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A Rapid, Simple, and Reproducible Method for the Isolation of Mesenchymal Stromal Cells from Wharton's Jelly Without Enzymatic Treatment

机译:一种无需酶处理即可从沃顿胶冻中分离间充质基质细胞的快速,简单且可重现的方法

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The co-infusion of mesenchymal stromal cells (MSCs) with hematopoietic stem cells could improve the hema-topoietic engraftment after cord blood transplant. Adult bone marrow is the major source of MSCs for cell therapy. However, bone marrow aspiration involves an invasive procedure and, in the case of a cord blood transplant, requires the use of a third party. The umbilical cord matrix, called Wharton's jelly (WJ), was previously shown to be a valuable source of MSCs. However, the process of cell separation is not standardized and needs to be optimized. In this study, we focused on the efficiency of the isolation procedure and expansion of cells from WJ MSCs isolated from human full-term umbilical cords. MSCs were isolated from the WJ without enzyme digestion or dissection. The procedure was based only on the plastic adhesion capacities of MSCs. Briefly, umbilical cord segments of 5-10 cm were cut longitudinally and plated with the WJ onto a plastic surface for 5 days in an appropriate culture medium. After removing the cord segment, the culture was pursued until subconfluency. The number of cells and their phenotypes, clonogenic capacities, differentiation capacities, im-munomodulation, and hematopoietic supportive functions were evaluated. Using this method, we were able to isolate MSCs from all human umbilical cords analyzed (n = 50). We obtained a mean of 1.4xl0~8 cells at the second passage and >7x10~9 cells at the third. The expanded cells expressed characteristic markers and presented typical functional properties of MSCs such as differentiation capacities, immunologic properties, and hematopoietic supportive functions. In conclusion, we have established a simple, rapid, and reproducible protocol to isolate abundant MSCs from short segments of umbilical cords.
机译:间充质基质细胞(MSCs)与造血干细胞的共注入可以改善脐血移植后的造血移植。成年骨髓是用于细胞治疗的MSC的主要来源。然而,骨髓抽吸涉及侵入性程序,并且在脐带血移植的情况下,需要使用第三方。脐带基质被称为沃顿胶冻(WJ),以前被证明是MSC的重要来源。但是,细胞分离的过程尚未标准化,需要进行优化。在这项研究中,我们集中于从人足脐带分离的WJ MSCs分离程序和细胞扩增的效率。从WJ分离MSC,无需酶消化或解剖。该程序仅基于MSC的塑料粘附能力。简要地,将5-10cm的脐带段纵向切开,并在适当的培养基中用WJ在塑料表面上铺板5天。除去脐带节段后,继续培养直至亚融合。评估了细胞数量及其表型,克隆能力,分化能力,免疫调节和造血支持功能。使用此方法,我们能够从所有分析的人脐带中分离出MSC(n = 50)。我们在第二代获得了平均1.4x10〜8个细胞,在第三代获得了> 7x10〜9个细胞。扩增的细胞表达特征性标记并呈现出MSC的典型功能特性,例如分化能力,免疫学特性和造血支持功能。总之,我们已经建立了一个简单,快速且可重现的协议,可以从脐带短段中分离出丰富的MSC。

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