Institute of Anatomy, Department of Anatomy and Molecular Embryology, Ruhr University Bochum, Bochum, Germany.
Department of Anatomy, Faculty of Veterinary Medicine, University of Khartoum, Khartoum, Sudan.
Sci Rep. 2020 Mar 19;10(1):5049. doi: 10.1038/s41598-020-61960-w.
The present study shows that the CXCR4/SDF-1 axis regulates the migration of second branchial arch-derived muscles as well as non-somitic neck muscles. Cxcr4 is expressed by skeletal muscle progenitor cells in the second branchial arch (BA2). Muscles derived from the second branchial arch, but not from the first, fail to form in Cxcr4 mutants at embryonic days E13.5 and E14.5. Cxcr4 is also required for the development of non-somitic neck muscles. In Cxcr4 mutants, non-somitic neck muscle development is severely perturbed. In vivo experiments in chicken by means of loss-of-function approach based on the application of beads loaded with the CXCR4 inhibitor AMD3100 into the cranial paraxial mesoderm resulted in decreased expression of Tbx1 in the BA2. Furthermore, disrupting this chemokine signal at a later stage by implanting these beads into the BA2 caused a reduction in MyoR, Myf5 and MyoD expression. In contrast, gain-of-function experiments based on the implantation of SDF-1 beads into BA2 resulted in an attraction of myogenic progenitor cells, which was reflected in an expansion of the expression domain of these myogenic markers towards the SDF-1 source. Thus, Cxcr4 is required for the formation of the BA2 derived muscles and non-somitic neck muscles.
本研究表明,CXCR4/SDF-1 轴调节第二鳃弓衍生肌肉以及非体节颈部肌肉的迁移。Cxcr4 由第二鳃弓(BA2)中的骨骼肌祖细胞表达。在 E13.5 和 E14.5 胚胎期,Cxcr4 突变体中第二鳃弓来源的肌肉而不是第一鳃弓来源的肌肉未能形成。Cxcr4 对于非体节颈部肌肉的发育也是必需的。在 Cxcr4 突变体中,非体节颈部肌肉的发育受到严重干扰。基于应用装载 CXCR4 抑制剂 AMD3100 的珠子在颅侧轴旁中胚层进行的失活实验,在鸡的体内实验中导致 BA2 中 Tbx1 的表达减少。此外,在稍后阶段通过将这些珠子植入 BA2 来破坏这种趋化因子信号会导致 MyoR、Myf5 和 MyoD 表达减少。相比之下,基于将 SDF-1 珠子植入 BA2 的功能获得实验导致成肌祖细胞的吸引,这反映在这些成肌标记物的表达域向 SDF-1 源扩张。因此,Cxcr4 对于 BA2 衍生肌肉和非体节颈部肌肉的形成是必需的。