Lucio Adam A, Ingber Donald E, Campàs Otger
Department of Mechanical Engineering, University of California, Santa Barbara, CA, USA.
Wyss Institute for Biologically Inspired Engineering, Harvard University, Boston, MA, USA.
Methods Cell Biol. 2015;125:373-90. doi: 10.1016/bs.mcb.2014.11.008. Epub 2015 Jan 8.
Here we describe a detailed protocol to produce biocompatible droplets that permit the measurement of mechanical stresses at cell and tissue scales. The droplets can be used as force transducers in vivo, ex vivo, and in vitro, to measure mechanical stresses in situ, in three dimensions and time. Versatile and modular droplet coatings using biotinylated molecules, such as ligands for specific adhesion receptors, enable the targeting of specific tissues or cells. Droplet sizes can be varied to measure forces at different scales (tissue and cell scales) and the range of measurable mechanical stresses ranges within approximately 0.3-100 kPa. The protocol described in this chapter is divided in three sections. First, we describe the generation and stabilization of biocompatible droplets. Next, we explain the steps necessary to functionalize the droplet surface. Finally, we describe how to characterize the mechanical properties of the droplets, so that they can be used as calibrated mechanical probes. The procedure to generate, stabilize, and functionalize the droplets is straightforward and can be completed in about 3h with basic laboratory resources. The calibration of the droplet's mechanical properties to perform quantitative stress measurements is also straightforward, but requires the proper equipment to measure interfacial tension (such as a tensiometer). Calibrated droplets can be used to quantify cell-generated mechanical stresses by analyzing the tridimensional shape of the droplet.
在此,我们描述了一种详细的方案,用于制备生物相容性微滴,以测量细胞和组织尺度下的机械应力。这些微滴可在体内、体外和离体条件下用作力传感器,以三维方式实时测量原位机械应力。使用生物素化分子(如特定黏附受体的配体)的通用且模块化的微滴涂层,能够靶向特定组织或细胞。微滴大小可以改变,以测量不同尺度(组织和细胞尺度)下的力,可测量的机械应力范围约在0.3 - 100 kPa之间。本章所述方案分为三个部分。首先,我们描述生物相容性微滴的生成与稳定。其次,我们解释使微滴表面功能化所需的步骤。最后,我们描述如何表征微滴的机械性能,以便它们能够用作经过校准的机械探针。生成、稳定和功能化微滴的过程很简单,使用基本的实验室资源大约3小时即可完成。对微滴的机械性能进行校准以进行定量应力测量也很简单,但需要合适的设备来测量界面张力(如张力计)。通过分析微滴的三维形状,经校准的微滴可用于量化细胞产生的机械应力。