Mid-infrared metabolic imaging with vibrational probes

被引:0
|
作者
Lixue Shi
Xinwen Liu
Lingyan Shi
H. Ted Stinson
Jeremy Rowlette
Lisa J. Kahl
Christopher R. Evans
Chaogu Zheng
Lars E. P. Dietrich
Wei Min
机构
[1] Columbia University,Department of Chemistry
[2] Daylight Solutions Inc.,Department of Biological Sciences
[3] Columbia University,Kavli Institute for Brain Science
[4] Columbia University,Department of Bioengineering
[5] University of California San Diego,School of Biological Science
[6] The University of Hong Kong,undefined
来源
Nature Methods | 2020年 / 17卷
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摘要
Understanding metabolism is indispensable in unraveling the mechanistic basis of many physiological and pathological processes. However, in situ metabolic imaging tools are still lacking. Here we introduce a framework for mid-infrared (MIR) metabolic imaging by coupling the emerging high-information-throughput MIR microscopy with specifically designed IR-active vibrational probes. We present three categories of small vibrational tags including azide bond, 13C-edited carbonyl bond and deuterium-labeled probes to interrogate various metabolic activities in cells, small organisms and mice. Two MIR imaging platforms are implemented including broadband Fourier transform infrared microscopy and discrete frequency infrared microscopy with a newly incorporated spectral region (2,000–2,300 cm−1). Our technique is uniquely suited to metabolic imaging with high information throughput. In particular, we performed single-cell metabolic profiling including heterogeneity characterization, and large-area metabolic imaging at tissue or organ level with rich spectral information.
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页码:844 / 851
页数:7
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