Institute of Cell Biology, University of Bern, 3012, Bern, Switzerland.
Department of Biosystems Science and Engineering, ETH Zurich, 4058, Basel, Switzerland.
Sci Rep. 2022 Jul 30;12(1):13139. doi: 10.1038/s41598-022-17312-x.
Optogenetics has become a key tool to manipulate biological processes with high spatio-temporal resolution. Recently, a number of commercial and open-source multi-well illumination devices have been developed to provide throughput in optogenetics experiments. However, available commercial devices remain expensive and lack flexibility, while open-source solutions require programming knowledge and/or include complex assembly processes. We present a LED Illumination Tool for Optogenetic Stimulation (LITOS) based on an assembled printed circuit board controlling a commercially available 32 × 64 LED matrix as illumination source. LITOS can be quickly assembled without any soldering, and includes an easy-to-use interface, accessible via a website hosted on the device itself. Complex light stimulation patterns can easily be programmed without coding expertise. LITOS can be used with different formats of multi-well plates, petri dishes, and flasks. We validated LITOS by measuring the activity of the MAPK/ERK signaling pathway in response to different dynamic light stimulation regimes using FGFR1 and Raf optogenetic actuators. LITOS can uniformly stimulate all the cells in a well and allows for flexible temporal stimulation schemes. LITOS's affordability and ease of use aims at democratizing optogenetics in any laboratory.
光遗传学已成为一种具有高时空分辨率的生物过程操作的关键工具。最近,已经开发出了许多商业和开源的多孔板照明设备,以提供在光遗传学实验中的通量。然而,现有的商业设备仍然昂贵且缺乏灵活性,而开源解决方案需要编程知识和/或包含复杂的组装过程。我们提出了一种基于组装印刷电路板的光遗传学刺激用 LED 照明工具(LITOS),它控制着一个商业上可用的 32×64 LED 矩阵作为照明源。LITOS 可以在无需焊接的情况下快速组装,并且包括一个易于使用的界面,可通过设备本身托管的网站访问。无需编码专业知识即可轻松编程复杂的光刺激模式。LITOS 可以与不同格式的多孔板、培养皿和烧瓶一起使用。我们通过使用 FGFR1 和 Raf 光遗传学致动器来测量 MAPK/ERK 信号通路对不同动态光刺激方案的反应,验证了 LITOS 的性能。LITOS 可以均匀地刺激孔内的所有细胞,并允许灵活的时间刺激方案。LITOS 的价格实惠和易于使用旨在使任何实验室都能够民主化光遗传学。