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一种用于解析曼氏血吸虫雄虫皮层单通道电流的囊泡制剂。

A vesicle preparation for resolving single-channel currents in tegument of male Schistosoma mansoni.

作者信息

Robertson A P, Martin R J, Kusel J R

机构信息

Department of Preclinical Veterinary Sciences, University of Edinburgh.

出版信息

Parasitology. 1997 Aug;115 ( Pt 2):183-92. doi: 10.1017/s0031182097001273.

Abstract

A tegumental vesicle preparation from adult male Schistosoma mansoni was developed that allows the resolution of single ion-channel currents. Adult male schistosomes were exposed to a low pH (3.75) medium for a period of approximately 30 min at 37 degrees C. During this period smooth vesicles formed from the tegument. Fluorescence microscopy following staining of the tegument with the dye, 5-N-[octadecanoyl]aminofluorescein (AF-18), transmission electron microscopy and scanning electron microscopy revealed that the vesicles were produced from the outer tegumental membrane. The fluorescence studies showed the presence of the double bilayer structure of the outer membrane in > 41% of the vesicles. These studies suggested that the preparation is suitable for single-channel recording with the patch-clamp technique. Cell-attached and isolated inside-out patch recordings of ion-channel activity were obtained with giga-ohm resistance seals. Different types of ion-channel were recorded from tegumental vesicles from male schistosomes, illustrating the potential of the technique. The channels observed included: a non-selective cation channel (360 pS); a K+ channel (with a conductance of 115 pS in high bath-K conditions); and a Cl- selective channel (20 pS). The currents of these ion-channels may cross the double bilayer of the outer tegumental membrane.

摘要

已开发出一种来自成年雄性曼氏血吸虫的皮层小泡制剂,可用于分辨单个离子通道电流。将成年雄性血吸虫置于37摄氏度的低pH(3.75)培养基中约30分钟。在此期间,皮层形成了光滑的小泡。用染料5-N-[十八烷酰基]氨基荧光素(AF-18)对皮层进行染色后的荧光显微镜检查、透射电子显微镜检查和扫描电子显微镜检查显示,这些小泡是由外皮层膜产生的。荧光研究表明,超过41%的小泡中存在外膜的双分子层结构。这些研究表明,该制剂适用于采用膜片钳技术进行单通道记录。通过千兆欧电阻封接获得了细胞贴附式和分离的内向外膜片记录的离子通道活性。从雄性血吸虫的皮层小泡中记录到了不同类型的离子通道,说明了该技术的潜力。观察到的通道包括:一个非选择性阳离子通道(360 pS);一个K+通道(在高浴液K+条件下电导为115 pS);以及一个Cl-选择性通道(20 pS)。这些离子通道的电流可能穿过外皮层膜的双分子层。

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