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泊洛沙姆188降低人工脂质膜对电穿孔的敏感性。

Poloxamer 188 decreases susceptibility of artificial lipid membranes to electroporation.

作者信息

Sharma V, Stebe K, Murphy J C, Tung L

机构信息

Department of Biomedical Engineering, Johns Hopkins University, Baltimore, Maryland 21205 USA.

出版信息

Biophys J. 1996 Dec;71(6):3229-41. doi: 10.1016/S0006-3495(96)79516-4.

Abstract

The effect of a nontoxic, nonionic block co-polymeric surface active agent, poloxamer 188, on electroporation of artificial lipid membranes made of azolectin, was investigated. Two different experimental protocols were used in our study: charge pulse and voltage clamp. For the charge pulse protocol, membranes were pulsed with a 10-micronsecond rectangular voltage waveform, after which membrane voltage decay was observed through an external 1-M omega resistance. For the voltage clamp protocol the membranes were pulsed with a waveform that consisted of an initial 10-microsecond rectangular phase, followed by a negative sloped ramp that decayed to zero in the subsequent 500 microseconds. Several parameters characterizing the electroporation process were measured and compared for the control membranes and membranes treated with 1.0 mM poloxamer 188. For both the charge pulse and voltage clamp experiments, the threshold voltage (amplitude of initial rectangular phase) and latency time (time elapsed between the end of rectangular phase and the onset of membrane electroporation) were measured. Membrane conductance (measured 200 microseconds after the initial rectangular phase) and rise time (tr; the time required for the porated membrane to reach a certain conductance value) were also determined for the voltage clamp experiments, and postelectroporation time constant (PE tau; the time constant for transmembrane voltage decay after onset of electroporation) for the charge pulse experiments. The charge pulse experiments were performed on 23 membranes with 10 control and 13 poloxamer-treated membranes, and voltage pulse experiments on 49 membranes with 26 control and 23 poloxamer-treated membranes. For both charge pulse and voltage clamp experiments, poloxamer 188-treated membranes exhibited a statistically higher threshold voltage (p = 0.1 and p = 0.06, respectively), and longer latency time (p = 0.04 and p = 0.05, respectively). Also, poloxamer 188-treated membranes were found to have a relatively lower conductance (p = 0.001), longer time required for the porated membrane to reach a certain conductance value (p = 0.05), and longer postelectroporation time constant (p = 0.005). Furthermore, addition of poloxamer 188 was found to reduce the membrane capacitance by approximately 4-8% in 5 min. These findings suggest that poloxamer 188 adsorbs into the lipid bilayers, thereby decreasing their susceptibility to electroporation.

摘要

研究了一种无毒的非离子型嵌段共聚物表面活性剂泊洛沙姆188对由大豆卵磷脂制成的人工脂质膜电穿孔的影响。我们的研究采用了两种不同的实验方案:电荷脉冲和电压钳。对于电荷脉冲方案,用10微秒的矩形电压波形对膜进行脉冲处理,然后通过外部1兆欧电阻观察膜电压衰减。对于电压钳方案,用一种波形对膜进行脉冲处理,该波形由初始的10微秒矩形阶段组成,随后是一个负斜率斜坡,在接下来的500微秒内衰减至零。测量并比较了对照膜和用1.0 mM泊洛沙姆188处理的膜的几个表征电穿孔过程的参数。对于电荷脉冲和电压钳实验,均测量了阈值电压(初始矩形阶段的幅度)和延迟时间(矩形阶段结束与膜电穿孔开始之间经过的时间)。对于电压钳实验,还确定了膜电导(在初始矩形阶段后200微秒测量)和上升时间(tr;穿孔膜达到一定电导值所需的时间),对于电荷脉冲实验,确定了电穿孔后时间常数(PE tau;电穿孔开始后跨膜电压衰减的时间常数)。电荷脉冲实验在23个膜上进行,其中10个为对照膜,13个为泊洛沙姆处理的膜;电压脉冲实验在49个膜上进行,其中26个为对照膜,23个为泊洛沙姆处理的膜。对于电荷脉冲和电压钳实验,泊洛沙姆188处理的膜均表现出统计学上更高的阈值电压(分别为p = 0.1和p = 0.06)和更长的延迟时间(分别为p = 0.04和p = 0.05)。此外,发现泊洛沙姆188处理的膜具有相对较低的电导(p = 0.001)、穿孔膜达到一定电导值所需的时间更长(p = 0.05)以及电穿孔后时间常数更长(p = 0.005)。此外,发现添加泊洛沙姆188在5分钟内可使膜电容降低约4 - 8%。这些发现表明泊洛沙姆188吸附到脂质双层中,从而降低了它们对电穿孔的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b928/1233811/34d5765018b5/biophysj00042-0321-a.jpg

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