Kucera J, Walro J M, Reichler J
Department of Neurology, School of Medicine, Boston University, MA 02118.
Anat Embryol (Berl). 1993 Apr;187(4):397-408. doi: 10.1007/BF00185898.
The response of developing muscle spindles to denervation was studied by sectioning the nerve to the medial gastrocnemius muscle of rats at birth. The denervated spindles were examined daily throughout the first postnatal week for changes in ultrastructure and expression of several isoforms of myosin heavy chain (MHC). Each of the three different types of intrafusal muscle fiber exhibited a different response to denervation. Within 5 days after the nerve section nuclear bag2 fibers degenerated completely; nuclear bag1 fibers persisted, but ceased to express the 'spindle-specific' slow-tonic MHC isoform and thereby could not be differentiated from extrafusal fibers; nuclear chain fibers did not form. The capsules of spindles disassembled, hence spindles or their remnants could no longer be identified 1 week after denervation. Neonatal deefferentation has little effect on these features of developing spindles, so removal of afferent innervation is presumably the factor that induces the loss of spindles in denervated muscles. Degeneration of the bag2 fiber, but not bag1 or extrafusal fibers, reflects a greater dependence of the bag2 fiber than the bag1 fiber on afferent innervation for maintenance of its structural integrity. This difference in response of the two types of immature bag fiber to denervation might reflect an origin of the bag2 fibers from a lineage of myogenic cells distinct from that giving rise to bag1 or extrafusal fibers, or a difference in the length of contact with afferents between the two types of bag fiber prior to nerve section.
通过在大鼠出生时切断其腓肠肌内侧神经,研究发育中的肌梭对去神经支配的反应。在出生后的第一周每天检查去神经支配的肌梭,观察其超微结构变化以及几种肌球蛋白重链(MHC)同工型的表达情况。三种不同类型的梭内肌纤维对去神经支配表现出不同的反应。神经切断后5天内,核袋2纤维完全退化;核袋1纤维持续存在,但不再表达“纺锤体特异性”慢张力型MHC同工型,因此无法与梭外纤维区分;核链纤维未形成。肌梭的囊膜解体,因此去神经支配1周后无法再识别出肌梭或其残余部分。新生儿去传入神经对发育中肌梭的这些特征影响很小,所以去除传入神经支配可能是导致去神经支配肌肉中肌梭丧失的因素。核袋2纤维而非核袋1纤维或梭外纤维的退化,反映出核袋2纤维比核袋1纤维在维持其结构完整性方面对传入神经支配的依赖性更强。两种未成熟核袋纤维对去神经支配反应的这种差异,可能反映出核袋2纤维起源于与产生核袋1纤维或梭外纤维的成肌细胞谱系不同的谱系,或者反映出在神经切断之前两种核袋纤维与传入神经接触时间的差异。