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Membrane properties underlying spontaneous activity of denervated muscle fibres

机译:失神经肌纤维自发活动的膜特性

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摘要

We have examined the events underlying the initiation of spontaneous action potentials (fibrillation) in fibres of previously denervated rat diaphragm maintained in organ culture for up to 10 days.1. Based on discharge pattern, two classes of spontaneously active fibres were found: rhythmically discharging fibres, and fibres in which action potentials occur at irregular intervals.2. Sites of action potentials initiation were located by exploration along the fibre length with two independent extracellular recording electrodes. The majority of sites of origin in both regular and irregular fibres were at the former end-plate zone; however, there was no region along the length that could not, at least in some fibres, be a site of origin.3. Intracellular recording at or near sites of origin of action potential discharge showed two types of initiating events. Irregularly discharging fibres were brought to threshold by discrete depolarizations of up to 15 mV in amplitude, while regularly occurring action potentials were associated with oscillations of the membrane potential.4. Discrete depolarizations (called fibrillatory origin potentials or f.o.p.s) at sites of origin in irregularly discharging fibres have the following properties: (a) random occurrence and nearly constant amplitude outside a refractory period during which both amplitude and probability of a second f.o.p. are reduced; (b) associated inward current flow which is localized to about 100 μm or less along the fibre length, and (c) dependence of amplitude and frequency on membrane potential.5. Oscillation of membrane potential found at sites of origin of action potential discharge in regular fibres also occurred locally along the fibre length and was sensitive to changes in membrane potential.6. Both f.o.p.s and oscillations of membrane potential were reversibly abolished by low Na+—Ringer fluid or tetrodotoxin.7. Neither type of initiating event was appreciably affected by concentrations of D-tubocurarine which blocked extrajunctional sensitivity to acetylcholine.8. We conclude that spontaneous action potentials under these conditions arise from a localized Na+-conductance change in the membrane of the active fibre; this conductance change is distinct from the increased Na+-conductance which follows the interaction of acetylcholine with its receptor. Spontaneous activity in single, denervated muscle fibres is cyclical and self-inhibiting (Purves & Sakmann, 1974); thus the Na+-conductance change underlying the initiation of spontaneous action potentials is affected by muscle fibre activity.
机译:我们检查了在器官培养物中维持长达10天的先前失神经的大鼠diaphragm肌纤维中自发动作电位(纤颤)启动的事件。根据放电规律,发现了两类自发活性纤维:有节奏地放电的纤维和动作电位不规则地出现的纤维。2。通过用两个独立的细胞外记录电极沿着纤维长度探索,定位了动作电位起始的位点。规则纤维和不规则纤维的大部分起源点都在前端板区。但是,至少在某些纤维中,没有沿长度方向的区域成为起源地。3。在动作电位放电起源部位或其附近的细胞内记录显示两种类型的起始事件。振幅不超过15 mV的离散去极化使不规则放电的纤维达到阈值,而规则发生的动作电位与膜电位的振荡有关。4。在不规则放电的光纤中,原点处的离散去极化(称为原纤化原点电势或f.o.p.s)具有以下特性:(a)随机发生,并且在不应期之外的幅度和振幅保持恒定,在此期间,第二f.o.p减少; (b)沿纤维长度分布在约100μm或以下的相关的内向电流,以及(c)振幅和频率对膜电位的依赖性5。在常规纤维中,在动作电位放电起点处发现的膜电位振荡也沿纤维长度局部发生,并且对膜电位的变化敏感。6。低Na + -林格液或河豚毒素可逆地消除了f.o.p.s和膜电位的振荡。7。两种起始事件均未受到D-微管尿素浓度的明显影响,这种浓度会阻断结外对乙酰胆碱的敏感性。8。我们得出结论,在这些条件下,自发的动作电位是由活性纤维的膜中的局部Na + -电导变化引起的。这种电导率变化不同于乙酰胆碱与其受体相互作用后Na + 电导率的增加。单个的,失神经的肌肉纤维的自发活动是周期性的并且具有自我抑制作用(Purves&Sakmann,1974)。因此,自发动作电位开始的Na + 电导变化受肌肉纤维活性的影响。

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