Harmer Zachary P, Höhener Thomas C, Landolt Alex E, Mitchell Claire, McClean Megan
Department of Biomedical Engineering, University of Wisconsin-Madison.
Institut für Zellbiologie, Universität Bern.
MicroPubl Biol. 2024 Feb 2;2024. doi: 10.17912/micropub.biology.001073. eCollection 2024.
Optogenetics is a powerful tool that uses light to control cellular behavior. Here we enhance high-throughput characterization of optogenetic experiments through the integration of the LED Illumination Tool for Optogenetic Stimulation (LITOS) with the previously published automated platform Lustro. Lustro enables efficient high-throughput screening and characterization of optogenetic systems. The initial iteration of Lustro used the optoPlate illumination device for light induction, with the robot periodically moving the plate over to a shaking device to resuspend cell cultures. Here, we designed a 3D-printed adaptor, rendering LITOS compatible with the BioShake 3000-T ELM used in Lustro. This novel setup allows for concurrent light stimulation and culture agitation, streamlining experiments. Our study demonstrates comparable growth rates between constant and intermittent shaking of liquid cultures. While the light intensity of the LITOS is not as bright as the optoPlate used in the previous iteration of Lustro, the constant shaking increased the maturation rate of the mScarlet-I fluorescent reporter used. Only a marginal increase in temperature was observed when using the modified LITOS equipped with the 3D-printed adaptor. Our findings show that the integration of LITOS onto a plate shaker allows for constant culture shaking and illumination compatible with laboratory automation platforms, such as Lustro.
光遗传学是一种利用光来控制细胞行为的强大工具。在此,我们通过将用于光遗传学刺激的LED照明工具(LITOS)与先前发布的自动化平台Lustro相结合,增强了光遗传学实验的高通量表征。Lustro能够对光遗传学系统进行高效的高通量筛选和表征。Lustro的初代版本使用光板照明装置进行光诱导,机器人定期将平板移至振荡装置以重悬细胞培养物。在此,我们设计了一种3D打印适配器,使LITOS与Lustro中使用的BioShake 3000 - T ELM兼容。这种新颖的设置允许同时进行光刺激和培养物振荡,简化了实验。我们的研究表明,液体培养物在持续振荡和间歇振荡之间的生长速率相当。虽然LITOS的光强度不如Lustro前一版本中使用的光板亮,但持续振荡提高了所使用的mScarlet - I荧光报告基因的成熟率。在使用配备3D打印适配器的改良LITOS时,仅观察到温度有轻微升高。我们的研究结果表明,将LITOS集成到平板振荡器上可实现与实验室自动化平台(如Lustro)兼容的持续培养振荡和照明。