Institute of Transfusion Medicine and Immunology, Medical Faculty Mannheim, Heidelberg University, German Red Cross Blood Service Baden-Württemberg - Hessen, Germany.
Cytotherapy. 2012 May;14(5):570-83. doi: 10.3109/14653249.2011.652809. Epub 2012 Feb 2.
Mesenchymal stromal cells (MSC) are promising candidates for innovative cell therapeutic applications. For clinical-scale manufacturing, different supplements have been evaluated as alternatives for the commonly used fetal bovine serum (FBS). We have reported previously that pooled human AB serum (HS) accelerates the proliferation of adipose tissue-derived MSC (ASC) while maintaining key functions of MSC biology such as differentiation, immune suppression and growth factor secretion. ASC expanded in FBS-supplemented culture media undergo replicative aging that is associated with a progressive loss of differentiation capacity but without indications of cellular transformation. The effects of HS media on ASC long-term culture, however, remain poorly characterized.
Long-term cultures of ASC in FBS and HS media were analyzed with respect to proliferation, marker expression, differentiation and immune suppression.
Despite signs of an accelerated proliferation, extended life span and clonogenic capacity of ASC cultivated in HS-supplemented media, HS and FBS cultures revealed no significant differences with respect to differentiation potential and expression of senescence markers. Anchorage-independent growth, which is indicative of tumorigenic properties, was not observed in either culture conditions. Similarly, immune suppressive activities were maintained. Donor variation regarding differentiation potential and marker expression became apparent in this study independent of the culture supplement or culture duration.
We have demonstrated that the use of pooled allogeneic HS maintains the characteristics of ASC even after long-term expansion, further demonstrating that the use of HS is an alternative to FBS.
间充质基质细胞(MSC)是细胞治疗应用的有前途的候选者。为了进行临床规模的制造,已经评估了不同的补充剂作为常用胎牛血清(FBS)的替代品。我们之前曾报道过,混合人 AB 血清(HS)可加速脂肪组织来源的 MSC(ASC)的增殖,同时保持 MSC 生物学的关键功能,如分化、免疫抑制和生长因子分泌。在 FBS 补充培养基中扩增的 ASC 会经历复制性衰老,这与分化能力的逐渐丧失有关,但没有细胞转化的迹象。然而,HS 培养基对 ASC 长期培养的影响仍知之甚少。
用 FBS 和 HS 培养基对 ASC 的长期培养进行了增殖、标志物表达、分化和免疫抑制分析。
尽管 HS 补充培养基中培养的 ASC 表现出增殖加速、寿命延长和克隆形成能力增强的迹象,但 HS 和 FBS 培养在分化潜能和衰老标志物表达方面没有显著差异。在两种培养条件下均未观察到提示致瘤特性的无锚定依赖性生长。同样,免疫抑制活性也得以维持。本研究表明,无论使用哪种培养补充剂或培养时间,供体之间的分化潜能和标志物表达差异都是明显的。
我们已经证明,使用混合异体 HS 可以维持 ASC 的特性,即使在长期扩增后也是如此,进一步证明 HS 的使用是 FBS 的替代品。