Bioluminescent tools can illuminate cellular features in whole organisms. Multi-component tracking remains challenging, though, owing to a lack of well-resolved probes and long imaging times. To address the need for more rapid, quantitative, and multiplexed bioluminescent readouts, we developed an analysis pipeline featuring sequential substrate administration and serial image acquisition. Light output from each luciferin is layered on top of the previous image, with minimal delay between substrate delivery. A MATLAB algorithm was written to analyze bioluminescent images generated from the rapid imaging protocol and deconvolute (i.e., unmix) signals from luciferase-luciferin pairs. Mixtures comprising three to five luciferase reporters were readily distinguished in under 50Â min; this same experiment would require days using conventional workflows. We further showed that the algorithm can be used to accurately quantify luciferase levels in heterogeneous mixtures. Based on its speed and versatility, the multiplexed imaging platform will expand the scope of bioluminescence technology.
Multiplexed bioluminescence imaging with a substrate unmixing platform.
利用底物分离平台进行多重生物发光成像
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作者:Brennan Caroline K, Yao Zi, Ionkina Anastasia A, Rathbun Colin M, Sathishkumar Buvaneshwari, Prescher Jennifer A
| 期刊: | Cell Chemical Biology | 影响因子: | 7.200 |
| 时间: | 2022 | 起止号: | 2022 Nov 17; 29(11):1649-1660 |
| doi: | 10.1016/j.chembiol.2022.10.004 | ||
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