Literature DB >> 11245617

Ontogenetic, gravity-dependent development of rat soleus muscle.

Y Ohira1, T Tanaka, T Yoshinaga, F Kawano, T Nomura, I Nonaka, D L Allen, R R Roy, V R Edgerton.   

Abstract

We tested the hypothesis that rat soleus muscle fiber growth and changes in myosin phenotype during the postnatal, preweaning period would be largely independent of weight bearing. The hindlimbs of one group of pups were unloaded intermittently from postnatal day 4 to day 21: the pups were isolated from the dam for 5 h during unloading and returned for nursing for 1 h. Control pups were either maintained with the dam as normal or put on an alternating feeding schedule as described above. The enlargement of mass (approximately 3 times), increase in myonuclear number (approximately 1.6 times) and myonuclear domain (approximately 2.6 times), and transformation toward a slow fiber phenotype (from 56 to 70% fibers expressing type I myosin heavy chain) observed in controls were inhibited by hindlimb unloading. These properties were normalized to control levels or higher within 1 mo of reambulation beginning immediately after the unloading period. Therefore, chronic unloading essentially stopped the ontogenetic developmental processes of 1) net increase in DNA available for transcription, 2) increase in amount of cytoplasm sustained by that DNA pool, and 3) normal transition of myosin isoforms that occur in some fibers from birth to weaning. It is concluded that normal ontogenetic development of a postural muscle is highly dependent on the gravitational environment even during the early postnatal period, when full weight-bearing activity is not routine.

Entities:  

Keywords:  NASA Discipline Musculoskeletal; Non-NASA Center

Mesh:

Substances:

Year:  2001        PMID: 11245617     DOI: 10.1152/ajpcell.2001.280.4.C1008

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  11 in total

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6.  Effects of mechanical over-loading on the properties of soleus muscle fibers, with or without damage, in wild type and mdx mice.

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7.  The effects of low frequency electrical stimulation on satellite cell activity in rat skeletal muscle during hindlimb suspension.

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8.  Region-specific responses of adductor longus muscle to gravitational load-dependent activity in Wistar Hannover rats.

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9.  Effects of mild hyperbaric oxygen on osteoporosis induced by hindlimb unloading in rats.

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