首页> 美国卫生研究院文献>The Journal of Physiology >Acetylcholine storage release and leakage at the neuromuscular junction of mature adult and aged rats.
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Acetylcholine storage release and leakage at the neuromuscular junction of mature adult and aged rats.

机译:在成年和成年大鼠的神经肌肉接头处乙酰胆碱的储存释放和泄漏。

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摘要

Acetylcholine (ACh) content, release during stimulation and spontaneous leakage were studied at the diaphragm neuromuscular junction in rats aged 10 and 28 months. In addition, quantal release statistics were determined. The results were related to the number of nerve terminals per end-plate and to the age of the animals. Nerve terminal ACh content was lower in the 28-month-old rats; in nonstimulated tissue the average (+/- S.E.) ACh levels were 29.3 (+/- 4.1) and 17.2 (+/- 2.4) fmol per end-plate in the 10- and 28-month-old rats, respectively. During nerve stimulation, greater amounts of ACh were released by the older rats. After 1000 impulses, the average (+/- S.E.) ACh release was 3.2 (+/- 0.2) and 3.9 (+/- 0.2) fmol per end-plate in the 10- and the 28-month-old animals, respectively; however, the amounts released per nerve terminal were not significantly different. The fraction of the resting ACh content released per action potential was greater in the aged rats; this may be the cause of enhanced synaptic depression in the older animals. Leakage of ACh from cytoplasmic sources was assessed by measuring the hyperpolarization following application of d-tubocurarine (dTC). The hyperpolarizing responses were of similar magnitude in both age groups; however, the older rats were less sensitive to ACh, indicating that cytoplasmic leakage was greater in these animals. Miniature end-plate potentials (m.e.p.p.s) occurred twice as frequently in the aged rats; this increase could be attributed to an age-related increase in the number of nerve terminals per end-plate. After correcting for variations in membrane input resistance and resting potential, m.e.p.p. amplitudes were compared and found to be significantly smaller in the aged rats. Quantal release during nerve stimulation was measured and found to obey binomial statistics. Estimated values of m and n were significantly larger in the older rats; there were no age-related differences in p. The increases in m and n could be attributed to the larger number of nerve terminals per end-plate in the aged animals. Acetylcholinesterase (AChE) activity was assayed. In innervated tissue there were no significant differences with age; however, in non-innervated tissue AChE activity was significantly higher in the 28-month-old rats.
机译:研究了10和28个月大的大鼠the神经肌肉连接处乙酰胆碱(ACh)的含量,刺激过程中的释放和自发性渗漏。此外,确定了定量释放统计数据。结果与每个终板的神经末梢数目和动物的年龄有关。 28月龄大鼠的神经末梢ACh含量较低;在未刺激的组织中,在10个月和28个月大的大鼠中,每端板的平均(+/- S.E.)ACh水平分别为29.3(+/- 4.1)和17.2(+/- 2.4)fmol。在神经刺激过程中,老年大鼠释放出更多的ACh。在冲动1000次后,在10个月和28个月大的动物中,每端板的平均(+/- S.E.)ACh释放量分别为3.2(+/- 0.2)和3.9(+/- 0.2)fmol。但是,每个神经末梢释放的量没有显着差异。在老年大鼠中,每动作电位释放的静息乙酰胆碱含量的分数更高;这可能是老年动物突触抑制能力增强的原因。通过测量应用d-微管尿素(dTC)后的超极化,可以评估ACh从细胞质来源的泄漏。在两个年龄段中,超极化反应的大小相似。但是,年长的大鼠对ACh的敏感性较低,表明这些动物的细胞质渗漏更大。在衰老的老鼠中,微型终板电位(m.e.p.p.s)的发生频率是其两倍。这种增加可以归因于与年龄相关的每个终板神经末梢数目的增加。校正膜输入电阻和静息电位的变化后,m.e.p.p。比较了振幅,发现在老年大鼠中振幅明显较小。测量神经刺激期间的量子释放,并服从二项式统计。在老年大鼠中,m和n的估计值明显更大; p中没有与年龄相关的差异。 m和n的增加可归因于老年动物每个端板的神经末梢数量增加。测定乙酰胆碱酯酶(AChE)活性。在神经支配的组织中,随着年龄的增长没有显着差异。然而,在28个月大的大鼠中,非神经组织中的AChE活性明显更高。

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