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大鼠单个心肌细胞的电压钳制与内部灌流

Voltage clamp and internal perfusion of single rat heart muscle cells.

作者信息

Brown A M, Lee K S, Powell T

出版信息

J Physiol. 1981 Sep;318:455-77. doi: 10.1113/jphysiol.1981.sp013878.

Abstract
  1. Single cells from adult rat ventricle were dispersed using an enzymic dissociation technique. Electrical properties were measured with either suction pipettes or conventional glass micropipettes and the results were compared. 2. Suction pipette and micropipette measurements of resting membrane potentials and action potentials were comparable. Values were similar to those reported previously for both dispersed cardiac myocytes and whole tissue preparations from adult rat ventricle. 3. Voltage clamp with a single suction pipette was used in initial experiments, but the results were not sufficiently accurate. Consequently, voltage clamp of single cells was carried out using two suction pipettes (tip diameters 10-15 micrometers), one for passing current and the other for recording membrane potential. Dialysis of cell contents was performed by each suction pipette. A roving micropipette (tip diameter less than 1 micrometer) was used occasionally to measure membrane potential at selected sites. 4. Using the two-suction-pipette method, voltage-clamp steps rose with time constants of less than 10 microsec and the capacitative current transient decayed with a single time constant of less than 100 microsec. These values are more optimal than those observed in other voltage-clamped cardiac muscle preparations. 5. Single cardiac myocytes had membrane input resistances of 44.5 +/- 4.6 M omega, membrane time constants of 16.2 +/- 0.63 msec and membrane capacitances of 399.7 +/- 42.2 pF. (values are means +/- DS, n = 10-). The length constant, lambda, of a single myocte at ists resting potential and perfused with KH2PO4 was about 500 micrometers. For cells perfused with Cs aspartate solution commonly used in voltage-clamp experiments, the input resistance was approximately quadrupled and lambda was 1100 micrometers. The average length of a myocyte partially aspirated by two suction pipettes was 50 micrometers. At maximum -gNa in 50% extracellular Na, lambda was calculated to be about four times the actual cell length between voltage-recording and current-passing pipettes. 6. The half-time for the disappearance or recovery of outward Na currents, following removal or restitution of intracellular Na with two pipettes, was of the order 1 min, indicating that intracellular ionic composition of the cell could be readily controlled and modified.
摘要
  1. 采用酶解技术分离成年大鼠心室的单个细胞。使用吸管或传统玻璃微吸管测量电特性,并对结果进行比较。2. 吸管和微吸管对静息膜电位和动作电位的测量结果具有可比性。这些值与先前报道的成年大鼠心室分散心肌细胞和全组织标本的值相似。3. 在初始实验中使用单个吸管进行电压钳制,但结果不够准确。因此,使用两个吸管(尖端直径10 - 15微米)对单个细胞进行电压钳制,一个用于通过电流,另一个用于记录膜电位。每个吸管对细胞内容物进行透析。偶尔使用游动微吸管(尖端直径小于1微米)在选定部位测量膜电位。4. 使用双吸管法,电压钳制步骤以小于10微秒的时间常数上升,电容性电流瞬变以小于100微秒的单一时间常数衰减。这些值比在其他电压钳制的心肌标本中观察到的值更理想。5. 单个心肌细胞的膜输入电阻为44.5±4.6 MΩ,膜时间常数为16.2±0.63毫秒,膜电容为399.7±42.2皮法。(值为平均值±标准差,n = 10)。单个心肌细胞在其静息电位并用KH2PO4灌注时的长度常数λ约为500微米。对于用电压钳制实验中常用的天冬氨酸铯溶液灌注的细胞,输入电阻大约增加四倍,λ为1100微米。被两个吸管部分吸出的心肌细胞的平均长度为50微米。在50%细胞外钠浓度下达到最大钠电导时,λ计算约为电压记录和电流通过吸管之间实际细胞长度的四倍。6. 用两个吸管去除或恢复细胞内钠后,外向钠电流消失或恢复的半衰期约为1分钟,表明细胞的细胞内离子组成可以很容易地被控制和改变。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bca/1245503/26f85531e41e/jphysiol00695-0461-a.jpg

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