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1.
Braz. j. med. biol. res ; 49(2): e4118, 2016. tab, graf
Article in English | LILACS | ID: lil-766982

ABSTRACT

The aim of this study was to determine the effects of intermittent passive manual stretching on various proteins involved in force transmission in skeletal muscle. Female Wistar weanling rats were randomly assigned to 5 groups: 2 control groups containing 21- and 30-day-old rats that received neither immobilization nor stretching, and 3 test groups that received 1) passive stretching over 3 days, 2) immobilization for 7 days and then passive stretching over 3 days, or 3) immobilization for 7 days. Maximal plantar flexion in the right hind limb was imposed, and the stretching protocol of 10 repetitions of 30 s stretches was applied. The soleus muscles were harvested and processed for HE and picrosirius staining; immunohistochemical analysis of collagen types I, III, IV, desmin, and vimentin; and immunofluorescence labeling of dystrophin and CD68. The numbers of desmin- and vimentin-positive cells were significantly decreased compared with those in the control following immobilization, regardless of whether stretching was applied (P<0.05). In addition, the semi-quantitative analysis showed that collagen type I was increased and type IV was decreased in the immobilized animals, regardless of whether the stretching protocol was applied. In conclusion, the largest changes in response to stretching were observed in muscles that had been previously immobilized, and the stretching protocol applied here did not mitigate the immobilization-induced muscle changes. Muscle disuse adversely affected several proteins involved in the transmission of forces between the intracellular and extracellular compartments. Thus, the 3-day rehabilitation period tested here did not provide sufficient time for the muscles to recover from the disuse maladaptations in animals undergoing postnatal development.


Subject(s)
Animals , Female , Immobilization/physiology , Muscle Stretching Exercises , Muscle Fibers, Skeletal/metabolism , Muscle Proteins/metabolism , Muscle Strength/physiology , Antigens, CD/analysis , Antigens, Differentiation, Myelomonocytic/analysis , Collagen Type I/analysis , Collagen Type I/metabolism , Collagen Type III/analysis , Collagen Type III/metabolism , Collagen Type IV/analysis , Collagen Type IV/metabolism , Desmin/analysis , Desmin/metabolism , Dystrophin/analysis , Fluorescent Antibody Technique , Inclusion Bodies/metabolism , Random Allocation , Rats, Wistar , Time Factors , Vimentin/analysis , Vimentin/metabolism
2.
Braz. j. med. biol. res ; 47(6): 483-491, 06/2014. graf
Article in English | LILACS | ID: lil-709445

ABSTRACT

Extracellular matrix and costamere proteins transmit the concentric, isometric, and eccentric forces produced by active muscle contraction. The expression of these proteins after application of passive tension stimuli to muscle remains unknown. This study investigated the expression of laminin and dystrophin in the soleus muscle of rats immobilized with the right ankle in plantar flexion for 10 days and subsequent remobilization, either by isolated free movement in a cage or associated with passive stretching for up to 10 days. The intensity of the macrophage response was also evaluated. One hundred and twenty-eight female Wistar rats were divided into 8 groups: free for 10 days; immobilized for 10 days; immobilized/free for 1, 3, or 10 days; or immobilized/stretched/free for 1, 3, or 10 days. After the experimental procedures, muscle tissue was processed for immunofluorescence (dystrophin/laminin/CD68) and Western blot analysis (dystrophin/laminin). Immobilization increased the expression of dystrophin and laminin but did not alter the number of macrophages in the muscle. In the stretched muscle groups, there was an increase in dystrophin and the number of macrophages after 3 days compared with the other groups; dystrophin showed a discontinuous labeling pattern, and laminin was found in the intracellular space. The amount of laminin was increased in the muscles treated by immobilization followed by free movement for 10 days. In the initial stages of postimmobilization (1 and 3 days), an exacerbated macrophage response and an increase of dystrophin suggested that the therapeutic stretching technique induced additional stress in the muscle fibers and costameres.


Subject(s)
Animals , Female , Dystrophin/metabolism , Immobilization/methods , Laminin/metabolism , Macrophages/metabolism , Muscle Stretching Exercises/methods , Muscle, Skeletal/physiology , Blotting, Western , Dystrophin/isolation & purification , Extracellular Matrix/metabolism , Fluorescent Antibody Technique , Intracellular Space/metabolism , Laminin/isolation & purification , Mechanotransduction, Cellular/physiology , Muscle, Skeletal/injuries , Rats, Wistar
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