Physical and Synthetic Biology, Faculty of Biology, Ludwig-Maximilians-Universität München, Planegg-Martinsried, Germany.
Biophysical Chemistry, Faculty of Chemistry and Chemical Biology, Technische Universität Dortmund, Dortmund, Germany.
Sci Adv. 2024 Sep 27;10(39):eado3427. doi: 10.1126/sciadv.ado3427. Epub 2024 Sep 25.
Over the past decades, single-molecule and super-resolution microscopy have advanced and represent essential tools for life science research. There is, however, a growing gap between the state of the art and what is accessible to biologists, biochemists, medical researchers, or labs with financial constraints. To bridge this gap, we introduce Brick-MIC, a versatile and affordable open-source 3D-printed microspectroscopy and imaging platform. Brick-MIC enables the integration of various fluorescence imaging techniques with single-molecule resolution within a single platform and exchange between different modalities within minutes. We here present variants of Brick-MIC that facilitate single-molecule fluorescence detection, fluorescence correlation spectroscopy, time-correlated single-photon counting and super-resolution imaging (STORM and PAINT). Detailed descriptions of the hardware and software components, as well as data analysis routines, are provided, to allow non-optics specialists to operate their own Brick-MIC with minimal effort and investments. We foresee that our affordable, flexible, and open-source Brick-MIC platform will be a valuable tool for many laboratories worldwide.
在过去的几十年中,单分子和超分辨率显微镜技术得到了发展,成为生命科学研究的重要工具。然而,最先进的技术与生物学家、生物化学家、医学研究人员或资金有限的实验室之间的差距越来越大。为了弥合这一差距,我们引入了 Brick-MIC,这是一种通用且经济实惠的开源 3D 打印微光谱和成像平台。Brick-MIC 能够在单个平台内集成各种具有单分子分辨率的荧光成像技术,并在几分钟内实现不同模式之间的转换。我们在此介绍了 Brick-MIC 的几种变体,这些变体可实现单分子荧光检测、荧光相关光谱学、时间相关单光子计数和超分辨率成像(STORM 和 PAINT)。提供了硬件和软件组件的详细描述以及数据分析例程,以便非光学专家能够以最小的努力和投资来操作自己的 Brick-MIC。我们预计,我们经济实惠、灵活且开源的 Brick-MIC 平台将成为全球许多实验室的有价值的工具。