MacIntosh B R, Gardiner P F
Can J Physiol Pharmacol. 1987 Feb;65(2):260-8. doi: 10.1139/y87-046.
The purpose of this study was to determine the interaction of three factors that modify twitch contraction amplitude in the rat gastrocnemius muscle in situ: posttetanic potentiation, fatigue, and caffeine. Posttetanic (200 Hz for 1 s) twitch responses were observed before and after 15 Hz stimulation for 6 min (group FS), injection of caffeine (75 mg/kg dissolved in saline, group NC), a combination of both repetitive stimulation and caffeine injection (group FC), or no treatment (group NS). Developed tension increased significantly with posttetanic potentiation and caffeine injection and these potentiating factors were additive (group NC). Repetitive stimulation attenuated the twitch response and the fatigued muscle was still responsive to the potentiating factors. Posttetanic potentiation was accomplished primarily by a significant increase in the peak rate of force development whereas caffeine potentiation and fatigue were effected with a proportional change in contraction time. It seems likely that the mechanism of posttetanic potentiation is not the same as the mechanism of caffeine-induced potentiation. Caffeine-induced potentiation is known to be related to increased release of calcium. Because changes in contraction time with fatigue were opposite to those associated with caffeine potentiation, it is proposed that the attenuated twitch response in fatigue results from reduced release of calcium.
强直后增强、疲劳和咖啡因。在进行15 Hz刺激6分钟后(FS组)、注射咖啡因(75 mg/kg溶于生理盐水,NC组)、重复刺激与注射咖啡因相结合(FC组)或不进行处理(NS组)之前和之后,观察强直后(200 Hz,持续1 s)抽搐反应。强直后增强和注射咖啡因后,肌肉产生的张力显著增加,并且这些增强因素具有叠加性(NC组)。重复刺激减弱了抽搐反应,且疲劳的肌肉对增强因素仍有反应。强直后增强主要是通过力发展的峰值速率显著增加来实现的,而咖啡因增强和疲劳则是通过收缩时间的比例变化来实现的。强直后增强的机制似乎与咖啡因诱导的增强机制不同。已知咖啡因诱导的增强与钙释放增加有关。由于疲劳时收缩时间的变化与咖啡因增强时的变化相反,因此有人提出,疲劳时抽搐反应减弱是由于钙释放减少所致。