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后肢悬吊后大鼠快肌纤维的大小和代谢特性

Size and metabolic properties of fibers in rat fast-twitch muscles after hindlimb suspension.

作者信息

Roy R R, Bello M A, Bouissou P, Edgerton V R

出版信息

J Appl Physiol (1985). 1987 Jun;62(6):2348-57. doi: 10.1152/jappl.1987.62.6.2348.

Abstract

Hindlimb suspension (HS) results in whole muscle atrophic and metabolic changes that vary in magnitude in different hindlimb muscles. The present study was designed to investigate these effects in single fibers. Fiber type and size and the activities of two metabolic marker enzymes were determined in a deep (close to the bone) and a superficial (away from the bone) region of the medial gastrocnemius (MG) and the tibialis anterior (TA) of control (CON) and 28-day HS adult female rats. Fibers were classified as dark or light adenosinetriphosphatase (ATPase) based on their qualitative staining reaction for myosin ATPase following alkaline preincubation. Fiber area and succinate dehydrogenase (SDH) and alpha-glycerophosphate dehydrogenase (GPD) activities were determined in tissue sections by use of an image analysis system. After 28 days of HS, the mean body weights of the CON and HS were similar. MG atrophied 28%, whereas TA weight was maintained in the HS. Both dark and light ATPase fibers in the deep region of the MG had smaller cross-sectional areas following HS, with the atrophic response being approximately twice as great in the light ATPase fibers. No significant changes in fiber type composition in either muscle or in fiber sizes in the superficial region of the MG or in either region of the TA were observed. Mean SDH activities of both fiber types were significantly lower in the MG and TA following HS. In contrast, mean GPD activities were either increased or maintained in light and dark ATPase fibers of both muscles in HS. Changes in SDH and GPD activity could not be directly linked to changes in fiber cross-sectional area. In summary, these data suggest an independence of the mechanisms determining muscle fiber size and metabolic adaptations associated with HS.

摘要

后肢悬吊(HS)会导致整个肌肉出现萎缩和代谢变化,不同后肢肌肉的变化程度有所不同。本研究旨在调查单根肌纤维中的这些影响。在对照(CON)组和28天HS处理的成年雌性大鼠的腓肠肌内侧头(MG)和胫骨前肌(TA)的深部(靠近骨骼)和浅部(远离骨骼)区域,测定了纤维类型、大小以及两种代谢标记酶的活性。根据碱性预孵育后肌球蛋白ATP酶的定性染色反应,将纤维分为暗或亮腺苷三磷酸酶(ATPase)纤维。通过图像分析系统在组织切片中测定纤维面积、琥珀酸脱氢酶(SDH)和α-甘油磷酸脱氢酶(GPD)的活性。HS处理28天后,CON组和HS组的平均体重相似。MG萎缩了28%,而HS组TA的重量保持不变。HS处理后,MG深部区域的暗、亮ATPase纤维的横截面积均变小,亮ATPase纤维的萎缩反应约为暗ATPase纤维的两倍。在MG的浅部区域或TA的任何一个区域,均未观察到肌肉纤维类型组成或纤维大小的显著变化。HS处理后,MG和TA中两种纤维类型的平均SDH活性均显著降低。相比之下,HS组中两种肌肉的亮、暗ATPase纤维的平均GPD活性要么增加,要么保持不变。SDH和GPD活性的变化与纤维横截面积的变化没有直接关联。总之,这些数据表明,决定肌肉纤维大小的机制与HS相关的代谢适应性机制相互独立。

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