Inverse electron demand Diels–Alder reactions in chemical biology

Реакции Дильса—Альдера с обратным электронным требованием в химической биологии
B. L. Oliveira, Zijian Guo, Gonçalo J. L. Bernardes
2017-01-01

bioorthogonal chemistrybioorthogonal decagingin vivo radiolabelinginverse electron-demand Diels–Alder reactiontetrazine–dienophile coupling
The emerging inverse electron demand Diels-Alder (IEDDA) reaction stands out from other bioorthogonal reactions by virtue of its unmatchable kinetics, excellent orthogonality and biocompatibility. With the recent discovery of novel dienophiles and optimal tetrazine coupling partners, attention has now been turned to the use of IEDDA approaches in basic biology, imaging and therapeutics. Here we review this bioorthogonal reaction and its promising applications for live cell and animal studies. We first discuss the key factors that contribute to the fast IEDDA kinetics and describe the most recent advances in the synthesis of tetrazine and dienophile coupling partners. Both coupling partners have been incorporated into proteins for tracking and imaging by use of fluorogenic tetrazines that become strongly fluorescent upon reaction. Selected notable examples of such applications are presented. The exceptional fast kinetics of this catalyst-free reaction, even using low concentrations of coupling partners, make it amenable for in vivo radiolabelling using pretargeting methodologies, which are also discussed. Finally, IEDDA reactions have recently found use in bioorthogonal decaging to activate proteins or drugs in gain-of-function strategies. We conclude by showing applications of the IEDDA reaction in the construction of biomaterials that are used for drug delivery and multimodal imaging, among others. The use and utility of the IEDDA reaction is interdisciplinary and promises to revolutionize chemical biology, radiochemistry and materials science.
1
Fluorogenic tetrazines incorporated into protein-labeling strategies become strongly fluorescent after reaction, supporting protein tracking and imaging.
2
IEDDA bioorthogonal decaging can activate proteins or drugs in gain-of-function strategies and supports biomaterial construction for drug delivery and multimodal imaging.
3
Inverse electron-demand Diels–Alder reactions combine exceptionally fast kinetics with strong bioorthogonality and biocompatibility, distinguishing them from other bioorthogonal reactions.
4
Recent advances in tetrazine and dienophile design have enabled IEDDA applications in basic biology, live-cell and animal imaging, and therapeutics.
5
The catalyst-free, rapid reaction proceeds at low coupling-partner concentrations, enabling in vivo radiolabeling through pretargeting methodologies.

inverse electron-demand Diels–Alder (IEDDA) bioorthogonal reaction and its tetrazine–dienophile coupling systems in biological contexts

the reaction’s kinetics, orthogonality, biocompatibility, and applications in live-cell and in vivo imaging, radiolabelling, decaging, and biomaterial construction

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2017-01-01
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B. L. Oliveira
Zijian Guo
Gonçalo J. L. Bernardes
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