ细胞的分离和表征以及原始间充质表型的维持。该培养物在连续60次传代下稳定,没有遗传异常和增殖率。综合所有结果,有可能证明一种简便的方法可以在2D和3D无血清条件下从胎儿附件中分离和培养牛源UC-WJ细胞,在细胞治疗和生物技术领域具有巨大潜力。

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