Home LiteratureArticle Details
PMID: 671308 Published · ppublish English Journal Article

Sprouting and regression of neuromuscular synapses in partially denervated mammalian muscles.

The Journal of physiology ·Vol. 278 ·1978-05-00 ·Pages 325-48

Brown MC, Ironton R

Abstract

1. The capacity of motor units to sprout after partial denervation and the ability of regenerating axons to suppress newly formed sprouts was examined in mouse skeletal muscle. Most experiments were performed on the peroneus tertius muscle which has 300 muscle fibres and eleven motor units ranging in strength from 1 to 35% of the total muscle tension. 2. Individual units, regardless of starting size, were able to sprout by up to 5 times their normal size following interruption of one of the two spinal roots innervating the muscle. In practive this resulted in muscles which had three or more units left intact becoming completely innervated again within 12 days. The majority of the sprouts probably innervated the old denervated end-plate sites. In the absence of re-innervation by the severed motor axons the sprouts persisted. In peroneus tertius about 60% of the sprouts giving rise to end-plates arose terminally and 40% collaterally. In soleus almost all the sprouts were terminal. 3. Re-innervation of the muscle by the severed motor axons occurred, starting from 14 days onwards after a crush injury, 19 days onwards after a cut. Re-innervation occurred even in muscles which presumably had no remaining denervated muscle fibres at the time regenerating axons reached the muscle. The re-innervating fibres grew to the original end-plate sites. 4. Following re-innervation the size of sprouted motor units apparently decreased. Thus, after re-innervation of muscles with three or more sprouted motor units, the sprouted units no longer caused contraction of all the muscle. However, the normal state of the muscle was not restored and the sprouted units continued to innervate more muscle fibres than normal, returning axons less than normal, and a small percentage of muscle fibres (ca. 10%) remained functionally innervated by axons of both sorts. 5. It is concluded that (i) in the mouse, axonal sprouting is a rapid and efficient process for restoring innervation; (ii) re-innervation of already innervated fibres can occur if the regenerating axons can return to existing end-plate sites; (iii) some of the redundant innervation is removed or repressed. 6. Possible mechanisms of competition between axon terminals are considered.

MeSH Terms
Animals Axons/physiology Female In Vitro Techniques Male Mice Motor Endplate/physiology Motor Neurons/physiology Muscle Contraction Muscle Denervation Muscles/innervation,physiology Nerve Regeneration Neural Conduction Synapses/physiology
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Brown M C
Ironton R
References (38)
38 references, click to expand
  1. An investigation into the possible existence of polyneuronal innervation of individual skeletal muscle fibres in certain hind-limb muscles of the cat.
    J Physiol. 1960 Jun;151:436-57 PMID: 13804979
  2. Age changes in conduction velocity, refractory period, number of fibers, connective tissue space and blood vessels in sciatic nerve of rats.
    J Comp Neurol. 1956 Feb;104(1):1-16 PMID: 13306825
  3. THE LOCALIZATION OF CHOLINESTERASE ACTIVITY IN RAT CARDIAC MUSCLE BY ELECTRON MICROSCOPY.
    J Cell Biol. 1964 Nov;23:217-32 PMID: 14222810
  4. THE CONDUCTION VELOCITY OF REGENERATED PERIPHERAL NERVE FIBRES.
    J Physiol. 1964 May;171:164-75 PMID: 14170140
  5. Neuromuscular function after regeneration of interrupted nerve fibers into partially denervated muscle.
    Exp Neurol. 1962 Aug;6:129-41 PMID: 13903146
  6. The persistence of hyperneurotized end plates in mammalian muscles.
    J Comp Neurol. 1953 Oct;99(2):331-45 PMID: 13109028
  7. Collateral nerve regeneration.
    Q Rev Biol. 1953 Sep;28(3):260-76 PMID: 13100619
  8. Re-innervation of paretic muscle by collateral branching of the residual motor innervation.
    J Comp Neurol. 1952 Oct;97(2):385-407 PMID: 12999994
  9. An analysis of the end-plate potential recorded with an intracellular electrode.
    J Physiol. 1951 Nov 28;115(3):320-70 PMID: 14898516
  10. Fate of interrupted nerve-fibres regenerating into partially denervated muscles.
    Aust J Exp Biol Med Sci. 1951 May;29(3):211-19 PMID: 14869282
  11. The behavior of residual axons in partially denervated muscles of the monkey.
    J Exp Med. 1951 Mar;93(3):207-16 PMID: 14824396
  12. Local re-innervation in partially denervated muscle; a histophysiological study.
    Aust J Exp Biol Med Sci. 1950 Jul;28(4):383-97 PMID: 14800805
  13. Prevention of motor nerve sprouting in botulinum toxin poisoned mouse soleus muscles by direct stimulation of the muscle [proceedings].
    J Physiol. 1977 May;267(1):42P-43P PMID: 874856
  14. Polyneuronal innervation of skeletal muscle in new-born rats and its elimination during maturation.
    J Physiol. 1976 Oct;261(2):387-422 PMID: 978579
  15. The formation and regression of synapses during the re-innervation of axolotl striated muscles.
    J Physiol. 1977 Feb;265(2):261-95 PMID: 191597
  16. Reaction of intact spinal motoneurones to partial denervation of the muscle.
    J Physiol. 1977 Feb;265(1):175-91 PMID: 850159
  17. Electrophysiological experiments on the mechanism and accuracy of neuromuscular specificity in the axolotl.
    Philos Trans R Soc Lond B Biol Sci. 1977 Apr 26;278(961):335-47 PMID: 19787
  18. The elimination of synapses in multiply-innervated skeletal muscle fibres of the rat: dependence on distance between end-plates.
    Brain Res. 1977 Dec 16;138(2):353-8 PMID: 589480
  19. The extent of sprouting of remaining motor units in partly denervated immature and adult rat soleus muscle.
    Neuroscience. 1977;2(4):523-35 PMID: 917280
  20. Motor neurone sprouting induced by prolonged tetrodotoxin block of nerve action potentials.
    Nature. 1977 Feb 3;265(5593):459-61 PMID: 834299
  21. Altered patterns of innervation in frog muscle after denervation.
    J Neurocytol. 1976 Dec;5(6):719-30 PMID: 1087338
  22. Precision of reinnervation of original postsynaptic sites in frog muscle after a nerve crush.
    J Neurocytol. 1976 Dec;5(6):691-718 PMID: 1087337
  23. Morphological aspects of the elimination of polyneuronal innervation of skeletal muscle fibres in newborn rats.
    J Neurocytol. 1976 Oct;5(8):591-604 PMID: 978234
  24. Isometric contractions of motor units in a fast twitch muscle of the cat.
    J Physiol. 1973 May;231(1):87-104 PMID: 4715372
  25. Neuromuscular transmission in new-born rats.
    J Physiol. 1970 Aug;209(3):701-9 PMID: 5499804
  26. Dynamic properties of denervated fast and slow twitch muscle of the cat.
    J Physiol. 1974 Feb;237(1):103-13 PMID: 4851461
  27. The formation of synapses in reinnervated and cross-reinnervated striated muscle during development.
    J Physiol. 1974 Sep;241(2):547-73 PMID: 4443928
  28. An electron-microscopic study of zinc iodide-osmium impregnation of neurons. I. Staining of synaptic vesicles at cholinergic junctions.
    Brain Res. 1968 Feb;7(2):286-95 PMID: 4170541
  29. The interaction between foreign and original motor nerves innervating the soleus muscle of rats.
    J Physiol. 1975 Jun;247(3):725-43 PMID: 1142305
  30. Sprouting and degeneration of mammalian motor axons in normal and de-afferentated skeletal muscle.
    Proc R Soc Lond B Biol Sci. 1966 Jan 18;163(993):538-54 PMID: 4379292
  31. The effects of botulinum toxin on the pattern of innervation of skeletal muscle in the mouse.
    Q J Exp Physiol Cogn Med Sci. 1968 Jan;53(1):84-9 PMID: 4297234
  32. Dynamic properties of mammalian skeletal muscles.
    Physiol Rev. 1972 Jan;52(1):129-97 PMID: 4256989
  33. Formation and regression of inappropriate nerve sprouts during trochlear nerve regeneration in Xenopus laevis.
    J Comp Neurol. 1974 Oct 15;157(4):391-406 PMID: 4418001
  34. Maintained function of foreign synapses on hyperinnervated skeletal muscle fibres of the rat.
    Nature. 1974 Feb 8;247(5440):375-6 PMID: 4817857
  35. Competition between nerves for functional connexions with axolotl muscles.
    Nature. 1973 May 25;243(5404):201-3 PMID: 4706290
  36. The formation of neuromuscular synapses.
    Cold Spring Harb Symp Quant Biol. 1976;40:409-24 PMID: 1065534
  37. An electron microscopic study of the changes induced by botulinum toxin in the motor end-plates of slow and fast skeletal muscle fibres of the mouse.
    J Neurol Sci. 1971 Sep;14(1):47-60 PMID: 5119451
  38. Muscle fibre growth in five different muscles in both sexes of mice.
    J Anat. 1969 May;104(Pt 3):519-30 PMID: 5804561
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1978-05-00
Pages
325-48
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1282352
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com