Biotechnology Center and CRTD, Technische Universität Dresden, 01307 Dresden, Germany.
Biotechnology Center and CRTD, Technische Universität Dresden, 01307 Dresden, Germany Kennedy Institute of Rheumatology, Oxford OX3 7FY, UK.
Development. 2014 Jun;141(11):2225-34. doi: 10.1242/dev.105817. Epub 2014 May 12.
Zebrafish have an unlimited capacity to regenerate bone after fin amputation. In this process, mature osteoblasts dedifferentiate to osteogenic precursor cells and thus represent an important source of newly forming bone. By contrast, differentiated osteoblasts do not appear to contribute to repair of bone injuries in mammals; rather, osteoblasts form anew from mesenchymal stem cells. This raises the question whether osteoblast dedifferentiation is specific to appendage regeneration, a special feature of the lepidotrichia bone of the fish fin, or a process found more generally in fish bone. Here, we show that dedifferentiation of mature osteoblasts is not restricted to fin regeneration after amputation, but also occurs during repair of zebrafish fin fractures and skull injuries. In both models, mature osteoblasts surrounding the injury downregulate the expression of differentiation markers, upregulate markers of the pre-osteoblast state and become proliferative. Making use of photoconvertible Kaede protein as well as Cre-driven genetic fate mapping, we show that osteoblasts migrate to the site of injury to replace damaged tissue. Our findings suggest a fundamental role for osteoblast dedifferentiation in reparative bone formation in fish and indicate that adult fish osteoblasts display elevated cellular plasticity compared with mammalian bone-forming cells.
斑马鱼在断鳍后具有无限的骨骼再生能力。在这个过程中,成熟的成骨细胞去分化为成骨前体细胞,因此代表了新形成骨的重要来源。相比之下,分化的成骨细胞似乎不会对哺乳动物的骨骼损伤修复做出贡献;相反,成骨细胞是由间充质干细胞新形成的。这就提出了一个问题,即成骨细胞的去分化是否仅限于附肢再生,这是鱼鳍鳞茎骨的一个特殊特征,还是在鱼类骨骼中更普遍存在的一个过程。在这里,我们表明,成熟成骨细胞的去分化不仅限于截肢后的鳍再生,也发生在斑马鱼鳍骨折和颅骨损伤的修复过程中。在这两种模型中,损伤周围的成熟成骨细胞下调分化标志物的表达,上调成骨前体细胞的标志物,并变得增殖。利用光转化的 Kaede 蛋白以及 Cre 驱动的遗传命运图谱,我们表明成骨细胞迁移到损伤部位以替代受损组织。我们的发现表明,成骨细胞的去分化在鱼类的修复性骨形成中具有基本作用,并表明与哺乳动物成骨细胞相比,成年鱼类成骨细胞表现出更高的细胞可塑性。