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非多能基质在体外抑制间充质基质细胞的增殖和分化。

Non-multipotent stroma inhibit the proliferation and differentiation of mesenchymal stromal cells in vitro.

机构信息

Centre for Biologics Research, Biologics and Genetic Therapies Directorate, Health Products and Food Branch, Health Canada, Ottawa, Ontario, Canada.

出版信息

Cytotherapy. 2010 Oct;12(6):818-30. doi: 10.3109/14653249.2010.501785.

Abstract

BACKGROUND AIMS

The ability to expand and maintain bone marrow (BM)-derived mesenchymal stem cells (MSC) in vitro is an important aspect of their therapeutic potential. Despite this, the exact composition of stromal cell types within these cultures and the potential effects of non-stem cells on the maintenance of MSC are poorly understood.

METHODS

C57BL/6J BM stroma was investigated as a model to determine the relationship between MSC and non-multipotent cells in vitro. Whole BM and single-cell derived cultures were characterized using flow cytometry and cell sorting combined with multipotent differentiation. Proliferation of individual stromal populations was evaluated using BrdU.

RESULTS

At a single-cell level, MSC were distinguished from committed progenitors, and cells lacking differentiation ability, by the expression of CD105 (CD105+). A 3-fold reduction in the percentage of CD105+ cells was detected after prolonged culture and correlated with loss of MSC. Depletion of CD105+ cells coincided with a 10-20% increase in the frequency of proliferating CD105(-) cells. Removal of CD105(-) stroma caused increased proliferation in CD105+ cells, which could be diminished by conditioned media from parent cultures. Comparison of the multipotent differentiation potential in purified and non-purified CD105+ cells determined that MSC were detectable for at least 3 weeks longer when cultured in the absence of CD105(-) cells.

CONCLUSIONS

This work identifies a simple model for characterizing the different cellular components present in BM stromal cultures and demonstrates that stromal cells lacking multipotent differentiating capacity greatly reduce the longevity of MSC.

摘要

背景目的

体外扩增和维持骨髓(BM)衍生间充质干细胞(MSC)的能力是其治疗潜力的重要方面。尽管如此,这些培养物中基质细胞类型的确切组成以及非干细胞对 MSC 维持的潜在影响仍知之甚少。

方法

C57BL/6J BM 基质被用作模型,以确定 MSC 和体外非多能细胞之间的关系。使用流式细胞术和细胞分选结合多能分化对整个 BM 和单细胞衍生培养物进行表征。通过 BrdU 评估单个基质群体的增殖。

结果

在单细胞水平上,MSC 通过表达 CD105(CD105+)与定向祖细胞和无分化能力的细胞区分开来。长期培养后,CD105+细胞的百分比降低了 3 倍,与 MSC 的丧失相关。CD105+细胞的耗竭与增殖的 CD105(-)细胞频率增加 10-20% 相吻合。去除 CD105(-)基质会导致 CD105+细胞增殖增加,而来自亲本培养物的条件培养基可减少这种增加。在纯化和非纯化的 CD105+细胞中比较多能分化潜能的结果表明,在没有 CD105(-)细胞的情况下,MSC 可延长至少 3 周的培养时间。

结论

这项工作确定了一种用于表征 BM 基质培养物中存在的不同细胞成分的简单模型,并表明缺乏多能分化能力的基质细胞大大降低了 MSC 的寿命。

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