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千兆封接膜片钳中的脂质-玻璃黏附

Lipid-glass adhesion in giga-sealed patch-clamped membranes.

作者信息

Opsahl L R, Webb W W

机构信息

Department of Physics, Cornell University, Ithaca, New York 14853.

出版信息

Biophys J. 1994 Jan;66(1):75-9. doi: 10.1016/S0006-3495(94)80752-0.

Abstract

Adhesion between patch-clamped lipid membranes and glass micropipettes is measured by high contrast video imaging of the mechanical response to the application of suction pressure across the patch. The free patch of membrane reversibly alters both its contact angle and radius of curvature on pressure changes. The assumption that an adhesive force between the membrane and the pipette can sustain normal tension up to a maximum Ta at the edge of the free patch accounts for the observed mechanical responses. When the normal component of the pressure-induced membrane tension exceeds Ta membrane at the contact point between the free patch and the lipid-glass interface is pulled away from the pipette wall, resulting in a decreased radius of curvature for the patch and an increased contact angle. Measurements of the membrane radius of curvature as a function of the suction pressure and pipette radius determine line adhesion tensions Ta which range from 0.5 to 4.0 dyn/cm. Similar behavior of patch-clamped cell membranes implies similar adhesion mechanics.

摘要

通过对跨膜施加抽吸压力时的机械响应进行高对比度视频成像,来测量膜片钳脂质膜与玻璃微吸管之间的粘附力。自由的膜片在压力变化时会可逆地改变其接触角和曲率半径。膜与吸管之间的粘附力能够在自由膜片边缘维持高达最大张力Ta的法向张力这一假设,解释了所观察到的机械响应。当压力诱导的膜张力的法向分量超过Ta时,自由膜片与脂质-玻璃界面接触点处的膜会从吸管壁拉开,导致膜片的曲率半径减小和接触角增大。测量膜曲率半径作为抽吸压力和吸管半径的函数,可以确定线粘附张力Ta,其范围为0.5至4.0达因/厘米。膜片钳细胞膜的类似行为意味着类似的粘附力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed77/1275665/d32e2ddbe87b/biophysj00080-0079-a.jpg

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