Munro D D, Wendt I R
Department of Physiology, Monash University, Clayton, Victoria, Australia.
J Urol. 1993 Aug;150(2 Pt 1):529-36. doi: 10.1016/s0022-5347(17)35541-6.
Longitudinal smooth muscle strips taken from the urinary bladders of Sprague-Dawley rats, aged approximately 6 months and 24 months, were examined under a variety of conditions. Force development in response to electrical field stimulation and to cumulative addition of Ca2+ in the continual presence of 64 mM. KCl was the same in both adult and aged preparations. In response to cumulative additions of carbachol, however, it was observed that there was a shift to the right of the dose-response curve and a decrease in maximal force in the aged muscle strips. The maximal velocity of shortening was significantly lower in muscles from aged animals than in those from young adult animals. The metabolic tension cost during isometric contraction was, however, the same in both groups suggesting that the decline in Vus is largely due to factors not influencing energetic cost. The aged muscles also exhibited a lower basal metabolic rate and a reduced contribution of aerobic glycolysis to total metabolic energy production during both quiescence and stimulation under normoxic conditions than did muscles from young adult animals. They were, however, able to increase their rate of lactate production to the same levels as young adult muscles when stimulated under anoxic conditions.
取自约6个月龄和24个月龄的Sprague-Dawley大鼠膀胱的纵向平滑肌条,在多种条件下进行了检查。在持续存在64 mM KCl的情况下,电场刺激和Ca2+累积添加引起的力发展在成年和老年标本中是相同的。然而,在累积添加卡巴胆碱后,观察到老年肌肉条的剂量反应曲线向右移动,最大力降低。老年动物肌肉的最大缩短速度明显低于年轻成年动物的肌肉。然而,两组等长收缩期间的代谢张力成本相同,这表明Vus的下降主要是由于不影响能量成本的因素。与年轻成年动物的肌肉相比,老年肌肉在常氧条件下的静止和刺激期间也表现出较低的基础代谢率,以及有氧糖酵解对总代谢能量产生的贡献减少。然而,在缺氧条件下刺激时,它们能够将乳酸产生率提高到与年轻成年肌肉相同的水平。