Department of Biology, University of Washington, Seattle, WA 98195, USA.
Molecular and Cellular Biology Program, University of Washington, Seattle, WA 98195, USA.
Development. 2022 Feb 1;149(3). doi: 10.1242/dev.200172. Epub 2022 Feb 7.
Skeletal elements frequently associate with vasculature and somatosensory nerves, which regulate bone development and homeostasis. However, the deep, internal location of bones in many vertebrates has limited in vivo exploration of the neurovascular-bone relationship. Here, we use the zebrafish caudal fin, an optically accessible organ formed of repeating bony ray skeletal units, to determine the cellular relationship between nerves, bones and endothelium. In adult zebrafish, we establish the presence of somatosensory axons running through the inside of the bony fin rays, juxtaposed with osteoblasts on the inner hemiray surface. During development we show that the caudal fin progresses through sequential stages of endothelial plexus formation, bony ray addition, ray innervation and endothelial remodeling. Surprisingly, the initial stages of fin morphogenesis proceed normally in animals lacking either fin endothelium or somatosensory nerves. Instead, we find that sp7+ osteoblasts are required for endothelial remodeling and somatosensory axon innervation in the developing fin. Overall, this study demonstrates that the proximal neurovascular-bone relationship in the adult caudal fin is established during fin organogenesis and suggests that ray-associated osteoblasts pattern axons and endothelium.
骨骼元素经常与脉管系统和躯体感觉神经相关联,这些系统调节骨骼的发育和稳态。然而,许多脊椎动物骨骼在体内的深层位置限制了对神经血管-骨骼关系的研究。在这里,我们利用斑马鱼的尾鳍,这是一种由重复的骨射线骨骼单元组成的可光学访问的器官,来确定神经、骨骼和内皮细胞之间的细胞关系。在成年斑马鱼中,我们发现感觉神经元轴突穿过骨鳍射线的内部,与内半射线表面的成骨细胞并列。在发育过程中,我们发现尾鳍经历了内皮丛形成、骨射线添加、射线神经支配和内皮重塑的连续阶段。令人惊讶的是,在缺乏鳍内皮细胞或躯体感觉神经的动物中,鳍的初始形态发生阶段仍然正常进行。相反,我们发现 sp7+成骨细胞对于发育中的鳍的内皮重塑和感觉神经元轴突支配是必需的。总的来说,这项研究表明,成年尾鳍的近端神经血管-骨骼关系是在鳍器官发生过程中建立的,并表明与射线相关的成骨细胞为轴突和内皮细胞提供了模式。