Hörber J K, Mosbacher J, Häberle W, Ruppersberg J P, Sakmann B
European Molecular Biology Laboratory, Heidelberg, Germany.
Biophys J. 1995 May;68(5):1687-93. doi: 10.1016/S0006-3495(95)80346-2.
We combined scanning force microscopy with patch-clamp techniques in the same experimental setup and obtained images of excised membrane patches spanning the tip of a glass pipette. These images indicate that cytoskeleton structures are still present in such membrane patches and form a strong connection between the membrane and the glass wall. This gives the membrane patch the appearance of a tent, stabilized by a scaffold of ropes. The lateral resolution of the images depends strongly on the observed structures and can reach values as low as 10 nm on the cytoskeleton elements of a (inside-out) patch. The observations suggest that measurements of membrane elasticity can be made, opening the way for further studies on mechanical properties of cell membranes.
我们在同一实验装置中将扫描力显微镜与膜片钳技术相结合,获得了跨越玻璃微吸管尖端的切除膜片的图像。这些图像表明,细胞骨架结构仍存在于此类膜片中,并在膜与玻璃壁之间形成了牢固的连接。这使得膜片呈现出帐篷的外观,由绳索支架稳定支撑。图像的横向分辨率在很大程度上取决于所观察的结构,对于(外翻)膜片的细胞骨架元件,其横向分辨率可低至10纳米。这些观察结果表明,可以对膜弹性进行测量,为进一步研究细胞膜的力学性质开辟了道路。