Niederauer Christian, Seynen Marco, Zomerdijk Jan, Kamp Marko, Ganzinger Kristina A
AMOLF, Amsterdam, The Netherlands.
HardwareX. 2023 Feb 27;13:e00404. doi: 10.1016/j.ohx.2023.e00404. eCollection 2023 Mar.
Imaging the dynamics and interactions of biomolecules at the single-molecule level in live cells and reconstituted systems has generated unprecedented knowledge about the biomolecular processes underlying many cellular functions. To achieve the speed and sensitivity needed to detect and follow individual molecules, these experiments typically require custom-built microscopes or custom modifications of commercial systems. The costs of such single-molecule microscopes, their technical complexity and the lack of open-source documentation on how to build custom setups therefore limit the accessibility of single-molecule imaging techniques. To advance the adaptation of dynamic single-molecule imaging by a wider community, we present the "K2": an open-source, simultaneous triple-color total internal reflection fluorescence (TIRF) microscope specifically designed for live-cell and single-molecule imaging. We explain our design considerations and provide step-by-step building instructions, parts list and full CAD models. The modular design of this TIRF microscope allows users to customize it to their scientific and financial needs, or to re-use parts of our design to improve the capabilities of their existing setups without necessarily having to build a full copy of the K2 microscope.
在活细胞和重组系统中对生物分子在单分子水平上的动力学和相互作用进行成像,已经产生了关于许多细胞功能背后生物分子过程的前所未有的知识。为了达到检测和追踪单个分子所需的速度和灵敏度,这些实验通常需要定制的显微镜或对商业系统进行定制修改。此类单分子显微镜的成本、其技术复杂性以及缺乏关于如何构建定制装置的开源文档,因此限制了单分子成像技术的可及性。为了推动更广泛的群体采用动态单分子成像技术,我们推出了“K2”:一种专门为活细胞和单分子成像设计的开源、同步三色全内反射荧光(TIRF)显微镜。我们解释了我们的设计考量,并提供了详细的构建说明、零件清单和完整的CAD模型。这种TIRF显微镜的模块化设计允许用户根据自己的科学和财务需求对其进行定制,或者重新使用我们设计的部分内容来提高现有装置的性能,而不必完全复制K2显微镜。