3B´s Research Group-Biomaterials, Biodegradables and Biomimetics, Department of Polymer Engineering, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark, 4806-909 Taipas, Guimarães, Portugal.
Stem Cell Rev Rep. 2011 Mar;7(1):64-76. doi: 10.1007/s12015-010-9147-0.
Recently adipose tissue has become a research topic also for the searching for an alternative stem cells source to use in cell based therapies such as tissue engineer. In fact Adipose Stem Cells (ASCs) exhibit an important differentiation potential for several cell lineages such as chondrogenic, osteogenic, myogenic, adipogenic and endothelial cells. ASCs populations isolated using standard methodologies (i.e., based on their adherence ability) are very heterogeneous but very few studies have analysed this aspect. Consequently, several questions are still pending, as for example, on what regard the existence/ or not of distinct ASCs subpopulations. The present study is originally aimed at isolating selected ASCs subpopulations, and to analyse their behaviour towards the heterogeneous population regarding the expression of stem cell markers and also regarding their osteogenic and chondrogenic differentiation potential. Human Adipose derived Stem Cells (hASCs) subpopulations were isolated using immunomagnetic beads coated with several different antibodies (CD29, CD44, CD49d, CD73, CD90, CD 105, Stro-1 and p75) and were characterized by Real Time RT-PCR in order to assess the expression of mesenchymal stem cells markers (CD44, CD73, Stro-1, CD105 and CD90) as well as known markers of the chondrogenic (Sox 9, Collagen II) and osteogenic lineage (Osteopontin, Osteocalcin). The obtained results underline the complexity of the ASCs population demonstrating that it is composed of several subpopulations, which express different levels of ASCs markers and exhibit distinctive differentiation potentials. Furthermore, the results obtained clearly evidence of the advantages of using selected populations in cell-based therapies, such as bone and cartilage regenerative medicine approaches.
最近,脂肪组织已成为研究课题,因为人们在寻找替代的干细胞来源,用于细胞治疗,如组织工程。事实上,脂肪干细胞(ASCs)具有向软骨细胞、成骨细胞、肌细胞、脂肪细胞和内皮细胞等多种细胞谱系分化的重要潜能。使用标准方法(即基于其黏附能力)分离的 ASC 群体非常异质,但很少有研究分析这一方面。因此,仍有几个问题悬而未决,例如,是否存在不同的 ASC 亚群。本研究最初旨在分离选定的 ASC 亚群,并分析它们在表达干细胞标志物方面以及在成骨和成软骨分化潜能方面与异质群体的行为。使用包被有几种不同抗体(CD29、CD44、CD49d、CD73、CD90、CD105、Stro-1 和 p75)的免疫磁珠分离人脂肪来源干细胞(hASCs)亚群,并通过实时 RT-PCR 进行表征,以评估间充质干细胞标志物(CD44、CD73、Stro-1、CD105 和 CD90)以及软骨谱系(Sox9、Collagen II)和成骨谱系(Osteopontin、Osteocalcin)的已知标志物的表达。所得结果强调了 ASC 群体的复杂性,表明它由几个亚群组成,这些亚群表达不同水平的 ASC 标志物,并表现出不同的分化潜力。此外,所得结果清楚地证明了在细胞治疗中使用选定群体的优势,例如骨和软骨再生医学方法。