Boeuf S, Steck E, Pelttari K, Hennig T, Buneb A, Benz K, Witte D, Sültmann H, Poustka A, Richter W
Division of Experimental Orthopaedics, Orthopaedic Clinic, University of Heidelberg, Germany.
Osteoarthritis Cartilage. 2008 Jan;16(1):48-60. doi: 10.1016/j.joca.2007.05.008. Epub 2007 Jul 2.
Mesenchymal stem cells (MSCs) are a population of cells broadly discussed to support cartilage repair. The differentiation of MSCs into articular chondrocytes is, however, still poorly understood on the molecular level. The aim of this study was to perform an almost genome-wide screen for genes differentially expressed between cartilage and MSCs and to extract new markers useful to define chondrocyte differentiation stages.
Gene expression profiles of MSCs (n=8) and articular cartilage from OA patients (n=7) were compared on a 30,000 cDNA-fragment array and differentially expressed genes were extracted by subtraction. Expression of selected genes was assessed during in vitro chondrogenic differentiation of MSCs and during dedifferentiation of expanded chondrocytes using quantitative and semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR). Protein secretion was measured by enzyme-linked immunosorbent assay.
Eighty-seven genes were differentially expressed between MSCs and cartilage with a more than three-fold difference. Sixty-seven of them were higher expressed in cartilage and among them 15 genes were previously not detected in cartilage. Differential expression was confirmed for 69% of 26 reanalysed genes by RT-PCR. The profiles of three unknown transcripts and six protease-related molecules were characterised during differentiation. SERPINA1 and SERPINA3 mRNA expression correlated with chondrogenic differentiation of MSCs and dedifferentiation of chondrocytes, and SERPINA1 protein levels in culture supernatants could be correlated alike.
cDNA-array analysis identified SERPINA1 and A3 as new differentiation-relevant genes for cartilage. Since SERPINA1 secretion correlated with both chondrogenesis of MSCs and dedifferentiation during chondrocyte expansion, it represents an attractive marker for refinement of chondrocyte differentiation.
间充质干细胞(MSCs)是一类被广泛讨论用于支持软骨修复的细胞群。然而,MSCs向关节软骨细胞的分化在分子水平上仍了解甚少。本研究的目的是对软骨和MSCs之间差异表达的基因进行几乎全基因组范围的筛选,并提取有助于定义软骨细胞分化阶段的新标志物。
在一个包含30000个cDNA片段的芯片上比较MSCs(n = 8)和骨关节炎(OA)患者关节软骨(n = 7)的基因表达谱,并通过消减杂交提取差异表达基因。使用定量和半定量逆转录-聚合酶链反应(RT-PCR)评估所选基因在MSCs体外软骨形成分化过程以及扩增软骨细胞去分化过程中的表达。通过酶联免疫吸附测定法测量蛋白质分泌。
MSCs和软骨之间有87个基因差异表达,差异超过三倍。其中67个在软骨中高表达,其中15个基因先前未在软骨中检测到。通过RT-PCR对26个重新分析的基因中的69%进行了差异表达验证。在分化过程中对三个未知转录本和六个蛋白酶相关分子的表达谱进行了表征。丝氨酸蛋白酶抑制剂A1(SERPINA1)和丝氨酸蛋白酶抑制剂A3(SERPINA3)mRNA表达与MSCs的软骨形成分化以及软骨细胞的去分化相关,并且培养上清液中的SERPINA1蛋白水平也呈现类似的相关性。
cDNA芯片分析确定SERPINA1和A3是软骨新的与分化相关的基因。由于SERPINA1的分泌与MSCs的软骨形成以及软骨细胞扩增过程中的去分化均相关,它是用于细化软骨细胞分化的一个有吸引力的标志物。