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便携式磁镊设备可实现软生物材料的三维微观变形可视化。

Portable magnetic tweezers device enables visualization of the three-dimensional microscale deformation of soft biological materials.

机构信息

Department of Mechanical Engineering, University of California-Santa Barbara, Santa Barbara, CA, USA.

出版信息

Biotechniques. 2011 Jul;51(1):29-34. doi: 10.2144/000113701.

Abstract

We have designed and built a magnetic tweezers device that enables the application of calibrated stresses to soft materials while simultaneously measuring their microscale deformation using confocal microscopy. Unlike previous magnetic tweezers designs, our device is entirely portable, allowing easy use on microscopes in core imaging facilities or in collaborators' laboratories. The imaging capabilities of the microscope are unimpaired, enabling the 3-D structures of fluorescently labeled materials to be precisely determined under applied load. With this device, we can apply a large range of forces (~1-1200 pN) over micron-scale contact areas to beads that are either embedded within 3-D matrices or attached to the surface of thin slab gels. To demonstrate the usefulness of this instrument, we have studied two important and biologically relevant materials: polyacrylamide-based hydrogel films typical of those used in cell traction force microscopy, and reconstituted networks of microtubules, essential cytoskeletal filaments.

摘要

我们设计并制造了一种磁镊设备,能够在对软物质施加校准力的同时,使用共聚焦显微镜测量其微尺度变形。与以前的磁镊设计不同,我们的设备完全便携,可轻松在核心成像设备中的显微镜或合作实验室中的显微镜上使用。显微镜的成像功能不受影响,可在施加负载下精确确定荧光标记材料的 3D 结构。使用此设备,我们可以在微米级接触区域上施加大范围的力(约 1-1200 pN),这些力作用于嵌入在 3D 基质中的珠子或附着在薄片凝胶表面上的珠子。为了展示该仪器的实用性,我们研究了两种重要且具有生物学相关性的材料:基于聚丙烯酰胺的水凝胶膜,这是细胞牵引力显微镜中常用的材料;以及微管的重组网络,这是重要的细胞骨架丝。

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