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从深度达1000米处打捞的深海鱼类(细弱突吻鳕)完整骨骼肌现场记录的静息膜电位。

Resting membrane potentials recorded on-site in intact skeletal muscles from deep sea fish (Sigmops gracile) salvaged from depths up to 1.000 m.

作者信息

von Wegner Frederic, Koyama Sumihiro, Miwa Tetsuya, Friedrich Oliver

机构信息

Medical Biophysics Unit, Department of Systems Physiology, Institute of Physiology & Pathophysiology, University of Heidelberg, Heidelberg, Germany.

出版信息

Mar Biotechnol (NY). 2008 Jul-Aug;10(4):478-86. doi: 10.1007/s10126-008-9085-x. Epub 2008 Feb 21.

Abstract

The effect of elevated ambient pressures in deep sea fish residing at certain bottom depths or even covering different depth levels during migration is poorly understood. Elevated pressures are known to influence membrane properties of various excitable tissues in many species. Reliable results on membrane properties require freshly isolated living cells and short decompression times. During a scientific cruise south of Japan, deep sea fish were sampled from depths up to 1.000 m by using the intelligent operative net sampling system IONESS. On-site electrophysiological recordings of resting membrane potentials were performed in freshly isolated skeletal muscles from Sigmops gracile. Experiments were conducted at various extracellular K+ concentrations to derive relative membrane ion permeabilities and estimate intracellular K+ concentrations [K+]i in the muscles studied. With increasing sampling depth, a tendency for depolarized resting membrane potentials was observed. This could be explained by an increase in relative Na+ over K+ resting membrane permeabilities. Fish samples from deeper sites also had larger [K+]i values compared with shallower sites. This study represents a first approach to perform sophisticated physiological live-cell experiments on board a fully operating ship. These data are expected to more realistically reflect the physiological state of biological preparations residing in the deep sea.

摘要

对于生活在特定海底深度、甚至在洄游过程中覆盖不同深度层的深海鱼类而言,环境压力升高所产生的影响仍知之甚少。众所周知,压力升高会影响许多物种中各种可兴奋组织的膜特性。关于膜特性的可靠结果需要新鲜分离的活细胞和较短的减压时间。在一次日本以南的科学考察航行中,使用智能操作网采样系统(IONESS)从深度达1000米的海域采集深海鱼类样本。对细纹光尾鲨(Sigmops gracile)新鲜分离的骨骼肌进行静息膜电位的现场电生理记录。在不同的细胞外钾离子浓度下进行实验,以得出相对膜离子通透性,并估算所研究肌肉中的细胞内钾离子浓度[K+]i。随着采样深度的增加,观察到静息膜电位有去极化的趋势。这可以用静息膜对钠离子与钾离子的相对通透性增加来解释。与较浅位置的鱼类样本相比,来自较深位置的鱼类样本也具有更高的[K+]i值。本研究是在一艘正常运行的船上进行复杂的生理活细胞实验的首次尝试。这些数据有望更真实地反映深海生物制剂的生理状态。

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