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Active mechanisms are needed to describe cell responses to submicrosecond, megavolt-per-meter pulses: cell models for ultrashort pulses.需要用主动机制来描述细胞对亚微秒、兆伏每米脉冲的反应:超短脉冲的细胞模型。
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Nanosecond electric pulse-induced calcium entry into chromaffin cells.纳秒级电脉冲诱导钙离子进入嗜铬细胞。
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Long-lasting plasma membrane permeabilization in mammalian cells by nanosecond pulsed electric field (nsPEF).纳秒级脉冲电场(nsPEF)对哺乳动物细胞进行的持久质膜通透化处理。
Bioelectromagnetics. 2007 Dec;28(8):655-63. doi: 10.1002/bem.20354.
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Nanopore-facilitated, voltage-driven phosphatidylserine translocation in lipid bilayers--in cells and in silico.纳米孔促进的、电压驱动的磷脂酰丝氨酸在脂质双层中的转运——在细胞中和计算机模拟中。
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Plasma membrane voltage changes during nanosecond pulsed electric field exposure.纳秒级脉冲电场暴露期间质膜电压的变化。
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Simulations of nanopore formation and phosphatidylserine externalization in lipid membranes subjected to a high-intensity, ultrashort electric pulse.在经受高强度、超短电脉冲的脂质膜中纳米孔形成和磷脂酰丝氨酸外化的模拟。
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Simulations of transient membrane behavior in cells subjected to a high-intensity ultrashort electric pulse.高强度超短电脉冲作用下细胞瞬态膜行为的模拟
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8
Paradoxical loss of excitation with high intensity pulses during electric field stimulation of single cardiac cells.在单个心肌细胞的电场刺激过程中,高强度脉冲出现反常的兴奋丧失。
Biophys J. 2005 Apr;88(4):3038-49. doi: 10.1529/biophysj.104.047142. Epub 2005 Jan 21.
9
Nanosecond pulsed electric fields modulate cell function through intracellular signal transduction mechanisms.纳秒级脉冲电场通过细胞内信号转导机制调节细胞功能。
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10
Nanoelectropulse-induced phosphatidylserine translocation.纳米电脉冲诱导的磷脂酰丝氨酸易位。
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超短高场脉冲对心肌细胞的兴奋作用。

Cardiac myocyte excitation by ultrashort high-field pulses.

作者信息

Wang Sufen, Chen Jiexiao, Chen Meng-Tse, Vernier P Thomas, Gundersen Martin A, Valderrábano Miguel

机构信息

Division of Cardiac Electrophysiology, Department of Cardiology, The Methodist Hospital, Houston, Texas, USA.

出版信息

Biophys J. 2009 Feb 18;96(4):1640-8. doi: 10.1016/j.bpj.2008.11.011.

DOI:10.1016/j.bpj.2008.11.011
PMID:19217879
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2717245/
Abstract

In unexcitable, noncardiac cells, ultrashort (nanosecond) high-voltage (megavolt-per-meter) pulsed electrical fields (nsPEF) can mobilize intracellular Ca2+ and create transient nanopores in the plasmalemma. We studied Ca2+ responses to nsPEF in cardiac cells. Fluorescent Ca2+ or voltage signals were recorded from isolated adult rat ventricular myocytes deposited in an electrode microchamber and stimulated with conventional pulses (CPs; 0.5-2.4 kV/cm, 1 ms) or nsPEF (10-80 kV/cm, 4 ns). nsPEF induced Ca2+ transients in 68/104 cells. Repeating nsPEF increased the likelihood of Ca2+ transient induction (61.8% for <10 nsPEF vs. 80.6% for > or =10 nsPEF). Repetitive Ca2+ waves arising at the anodal side and Ca2+ destabilization occurred after repeated nsPEF (12/29) or during steady-state single nsPEF delivery at 2 Hz. Removing extracellular Ca2+ abolished responses to nsPEF. Verapamil did not affect nsPEF-induced Ca2+ transients, but decreased responses to CP. Tetrodotoxin and KB-R7943 increased the repetition threshold in response to nsPEF: 1-20 nsPEF caused local anodal Ca2+ waves without Ca2+ transients, and > or =20 nsPEF caused normal transients. Ryanodine-thapsigargin and caffeine protected against nsPEF-induced Ca2+ waves and showed less recovery of diastolic Ca2+ levels than CP. Voltage recordings demonstrated action potentials triggered by nsPEF, even in the presence of tetrodotoxin. nsPEF can mobilize intracellular Ca2+ in cardiac myocytes by inducing action potentials. Anodal Ca2+ waves and resistance to Na+ and Ca2+ channel blockade suggest nonselective ion channel transport via sarcolemmal nanopores as a triggering mechanism.

摘要

在无兴奋性的非心肌细胞中,超短(纳秒级)高压(兆伏/米)脉冲电场(nsPEF)可动员细胞内Ca2+并在质膜上形成瞬时纳米孔。我们研究了心肌细胞中Ca2+对nsPEF的反应。从沉积在电极微腔中的成年大鼠离体心室肌细胞记录荧光Ca2+或电压信号,并用常规脉冲(CPs;0.5 - 2.4 kV/cm,1 ms)或nsPEF(10 - 80 kV/cm,4 ns)进行刺激。nsPEF在104个细胞中的68个细胞中诱导了Ca2+瞬变。重复施加nsPEF增加了Ca2+瞬变诱导的可能性(<10 nsPEF时为61.8%,而≥10 nsPEF时为80.6%)。重复施加nsPEF(12/29)后或在2 Hz的稳态单次nsPEF递送期间,在阳极侧出现了重复性Ca2+波和Ca2+不稳定现象。去除细胞外Ca2+消除了对nsPEF的反应。维拉帕米不影响nsPEF诱导的Ca2+瞬变,但降低了对CP的反应。河豚毒素和KB - R7943增加了对nsPEF反应的重复阈值:1 - 20 nsPEF引起局部阳极Ca2+波但无Ca2+瞬变,而≥二十nsPEF引起正常瞬变。ryanodine - thapsigargin和咖啡因可防止nsPEF诱导的Ca2+波,并且与CP相比,舒张期Ca2+水平的恢复较少。电压记录显示即使在存在河豚毒素的情况下,nsPEF也能触发动作电位。nsPEF可通过诱导动作电位来动员心肌细胞内的Ca2+。阳极Ca2+波以及对Na+和Ca2+通道阻滞剂的抗性表明,通过肌膜纳米孔的非选择性离子通道转运是一种触发机制。