Departamento de Anatomía y Biología Celular and IFIMAV, Universidad de Cantabria , Santander 39011, Spain.
ACS Chem Biol. 2014 Jan 17;9(1):72-9. doi: 10.1021/cb400713v. Epub 2013 Nov 20.
Repairing damaged cartilage and tendons is a major challenge of regenerative medicine. There has been great progress in the past decade toward obtaining stem cells for regenerative purposes from a variety of sources. However, the development of procedures to direct and maintain the differentiation of progenitors into cartilage or tendon is still a hurdle to overcome in regenerative medicine of the musculoskeletal system. This is because connective tissues often lack stable phenotypes and retain plasticity to return to the initial stages of differentiation or to transdifferentiate into another connective tissue cell lineage. This makes it necessary to unravel the molecular basis that is responsible for the differentiation of connective tissue cell lineages. In this review, we summarize the investigations performed in the past two decades to unravel the signals that regulate the differentiation of skeletal cell progenitors into cartilage and tendons during embryonic limb development. The data obtained in those studies demonstrate that Tgfβ, BMP, FGF, and Wnt establish a complex signaling network that directs the differentiation of skeletal cell progenitors. Remarkably, in the embryonic digit model, the divergent differentiation of progenitors depends on the temporal coordination of those signals, rather than being specified by an individual signaling pathway. Due to its potential medical relevance, we highlight the importance of the coordinate influence of the Tgfβ and BMP pathways in the differentiation of cell progenitors into tendon or cartilage.
修复受损的软骨和肌腱是再生医学的主要挑战。在过去的十年中,人们在从各种来源获得用于再生目的的干细胞方面取得了重大进展。然而,为了指导和维持祖细胞向软骨或肌腱分化,仍然是肌肉骨骼系统再生医学需要克服的一个障碍。这是因为结缔组织通常缺乏稳定的表型,并保持可塑性,以回到分化的初始阶段或转分化为另一种结缔组织细胞谱系。这就需要揭示负责结缔组织细胞谱系分化的分子基础。在这篇综述中,我们总结了过去二十年的研究结果,以揭示在胚胎肢发育过程中调节骨骼细胞祖细胞向软骨和肌腱分化的信号。这些研究获得的数据表明,TGFβ、BMP、FGF 和 Wnt 建立了一个复杂的信号网络,指导骨骼细胞祖细胞的分化。值得注意的是,在胚胎指模型中,祖细胞的不同分化取决于这些信号的时间协调,而不是由单个信号通路决定。由于其潜在的医学相关性,我们强调了 TGFβ 和 BMP 途径在细胞祖细胞分化为肌腱或软骨中的协调影响的重要性。