Literature DB >> 1695058

Effects of denervation on enzyme-histochemical and morphometrical properties of the rat soleus muscle in relation to age.

T Ansved1, L Larsson.   

Abstract

The soleus muscle of young adult (5 months), adult (10-11 months) and old (23 months) male Wistar rats was unilaterally denervated for a period of 3 weeks and studied with regard to enzyme-histochemical and morphometrical properties. Denervation caused a marked atrophy of all fibres, irrespective of age and enzyme-histochemical type. Fibres having myofibrillar ATPase staining characteristics intermediate to type I and type IIA fibres increased in number in all age groups and a reduction in the number/proportion of type I fibres was found in adult and old animals. These results indicate that a slow-to-fast shift in myofibrillar properties as a consequence of denervation, shown to occur in the soleus muscle of young animals, also takes place in old age. This supports the view that atrophic fibres with intermediate myofibrillar ATPase staining characteristics, and possibly also atrophic IIA fibres, seen in old soleus muscle could be type I fibres which have undergone a transformation in response to the age-related denervation process.

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Year:  1990        PMID: 1695058     DOI: 10.1111/j.1748-1716.1990.tb08927.x

Source DB:  PubMed          Journal:  Acta Physiol Scand        ISSN: 0001-6772


  12 in total

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4.  Force-generation capacity of single vastus lateralis muscle fibers and physical function decline with age in African green vervet monkeys.

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5.  MyoVision: software for automated high-content analysis of skeletal muscle immunohistochemistry.

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6.  Impact of post-synaptic block of neuromuscular transmission, muscle unloading and mechanical ventilation on skeletal muscle protein and mRNA expression.

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7.  Single muscle fibre contractile properties in young and old men and women.

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8.  Fibres of intermediate type 1C and 2C are found continuously in mdx soleus muscle up to 52 weeks.

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9.  Denervation drives mitochondrial dysfunction in skeletal muscle of octogenarians.

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10.  Transcription factors in muscle atrophy caused by blocked neuromuscular transmission and muscle unloading in rats.

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