首页> 美国卫生研究院文献>The Journal of Physiology >Greater hydrogen ion-induced depression of tension and velocity in skinned single fibres of rat fast than slow muscles.
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Greater hydrogen ion-induced depression of tension and velocity in skinned single fibres of rat fast than slow muscles.

机译:与慢肌相比大鼠皮外单纤维中氢离子引起的张力和速度下降更大。

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摘要

1. The effects of variations in pH between 7.00 and 6.20 on Ca2+ -activated tension development and maximum velocity of shortening (Vmax) were examined in skinned single skeletal fibres from rat slow-twitch soleus and fast-twitch superficial (s.v.l.) and deep (d.v.l.) regions of the vastus lateralis muscle. 2. At pH 6.50, Vmax was depressed to a similar degree in each of the soleus, d.v.l., and s.v.l. fibres. Lowering pH to 6.20 resulted in a further decline in Vmax in all fibres; however, differences between the slow fibres, identified by SDS-polyacrylamide gel electrophoresis, and fast fibres were apparent, with soleus retaining a significantly greater proportion of its control Vmax (0.83 +/- 0.03 in soleus vs. 0.69 +/- 0.03 in s.v.l.; mean +/- S.E.M.). 3. Maximum force production decreased significantly as pH was reduced. Peak force at pH 6.50, relative to that at pH 7.00, was significantly greater in soleus (0.80 +/- 0.01) than in the s.v.l. (0.75 +/- 0.01) fibres. At pH 6.20 these differences between slow and fast fibres were still greater, in that soleus fibres generated significantly greater relative forces (0.73 +/- 0.01) than did d.v.l. (0.67 +/- 0.02) or s.v.l. (0.63 +/- 0.02) fibres. 4. As pH was lowered the tension-pCa relationship shifted to the right (i.e. to higher [Ca2+]), indicating a reduction in the Ca2+ sensitivity of tension development. The [Ca2+] necessary to achieve half-maximal tension in both the slow- and fast-twitch fibres increased approximately 5-fold when pH was lowered from 7.00 to 6.20. Furthermore, in the case of the soleus, the Ca2+ threshold for tension development was 45 times greater at pH 6.20 than at pH 7.00, while in the fast-twitch fibres, this increase was 4-fold. 5. Increased [H+] differentially affected the steepness of the tension-pCa relationship between slow and fast fibres. As pH was lowered, the steepness of the lower portion of the tension-pCa curve increased in the soleus and decreased in d.v.l. and s.v.l., suggesting that apparent positive co-operativity of tension development had increased in soleus and decreased in d.v.l. and s.v.l. fibres. 6. These results (1) demonstrate an increased resistance to H+ ion-mediated contractile dysfunction in slow- compared to fast-twitch single fibres, and (2) support the hypothesis that muscular fatigue resulting from short-term, intense muscular contraction may in part be related to elevated H+ ion concentration.
机译:1.在大鼠慢速比目鱼比目鱼肌和快肌浅表比目鱼(svl)和深部(svl)的皮肤单根骨骼纤维中,研究了pH在7.00至6.20之间变化对Ca2 +激活的张力发展和最大缩短速度(Vmax)的影响。 dvl)股外侧肌区域。 2.在pH 6.50下,比目鱼d.v.l.和s.v.l中的Vmax被压低到相似的程度。纤维。将pH降低至6.20会导致所有纤维的Vmax进一步下降;然而,通过SDS-聚丙烯酰胺凝胶电泳鉴定的慢速纤维与快速纤维之间的差异是明显的,比目鱼肌保留了其对照Vmax的更大比例(比目鱼肌为0.83 +/- 0.03比svl为0.69 +/- 0.03 ;平均值+/- SEM)。 3.随着pH值降低,最大力产生显着下降。在比目鱼肌中,相对于pH 7.00的pH值,比目鱼肌的峰值力(0.80 +/- 0.01)明显更大。 (0.75 +/- 0.01)纤维。在pH 6.20时,慢速纤维和快速纤维之间的差异仍然更大,因为比目鱼纤维产生的相对力比d.v.1大得多(0.73 +/- 0.01)。 (0.67 +/- 0.02)或s.v.l. (0.63 +/- 0.02)纤维。 4.随着pH降低,张力-pCa关系向右移动(即,向更高的[Ca 2+]),这表明张力发展的Ca 2+敏感性降低。当pH值从7.00降低到6.20时,在慢速和快速拉伸纤维中都需要达到半张最大张力的[Ca2 +]增加了大约5倍。此外,在比目鱼肌的情况下,在pH 6.20时,张力发展的Ca2 +阈值是在pH 7.00时的45倍,而在快速拉伸纤维中,这种增加是4倍。 5. [H +]的增加对慢速和快速纤维之间的张力-pCa关系的陡度有不同的影响。随着pH值的降低,比目鱼肌的张力-pCa曲线下部的陡度增加,而d.v.l降低。 s.v.l.和s.v.l.,表明比目鱼肌张力增加的明显的正合作性在d.v.l.中增加了。和s.v.l.纤维。 6.这些结果(1)证明与慢速单纤维相比,慢速纤维对H +离子介导的收缩功能障碍的抵抗力增强,并且(2)支持以下假设:短期,剧烈的肌肉收缩可能导致肌肉疲劳部分与H +离子浓度升高有关。

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