Department of Biology (Area 9), University of York, York, UK.
Cytotherapy. 2011 Sep;13(8):903-12. doi: 10.3109/14653249.2011.586998. Epub 2011 Jun 22.
Mesenchymal stromal cells (MSC) can be isolated from adult tissues and induced to differentiate into skeletal cells, such as osteoblasts, chondrocytes and adipocytes. Consequently, ex vivo MSC are valuable systems for studying the mechanisms that control tissue-context lineage commitment and may offer broad therapeutic applications in the orthopedic theater and beyond. To date, most of these studies have used MSC grown on two-dimensional (2-D) plastic surfaces. The use of three-dimensional (3-D) in vitro growth techniques for MSC may accelerate these areas of research by providing a more representative 'in vivo-like' environment, where cells interact with each other and their cellular products, rather than a plastic surface. We introduce some of the techniques used for 3-D in vitro cultures and how they relate to the MSC field. We will present evidence of how MSC grown as 3-D spheroids not only permits appropriate MSC-like behavior, but appears to promote their stem-cell attributes and therapeutic benefit in applications ranging from regenerative medicine to anti-inflammatory treatments and cancer therapy. 3-D culture techniques also allow de/reconstruction of the specialized in vivo niche of the tissue-resident stem cell where microenvironmental influences can be recognized.
间充质基质细胞 (MSC) 可从成人组织中分离出来,并被诱导分化为成骨细胞、软骨细胞和脂肪细胞等骨骼细胞。因此,体外 MSC 是研究控制组织背景谱系决定的机制的有价值的系统,并且可能在骨科领域及其他领域提供广泛的治疗应用。迄今为止,这些研究中的大多数都使用二维 (2-D) 塑料表面上生长的 MSC。使用三维 (3-D) 体外生长技术来培养 MSC 可以通过提供更具代表性的“类似于体内”的环境来加速这些研究领域的发展,在该环境中,细胞相互作用及其细胞产物,而不是与塑料表面相互作用。我们介绍了一些用于 3-D 体外培养的技术,以及它们与 MSC 领域的关系。我们将提供证据表明,作为 3-D 球体培养的 MSC 不仅允许适当的 MSC 样行为,而且似乎还促进了它们在从再生医学到抗炎治疗和癌症治疗等应用中的干细胞特性和治疗益处。3-D 培养技术还允许对组织驻留干细胞的专门体内小生境进行重建和重构,从而可以识别微环境的影响。