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在自发跑动的大鼠中,股外侧肌的骨骼肌缓冲能力高于比目鱼肌。

Skeletal muscle buffering capacity is higher in the superficial vastus than in the soleus of spontaneously running rats.

作者信息

Weston A R, Wilson G R, Noakes T D, Myburgh K H

机构信息

Department of Physiology, University of Cape Town Medical School, South Africa.

出版信息

Acta Physiol Scand. 1996 Jun;157(2):211-6. doi: 10.1046/j.1365-201X.1996.488225000.x.

Abstract

Skeletal muscle buffering capacity (beta mtitr) was determined in soleus (type I) and superficial vastus (type II) muscles of 16 Long-Evans rats with differing levels of spontaneous activity and in 11 sedentary control rats. beta mtitr was 24% higher (P < 0.001) in superficial vastus muscle than in soleus muscle (268 +/- 50 vs. 216 +/- 30 mumol H+ g muscle dry wt-1 pH unit-1) (mean +/- SD). There was no relationship between beta mtitr and mean weekly running distance amongst spontaneously running rats, nor was beta mtitr any greater in these rats than in a group of sedentary control rats. Protein to wet wt ratio was 31% higher (P < 0.0001) in the superficial vastus muscle when compared with soleus muscle (22.04 +/- 3.74 vs. 16.77 +/- 3.00 mg protein, 100 mg wet wt muscle-1), but there was no relationship between protein to wet wt ratio and running distance. Initial muscle homogenate pH (pHi) was lower in superficial vastus muscle compared with soleus muscle (6.36 +/- 0.25 vs. 6.63 +/- 0.16). Running rats had a significantly lower pHi in both soleus and superficial vastus than sedentary controls. There was an exponential relationship between weekly running distance and pHi in both the superficial vastus muscle (r = -0.86. P < 0.001) and the soleus muscle (r = -0.73, P < 0.01). Citrate synthase activity correlated with weekly running distance in superficial vastus muscle (r = 0.66, P < 0.01) but not in soleus muscle. The results confirm a higher beta mtitr in the type II superficial vastus muscle when compared with the predominantly type I soleus muscle. We suggest that this may be partly the result of a higher protein concentration in type II muscle. Future studies measuring beta mtitr in mixed muscle (e.g. human vastus lateralis) should report fibre type composition.

摘要

在16只具有不同自发活动水平的长-伊文斯大鼠的比目鱼肌(I型)和股外侧浅肌(II型)以及11只久坐对照大鼠中测定了骨骼肌缓冲能力(βmtitr)。股外侧浅肌的βmtitr比目鱼肌高24%(P<0.001)(268±50对216±30μmol H⁺ g肌肉干重⁻¹ pH单位⁻¹)(平均值±标准差)。在自发跑步的大鼠中,βmtitr与平均每周跑步距离之间没有关系,这些大鼠的βmtitr也不比一组久坐对照大鼠更高。与比目鱼肌相比,股外侧浅肌的蛋白质与湿重比高31%(P<0.0001)(22.04±3.74对16.77±3.00 mg蛋白质/100 mg湿重肌肉⁻¹),但蛋白质与湿重比与跑步距离之间没有关系。股外侧浅肌初始肌肉匀浆pH值(pHi)低于比目鱼肌(6.36±0.25对6.63±0.16)。跑步大鼠的比目鱼肌和股外侧浅肌的pHi均显著低于久坐对照大鼠。股外侧浅肌(r = -0.86,P<0.001)和比目鱼肌(r = -0.73,P<0.01)的每周跑步距离与pHi之间均呈指数关系。柠檬酸合酶活性与股外侧浅肌的每周跑步距离相关(r = 0.66,P<0.01),但与比目鱼肌无关。结果证实,与主要为I型的比目鱼肌相比,II型股外侧浅肌的βmtitr更高。我们认为,这可能部分是由于II型肌肉中蛋白质浓度较高所致。未来在混合肌肉(如人类股外侧肌)中测量βmtitr的研究应报告纤维类型组成。

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