Djouad Farida, Tejedor Gautier, Toupet Karine, Maumus Marie, Bony Claire, Blangy Anne, Chuchana Paul, Jorgensen Christian, Noël Danièle
Stem Cell Res Ther. 2014 Feb 24;5(1):27. doi: 10.1186/scrt416.
Mesenchymal stem cells (MSCs) are an attractive cell source for cartilage and bone tissue engineering given their ability to differentiate into chondrocytes and osteoblasts. However, the common origin of these two specialized cell types raised the question about the identification of regulatory pathways determining the differentiation fate of MSCs into chondrocyte or osteoblast.
Chondrogenesis, osteoblastogenesis, and adipogenesis of human and mouse MSC were induced by using specific inductive culture conditions. Expression of promyelocytic leukemia zinc-finger (PLZF) or differentiation markers in MSCs was determined by RT-qPCR. PLZF-expressing MSC were implanted in a mouse osteochondral defect model and the neotissue was analyzed by routine histology and microcomputed tomography.
We found out that PLZF is not expressed in MSCs and its expression at early stages of MSC differentiation is the mark of their commitment toward the three main lineages. PLZF acts as an upstream regulator of both Sox9 and Runx2, and its overexpression in MSC enhances chondrogenesis and osteogenesis while it inhibits adipogenesis. In vivo, implantation of PLZF-expressing MSC in mice with full-thickness osteochondral defects resulted in the formation of a reparative tissue resembling cartilage and bone.
Our findings demonstrate that absence of PLZF is required for stemness maintenance and its expression is an early event at the onset of MSC commitment during the differentiation processes of the three main lineages.
间充质干细胞(MSCs)因其能够分化为软骨细胞和成骨细胞,成为软骨和骨组织工程中颇具吸引力的细胞来源。然而,这两种特殊细胞类型的共同起源引发了关于确定MSCs向软骨细胞或成骨细胞分化命运的调控途径的识别问题。
利用特定的诱导培养条件诱导人和小鼠MSCs的软骨形成、成骨形成和脂肪形成。通过RT-qPCR测定MSCs中早幼粒细胞白血病锌指蛋白(PLZF)或分化标志物的表达。将表达PLZF的MSCs植入小鼠骨软骨缺损模型中,并通过常规组织学和微型计算机断层扫描分析新生组织。
我们发现PLZF在MSCs中不表达,其在MSCs分化早期的表达是它们向三个主要谱系分化的标志。PLZF作为Sox9和Runx2的上游调节因子,其在MSCs中的过表达增强软骨形成和成骨形成,同时抑制脂肪形成。在体内,将表达PLZF的MSCs植入全层骨软骨缺损的小鼠体内,导致形成类似软骨和骨的修复组织。
我们的研究结果表明,PLZF的缺失是维持干细胞特性所必需的,其表达是MSCs在三个主要谱系分化过程中开始定向分化的早期事件。