Fischell Department of Bioengineering, University of Maryland, College Park, MD, USA.
Nat Protoc. 2021 Feb;16(2):1251-1275. doi: 10.1038/s41596-020-00457-2. Epub 2021 Jan 15.
Several techniques have been developed over the past few decades to assess the mechanical properties of biological samples, which has fueled a rapid growth in the fields of biophysics, bioengineering, and mechanobiology. In this context, Brillouin optical spectroscopy has long been known as an intriguing modality for noncontact material characterization. However, limited by speed and sample damage, it had not translated into a viable imaging modality for biomedically relevant materials. Recently, based on a novel spectroscopy strategy that substantially improves the speed of Brillouin measurement, confocal Brillouin microscopy has emerged as a unique complementary tool to traditional methods as it allows noncontact, nonperturbative, label-free measurements of material mechanical properties. The feasibility and potential of this innovative technique at both the cell and tissue level have been extensively demonstrated over the past decade. As Brillouin technology is rapidly recognized, a standard approach for building and operating Brillouin microscopes is required to facilitate the widespread adoption of this technology. In this protocol, we aim to establish a robust approach for instrumentation, and data acquisition and analysis. By carefully following this protocol, we expect that a Brillouin instrument can be built in 5-9 days by a person with basic optics knowledge and alignment experience; the data acquisition as well as postprocessing can be accomplished within 2-8 h.
过去几十年中,已经开发出了几种技术来评估生物样本的机械性能,这促进了生物物理学、生物工程学和机械生物学领域的快速发展。在这种背景下,布里渊光学光谱学长期以来一直被认为是一种用于非接触式材料特性研究的有趣模式。然而,由于速度和样品损伤的限制,它并没有转化为生物医学相关材料的可行成像模式。最近,基于一种新颖的光谱学策略,该策略极大地提高了布里渊测量的速度,共聚焦布里渊显微镜作为一种独特的补充工具,已经出现,因为它允许对材料机械性能进行非接触、非破坏性、无标记的测量。在过去十年中,该创新技术在细胞和组织水平上的可行性和潜力已经得到了广泛的证明。随着布里渊技术的迅速发展,需要建立一种构建和操作布里渊显微镜的标准方法,以促进该技术的广泛应用。在本方案中,我们旨在建立一种强大的仪器仪表、数据采集和分析方法。通过仔细遵循本方案,我们预计,一个具有基本光学知识和调整经验的人可以在 5-9 天内构建出布里渊仪器;数据采集和后处理可以在 2-8 小时内完成。