The selective and biocompatible activation of prodrugs within complex biological systems remains a key challenge in medical chemistry and chemical biology. Herein we report, for the first time, a dual prodrug activation strategy that fully satisfies the principle of bioorthogonality by the symbiotic formation of two active drugs. This dual and traceless prodrug activation strategy takes advantage of the INVDA chemistry of tetrazines (here a prodrug), generating a pyridazine-based miR21 inhibitor and the anti-cancer drug camptothecin and offers a new concept in prodrug activation.ISSN:2041-6520ISSN:2041-653
The site-specific delivery of antitumor agents is a rapidly developing field that relies on prodrug ...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
Prodrug strategies that facilitate localized and controlled activity of small-molecule therapeutics ...
The need for chemoselective bond formation within complex biological systems has driven much resear...
Many drugs suffer from an extensive first-pass metabolism leading to druginactivation and/or product...
Many drugs suffer from an extensive first-pass metabolism leading to drug inactivation and/or produc...
Bioorthogonal decaging reactions have emerged as a promising strategy for the spatially and temporal...
Bioorthogonal decaging reactions are a promising strategy for prodrug activation because they involv...
Protein degradation mediated by the proteolysis-targeting chimera (PROTAC) has emerged as an efficie...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
Tetrazines are aromatic six-membered heterocycles, containing four nitrogen atoms that can react as...
Chemotherapy is widely used to treat various forms of cancer. However, some chemotherapeutic drugs,...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
Molecules that undergo activation or modulation following the addition of benign external small‐mole...
The site-specific delivery of antitumor agents is a rapidly developing field that relies on prodrug ...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
Prodrug strategies that facilitate localized and controlled activity of small-molecule therapeutics ...
The need for chemoselective bond formation within complex biological systems has driven much resear...
Many drugs suffer from an extensive first-pass metabolism leading to druginactivation and/or product...
Many drugs suffer from an extensive first-pass metabolism leading to drug inactivation and/or produc...
Bioorthogonal decaging reactions have emerged as a promising strategy for the spatially and temporal...
Bioorthogonal decaging reactions are a promising strategy for prodrug activation because they involv...
Protein degradation mediated by the proteolysis-targeting chimera (PROTAC) has emerged as an efficie...
The high rate of the 'click-to-release' reaction between an allylic substituted trans-cyclooctene li...
Tetrazines are aromatic six-membered heterocycles, containing four nitrogen atoms that can react as...
Chemotherapy is widely used to treat various forms of cancer. However, some chemotherapeutic drugs,...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
Molecules that undergo activation or modulation following the addition of benign external small‐mole...
The site-specific delivery of antitumor agents is a rapidly developing field that relies on prodrug ...
In addition to its use for the study of biomolecules in living systems, bioorthogonal chemistry has ...
Prodrug strategies that facilitate localized and controlled activity of small-molecule therapeutics ...