首页> 美国卫生研究院文献>The Journal of Physiology >Characteristics of Na+ channels and Cl- conductance in resealed muscle fibre segments from patients with myotonic dystrophy.
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Characteristics of Na+ channels and Cl- conductance in resealed muscle fibre segments from patients with myotonic dystrophy.

机译:重症肌营养不良患者重新密封的肌纤维节段中Na +通道和Cl-电导的特征。

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摘要

1. Electrical and contractile properties of resealed fibre segments were investigated by a variety of in vitro techniques. The preparations were removed from skeletal muscles of normal subjects and of eight patients with myotonic dystrophy. 2. Several hours after removal, fibre segments from normal subjects and those patients in whom myotonia was the primary symptom had resting membrane potentials of approximately -80 mV. In contrast, fibre segments obtained from patients in whom muscle dystrophy was more expressed were depolarized (-60 to -70 mV). 3. Contractions induced in fibre segments of myotonic muscle which had normal potentials were characterized by slowed relaxation which was due to electrical after-activity. 4. After single stimuli, long-lasting (3-100) runs of action potentials were recorded intracellularly from the myotonic muscle. In some of these fibre segments complex repetitive discharges were observed: multiple sites of locally gated currents were identified. 5. The three-electrode voltage clamp was used to determine the total membrane conductance, gm, and the ion component conductances. All fibres of a particular patient had similar conductances. However, the Cl- conductance varied from patient to patient from normal (74% of gm) to low values (30% of gm). The K+ conductance was normal in all fibres of all patients. 6. The patch-clamp technique was used to record currents through single Na+ channels of the sarcolemma. After treatment of the fibre segments with collagenase gigaohm seals were routinely obtained. The rate of success was greater when using the cell-attached mode than the inside-out mode. 7. Sodium channel currents were elicited by depolarizing voltage steps which produced an initial burst of Na+ channel openings. Up to ten channels were activated simultaneously when the patch was depolarized to potentials more positive than -30 mV. The Na+ channels re-opened very rarely in controls. The macroscopic sodium current, INa, was reconstructed by averaging depolarizing pulses. The time constant of rapid decay of INa reflecting macroscopic inactivation, the onset of INa and the amplitude of INa were voltage dependent. The mean amplitude of the current produced by re-openings was on average only 0.11 +/- 0.04% of the amplitude of the peak current. 8. Late openings of the Na+ channels were frequent in patches on the myotonic fibre segments. The amplitude of the current produced by re-openings was as high as about 0.75 +/- 0.11% of the amplitude of the peak current.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.通过多种体外技术研究了重新密封的纤维段的电和收缩性能。从正常受试者和八名强直性肌营养不良患者的骨骼肌中取出制剂。 2.摘除后数小时,正常受试者和以肌强直为主要症状的患者的纤维节段的静息膜电位约为-80 mV。相反,从肌营养不良症较多表达的患者获得的纤维节段被去极化(-60至-70 mV)。 3.在肌强直肌纤维节段中具有正常电位的诱发收缩,其特征是由于电后活动引起的舒张缓慢。 4.在单次刺激后,从肌强直肌细胞内记录了持续(3-100)次动作电位。在某些光纤段中,观察到了复杂的重复放电:确定了多个局部门控电流的位置。 5.使用三电极电压钳确定总膜电导gm和离子组分电导。特定患者的所有纤维具有相似的电导。但是,不同患者的Cl-电导率从正常(占gm的74%)到低值(占gm的30%)不等。所有患者的所有纤维中的K +电导均正常。 6.膜片钳技术用于记录通过肌膜单个Na +通道的电流。用胶原酶处理纤维段后,常规获得千兆欧密封。使用单元格附加模式时,成功率要比由内而外模式高。 7.通过使电压阶跃去极化来引起钠通道电流,所述电压阶跃产生Na +通道开口的初始爆发。当贴片去极化至比-30 mV更高的电位时,最多可同时激活十个通道。 Na +通道很少在控件中重新打开。通过平均去极化脉冲来重建宏观钠电流INa。 INa快速衰减的时间常数反映了宏观失活,INa的发作和INa的幅度与电压有关。重新打开产生的电流的平均幅度平均仅为峰值电流幅度的0.11 +/- 0.04%。 8.在强直性纤维节上的斑块中,Na +通道的后期开放频繁。重新打开产生的电流幅度高达峰值电流幅度的0.75 +/- 0.11%(摘要截断为400字)

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