Live-Cell Stimulated Raman Scattering Imaging of Alkyne-Tagged Biomolecules

Alkynes can be metabolically incorporated into biomolecules including nucleic acids, proteins, lipids, and glycans. In addition to the clickable chemical reactivity, alkynes possess a unique Raman scattering within the Raman‐silent region of a cell. Coupling this spectroscopic signature with Raman m...

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Veröffentlicht in:Angewandte Chemie International Edition 2014-06, Vol.53 (23), p.5827-5831
Hauptverfasser: Hong, Senlian, Chen, Tao, Zhu, Yuntao, Li, Ang, Huang, Yanyi, Chen, Xing
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Sprache:eng
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Zusammenfassung:Alkynes can be metabolically incorporated into biomolecules including nucleic acids, proteins, lipids, and glycans. In addition to the clickable chemical reactivity, alkynes possess a unique Raman scattering within the Raman‐silent region of a cell. Coupling this spectroscopic signature with Raman microscopy yields a new imaging modality beyond fluorescence and label‐free microscopies. The bioorthogonal Raman imaging of various biomolecules tagged with an alkyne by a state‐of‐the‐art Raman imaging technique, stimulated Raman scattering (SRS) microscopy, is reported. This imaging method affords non‐invasiveness, high sensitivity, and molecular specificity and therefore should find broad applications in live‐cell imaging. Raman imaging: In addition to the clickable chemical reactivity, alkynes possess a unique Raman scattering within the Raman‐silent region of a cell (see picture). Coupling this spectroscopic signature with Raman microscopy yields a new imaging modality beyond fluorescence and label‐free microscopies.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.201400328