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蝾螈(Triturus cristatus)骨骼肌的选择性再支配。

Selective reinnervation of skeletal muscle in the newt Triturus cristatus.

作者信息

Holder N, Mills J, Tonge D A

出版信息

J Physiol. 1982 May;326:371-84. doi: 10.1113/jphysiol.1982.sp014199.

Abstract
  1. A study was made of the effectiveness of synapses formed by foreign and original nerves during reinnervation of skeletal muscle of the newt Triturus cristatus. The extensor cranialis nerve (e.c.n.) of the forelimb was implanted into the humeroantebrachialis muscle (biceps) which was denervated by cutting or crushing the forelimb flexor nerve (f.f.n.). 2. Although biceps became innervated by the implanted nerve, neuromuscular transmission was abnormal. The ratio of the tensions developed by biceps during single and repetitive (50 Hz) stimulation of e.c.n. was lower than either that obtained in normal biceps or during stimulation of f.f.n. after it had regenerated. Similarly, the mean quantal content of e.p.p.s evoked in biceps during stimulation of e.c.n. were lower (m = 17.1) than those evoked in normal muscles (m = 74.6) or during stimulation of the regenerated f.f.n. (m = 40.4). 3. Although the implanted e.c.n. had innervated biceps, after 2-3 months a sprout had grown out of the side of the nerve to reinnervate the extensor digitorum communis muscle (e.d.c.) of the forearm. The mean quantal content of e.p.p.s evoked in this muscle by stimulation of e.c.n. (m = 32.2) was higher than that of those e.p.p.s evoked by stimulation of e.c.n. (m = 32.2) was higher than that of those e.p.p.s evoked by stimulation of the same nerve in biceps (m = 17.1). 4. The results suggest that the synapses formed when a muscle is innervated by an inappropriate nerve are less effective than those formed when reinnervation by the correct nerve occurs. This may account for the tendency of the inappropriate synapses to regress following reinnervation by the correct nerve. In addition however, in the newt there seem to exist mechanisms which ensure that regenerating nerves reinnervate their correct muscles.
摘要
  1. 对美西螈(Triturus cristatus)骨骼肌再支配过程中外源神经和原始神经形成的突触效能进行了研究。将前肢的颅侧伸肌神经(e.c.n.)植入通过切断或挤压前肢屈肌神经(f.f.n.)而失神经支配的肱前肌(二头肌)。2. 尽管二头肌由植入神经支配,但神经肌肉传递异常。在对e.c.n.进行单次和重复(50赫兹)刺激时,二头肌产生的张力比正常二头肌或f.f.n.再生后刺激时获得的张力比值更低。同样,在刺激e.c.n.时,二头肌中诱发的终板电位(e.p.p.s)的平均量子含量较低(m = 17.1),低于正常肌肉中诱发的(m = 74.6)或刺激再生的f.f.n.时诱发的(m = 40.4)。3. 尽管植入的e.c.n.已支配二头肌,但2 - 3个月后,一条新芽从神经一侧长出,重新支配前臂的指总伸肌(e.d.c.)。通过刺激e.c.n.在该肌肉中诱发的e.p.p.s的平均量子含量(m = 32.2)高于在二头肌中由相同神经刺激诱发的e.p.p.s的平均量子含量(m = 17.1)。4. 结果表明,当肌肉由不适当神经支配时形成的突触比由正确神经再支配时形成的突触效能更低。这可能解释了不适当突触在由正确神经再支配后趋于退化的趋势。然而,此外,在美西螈中似乎存在确保再生神经重新支配其正确肌肉的机制。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf2/1251481/ecb7498a656f/jphysiol00680-0395-a.jpg

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