Effect of Neuromuscular Blockade on Enzymatic Activities of Muscles
- 1 July 1970
- journal article
- research article
- Published by American Medical Association (AMA) in Archives of Neurology
- Vol. 23 (1) , 85-89
- https://doi.org/10.1001/archneur.1970.00480250089013
Abstract
MAMMALIAN skeletal muscles are composed of two main types of fibers which differ in metabolic and physiological properties. The type of fiber which predominates in "red" or slow muscles, such as the soleus, is marked by high activities of the enzymes of oxidative and lipid metabolism. By contrast, the fiber type which predominates in "white" or fast muscles, such as the extensor digitorum longus, has greater activity of the enzymes of anaerobic glycolysis.1-3 It has recently been established that the specific motor innervation plays an important role in determining these differences in muscle properties. After sectioning and cross-uniting nerves to red and white muscles, both the histochemical characteristics4,5 and the speeds of contraction of the muscles6,7 become reversed. Denervation results in slowing of both fast and slow muscles8,9 and disappearance of the differences in their enzymatic activities.10,11 influence these properties of muscle has beenThis publication has 9 references indexed in Scilit:
- Effect of botulinum toxin on speed of skeletal muscle contractionAmerican Journal of Physiology-Legacy Content, 1969
- Change in Enzyme Pattern after Cross-innervation of Fast and Slow Skeletal MuscleNature, 1967
- Effects of Cross-union of Motor Nerves to Fast and Slow Skeletal MusclesNature, 1965
- Atrophy of Skeletal Muscle in Chick Embryos Treated with Botulinum ToxinScience, 1964
- Electromyographic Findings in Experimental Botulinum IntoxicationActa Physiologica Scandinavica, 1961
- Supersensitivity of skeletal muscle produced by botulinum toxinThe Journal of Physiology, 1960
- A comparative histochemical study of oxidative enzyme and phosphorylase activity in skeletal muscleHistochemistry and Cell Biology, 1960
- An intracellular study of the action of repetitive nerve volleys and of botulinum toxin on miniature end‐plate potentialsThe Journal of Physiology, 1956
- The action of botulinum toxin on the neuro‐muscular junctionThe Journal of Physiology, 1949