The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene linker and a tetrazine activator has enabled exceptional control over chemical and biological processes. Here we report the development of a new bioorthogonal cleavage reaction based on trans-cyclooctene and tetrazine, which allows the use of highly reactive trans-cyclooctenes, leading to 3 orders of magnitude higher click rates compared to the parent reaction, and 4 to 6 orders higher than other cleavage reactions. In this new pyridazine elimination mechanism, wherein the roles are reversed, a trans-cyclooctene activator reacts with a tetrazine linker that is substituted with a methylene-linked carbamate, leading to a 1,4-elimination of the ca...
\u3cp\u3eEliminated without a trace: The fastest click reaction, the highly selective inverse-electr...
Bioorthogonal decaging reactions are a promising strategy for prodrug activation because they involv...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
Recent developments in bond cleavage reactions have expanded the scope of bioorthogonal chemistry be...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The click reaction between a functionalized trans-cyclooctene (TCO) and a tetrazine is a compelling ...
Bioorthogonal decaging reactions have emerged as a promising strategy for the spatially and temporal...
\u3cp\u3eEliminated without a trace: The fastest click reaction, the highly selective inverse-electr...
Bioorthogonal decaging reactions are a promising strategy for prodrug activation because they involv...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
Recent developments in bond cleavage reactions have expanded the scope of bioorthogonal chemistry be...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The bioorthogonal cleavage of allylic carbamates from trans-cyclooctene (TCO) upon reaction with tet...
The click reaction between a functionalized trans-cyclooctene (TCO) and a tetrazine is a compelling ...
Bioorthogonal decaging reactions have emerged as a promising strategy for the spatially and temporal...
\u3cp\u3eEliminated without a trace: The fastest click reaction, the highly selective inverse-electr...
Bioorthogonal decaging reactions are a promising strategy for prodrug activation because they involv...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...