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Muscle patterning differentiation and vascularisation in the chick wing bud

机译:鸡翼芽中的肌肉图案分化和血管形成

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摘要

Adult muscle is highly vascularised, with blood vessels being essential for adequate oxygenation of the tissue and for supporting increased metabolic demands. Whether this is the case during muscle development has not been examined. Resin histology was used to map the muscle splitting process and conventional transmission electron microscopy to examine early muscle differentiation at the midlimb level or later at the mid radius/ulna level in the chick wing bud from stages 24 (4.5 d) to 36 (10 d) (Hamburger & Hamilton, 1951). Microinjection of India Ink into the extra-embryonic vasculature was used to visualise the patent muscle microcirculation. The results showed that the premuscle masses are present at stage 24 and initial splitting of the muscle masses commences at stage 28. The final muscle pattern is not established until stage 36. At stage 26 the cells within the premuscle masses exhibited a mesenchymal morphology, but at stage 28 overt muscle differentiation was evident with myofibrils present within myoblasts. Undifferentiated mononucleated cells were interspersed with the differentiating myoblasts. The ratio of mononucleated cells∶myoblasts decreased and the myoblasts became plumper and increasingly packed with myofibrils with age. There was no evidence of secondary myotube formation at any of the stages examined. Vascular invasion of the limb occurred at stage 35 just prior to the establishment of the final muscle pattern. This was surprising as it was assumed that myogenic differentiation would be both oxygen and nutrient dependent. The results of this study provide descriptions of the splitting of the premuscle masses through to the establishment of the final muscle pattern at the midlimb or mid radius/ulna level of the chick wing bud together with the differentiation of the myogenic cells within the developing muscles. However, the relationship between muscle patterning at the tissue level and muscle differentiation at the cellular level with vascularisation remains unclear. It is hoped that the results of the study may provide the basis for future investigations into mechanisms involved in muscle patterning and the signalling mechanisms for vascular invasion.
机译:成年肌肉高度血管化,血管对于组织的充分充氧和支持新陈代谢需求至关重要。尚未检查肌肉发育过程中是否是这种情况。树脂组织学用于绘制肌肉分裂过程的图谱和常规的透射电子显微镜,以检查从24阶段(4.5 d)到36阶段(10 d)的鸡翅芽中中肢水平早期的肌肉分化,或稍后在中半径/尺骨水平的肌肉分化。 )(Hamburger&Hamilton,1951年)。将微细的印度墨水注射到胚外血管中可以观察到肌肉的微循环。结果表明,前肌肉块存在于第24阶段,而肌肉块的初始分裂始于第28阶段。最终的肌肉模式直到第36阶段才建立。在第26阶段,前肌肉块中的细胞表现出间充质形态,但在第28阶段,成肌细胞内存在肌原纤维,明显的肌肉分化。未分化的单核细胞散布着分化的成肌细胞。随着年龄的增长,单核细胞:成肌细胞的比例下降,成肌细胞变得丰满,并充满了肌原纤维。在所检查的任何阶段都没有继发性肌管形成的证据。肢体的血管浸润发生在第35阶段,恰好建立最终的肌肉模式之前。这是令人惊讶的,因为假定肌原性分化将同时依赖于氧气和营养。这项研究的结果描述了前肌肉群的分裂,直至在鸡翼芽的中肢或中半径/尺骨水平建立最终的肌肉模式,以及在发育中的肌肉中分化成肌细胞。但是,组织水平的肌肉图案与细胞水平的血管分化与血管形成之间的关系仍不清楚。希望这项研究的结果可以为今后研究涉及肌肉图案形成的机制和血管入侵的信号传导机制提供基础。

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