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首页> 外文期刊>Anatomy and embryology >Decamethonium bromide-mediated inhibition of embryonic muscle development.
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Decamethonium bromide-mediated inhibition of embryonic muscle development.

机译:溴化十癸铵对胚胎肌肉发育的抑制作用。

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摘要

This study determined the effect of decamethonium bromide (DMBr), a non-competitive blocker of the neuromuscular junction, on skeletal muscle development during chick embryogenesis. Decamethonium bromide caused generalized edema and high mortality with treated embryos rarely surviving beyond day 16 of incubation. Muscle degeneration was grossly evident on the muscles of abdomen, pectoral girdle, and leg. Semi-thin sections showed a high infiltration of macrophages in treated embryos and a massive degenerative process. Electron microscopy showed that both fast and slow fibers formed in the control and treated embryos, but those of the treated embryos failed to form myofibrils. Other organ systems, such as the heart and the gut, appeared histologically normal throughout the course of treatment. To investigate possible nerve independent action of DMBr on muscle development we determined the effect of this compound on the growth and differentiation of the C2C12 skeletal muscle cell line. DMBr treatment of C2C12 cell cultures did not affect the growth or survival of the cells, even at a tenfold higher concentration than that used in ovo, but myosin heavy chain expression was dramatically inhibited. We conclude that DMBr has a nerve independent blocking inhibition effect on myosin heavy chain synthesis in the developing avian embryo besides the recognized role as a non-competitive post-synaptic blocker of the neuromuscular junction.
机译:这项研究确定了非竞争性神经肌肉接头阻滞剂溴化十溴甲烷(DMBr)对雏鸡胚胎发生过程中骨骼肌发育的影响。溴化十溴铵导致普遍的水肿和高死亡率,处理过的胚胎在孵育第16天后很少存活。腹部,胸带和腿部肌肉明显出现肌肉变性。半薄切片显示经处理的胚胎中巨噬细胞的高度浸润和大量的变性过程。电子显微镜显示,在对照和处理过的胚胎中均形成了快纤维和慢纤维,但是处理过的胚胎中却没有形成肌原纤维。在整个治疗过程中,其他器官系统,如心脏和肠道,在组织学上似乎是正常的。为了研究DMBr对肌肉发育的可能的神经独立作用,我们确定了该化合物对C2C12骨骼肌细胞系生长和分化的影响。 DMBr处理C2C12细胞培养物,即使其浓度比卵内使用的浓度高十倍,也不会影响细胞的生长或存活,但是肌球蛋白的重链表达受到了显着抑制。我们得出的结论是,DMBr除了对神经肌肉接头的非竞争性突触后阻滞剂的作用外,还对发育中的禽类胚胎肌球蛋白重链合成具有神经独立的阻滞作用。

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