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成年慢性脊髓猫腓肠肌内侧纤维的酶可塑性

Enzymatic plasticity of medial gastrocnemius fibers in the adult chronic spinal cat.

作者信息

Jiang B, Roy R R, Edgerton V R

机构信息

Brain Research Institute, University of California, Los Angeles 90024-1564.

出版信息

Am J Physiol. 1990 Sep;259(3 Pt 1):C507-14. doi: 10.1152/ajpcell.1990.259.3.C507.

Abstract

The metabolic plasticity of single fibers in adult cat medial gastrocnemius (MG) 6 mo after complete spinal cord transection (Sp) at T12-T13 was studied. Some Sp cats were trained to weight support (Sp-WS) 30 min/day beginning 1 mo posttransection. Cross-sectional area, succinate dehydrogenase (SDH), alpha-glycerophosphate dehydrogenase (GPD), and myofibrillar adenosinetriphosphatase (ATPase) activities were determined in fibers identified in frozen serial sections. Fibers were categorized as light or dark based on myosin ATPase staining, alkaline preincubation. The percentage of dark ATPase fibers was higher in Sp and Sp-WS (approximately 85%) than in control (approximately 60%). All dark ATPase fibers reacted positively to a fast myosin heavy chain monoclonal antibody. In both spinal groups, a higher percentage of dark ATPase fibers reacted to both fast and slow myosin heavy chain antibodies than in controls. Neither Sp nor Sp-WS cats showed fiber atrophy. Compared with control, SDH activity was decreased in both fiber types of Sp cats. Daily weight-support training ameliorated this adaptation. There were no differences among the three groups in mean GPD and ATPase activities for either fiber type. There was a slight tendency, however, for spinal cats to have higher GPD and ATPase activities (independent of type) than control, probably reflecting the larger proportion of dark ATPase fibers in these cats. These observations indicate that 6 mo after spinalization in adult cats, some of the fibers of a fast muscle became "faster" and developed oxidative and glycolytic enzyme profiles that normally are exhibited in fast fatigable motor units.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

研究了成年猫在T12 - T13水平完全脊髓横断(Sp)6个月后,内侧腓肠肌(MG)单根纤维的代谢可塑性。部分脊髓横断猫在横断后1个月开始,每天接受30分钟的负重支持训练(Sp - WS)。测定了冰冻连续切片中鉴定出的纤维的横截面积、琥珀酸脱氢酶(SDH)、α - 甘油磷酸脱氢酶(GPD)和肌原纤维三磷酸腺苷酶(ATPase)活性。根据肌球蛋白ATPase染色、碱性预孵育,将纤维分为浅色或深色。脊髓横断组和负重支持训练的脊髓横断组中深色ATPase纤维的百分比(约85%)高于对照组(约60%)。所有深色ATPase纤维对快速肌球蛋白重链单克隆抗体呈阳性反应。在两个脊髓损伤组中,对快速和慢速肌球蛋白重链抗体均呈阳性反应的深色ATPase纤维百分比高于对照组。脊髓横断组和负重支持训练的脊髓横断组均未出现纤维萎缩。与对照组相比,脊髓横断猫的两种纤维类型的SDH活性均降低。每日负重支持训练改善了这种适应性变化。三组中任何一种纤维类型的平均GPD和ATPase活性均无差异。然而,脊髓损伤猫的GPD和ATPase活性(与纤维类型无关)有略高于对照组的趋势,这可能反映了这些猫中深色ATPase纤维的比例更大。这些观察结果表明,成年猫脊髓横断6个月后,快肌的一些纤维变得“更快”,并形成了通常在快速疲劳运动单位中表现出的氧化和糖酵解酶谱。(摘要截取自250字)

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