Cheng Aixin, Hardingham Timothy E, Kimber Susan J
1 North West Embryonic Stem Cell Centre, Faculty of Life Science, University of Manchester , Manchester, United Kingdom .
Tissue Eng Part B Rev. 2014 Aug;20(4):257-66. doi: 10.1089/ten.TEB.2012.0757. Epub 2013 Sep 24.
The treatment of degeneration and injury of articular cartilage has been very challenging for scientists and surgeons. As an avascular and hypocellular tissue, cartilage has a very limited capacity for self-repair. Chondrocytes are the only cell type in cartilage, in which they are surrounded by the extracellular matrix that they secrete and assemble. Autologous chondrocyte implantation for cartilage defects has achieved good results, but the limited resources and complexity of the procedure have hindered wider application. Stem cells form an alternative to chondrocytes as a source of chondrogenic cells due to their ability to proliferate extensively while retaining the potential for differentiation. Adult stem cells such as mesenchymal stem cells have been differentiated into chondrocytes, but the limitations in their proliferative ability and the heterogeneous cell population hinder their adoption as a prime alternative source for generating chondrocytes. Human embryonic stem cells (hESCs) are attractive as candidates for cell replacement therapy because of their unlimited self-renewal and ability for differentiation into mesodermal derivatives as well as other lineages. In this review, we focus on current protocols for chondrogenic differentiation of ESCs, in particular the chemically defined culture system developed in our lab that could potentially be adapted for clinical application.
关节软骨退变和损伤的治疗一直是科学家和外科医生面临的重大挑战。作为一种无血管且细胞稀少的组织,软骨的自我修复能力非常有限。软骨细胞是软骨中唯一的细胞类型,它们被自己分泌和组装的细胞外基质所包围。自体软骨细胞植入治疗软骨缺损已取得良好效果,但资源有限和操作复杂阻碍了其更广泛的应用。干细胞因其具有广泛增殖能力且保留分化潜力,可作为软骨生成细胞的替代来源,替代软骨细胞。诸如间充质干细胞等成体干细胞已被诱导分化为软骨细胞,但其增殖能力的局限性以及细胞群体的异质性阻碍了它们成为生成软骨细胞的主要替代来源。人类胚胎干细胞(hESCs)因其具有无限自我更新能力以及分化为中胚层衍生物和其他谱系的能力,作为细胞替代疗法的候选者很有吸引力。在本综述中,我们重点关注当前胚胎干细胞软骨分化的方案,特别是我们实验室开发的可潜在应用于临床的化学成分明确的培养系统。