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表面诱导X射线反射对膜取向及融合成多层膜的可视化研究

Surface-induced x-ray reflection visualization of membrane orientation and fusion into multibilayers.

作者信息

Cevc G, Fenzl W, Sigl L

出版信息

Science. 1990 Sep 7;249(4973):1161-3. doi: 10.1126/science.249.4973.1161.

Abstract

The fusion of lipid membranes at the air-water interface has been detected with the use of x-ray reflection as a high-resolution, surface-sensitive technique. The rate of this fusion for dimyristoylphosphatidylcholine (DMPC) bilayers is the highest at 29 degrees C, which coincides with the chain-melting phase-transition temperature for the top membrane layers. After 6 hours of incubation a stack of at least ten surface-ordered membrane bilayers in equilibrium with the bulk vesicle suspension is formed. Such fusion is thus surface-catalyzed but not restricted to the first surface layer. The process involves partial membrane dehydration near the solution surface which decreases toward the bulk.

摘要

利用X射线反射这一高分辨率的表面敏感技术,已在气-水界面检测到脂质膜的融合。二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜的这种融合速率在29摄氏度时最高,这与顶层膜的链熔化相变温度一致。孵育6小时后,形成了与大量囊泡悬浮液处于平衡状态的至少十个表面有序膜双层的堆叠。因此,这种融合是表面催化的,但不限于第一表面层。该过程涉及溶液表面附近的部分膜脱水,向主体方向脱水程度降低。

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