The ability to carry out efficient transition metal catalysis inside living cells has the potential to unlock a diverse range of new-to-nature transformations, and provides the opportunity to gain insight into the working of biological systems by providing new routes towards biomolecular labelling and imaging, as well as to specific and controlled prodrug activation. However, there is often poor biocompatibility of metal catalyst with the cellular environment. The irreversible poisoning of metal catalysts by biomolecules, in particular intracellular thiols, results in deactivated complexes which are no longer catalytically active. Another hurdle is that very low catalyst concentrations and loadings are required to circumvent cytotoxicity in...
A concerted effort of synthetic chemistry and synthetic biology promises to expand biological functi...
Considerable attention has been focused on improving the biocompatibility of Cu(I)-catalyzed azide-a...
Catalysis has strongly emerged in the field of medicinal inorganic chemistry as a suitable tool to d...
Powerful tools have emerged in the past few years to allow the sensing, imaging and modulation of bi...
Cancer is a metabolic disease characterized by immortal cells which develop in a non-controlled and ...
Bioorthogonal chemistry largely relies on the use of abiotic metals to catalyze new-to-nature reacti...
Transition-metal catalysis has changed the way in which chemical reactions can be accomplished. Whil...
The site-specific delivery of antitumor agents is a rapidly developing field that relies on prodrug ...
The viability of building artificial metabolic pathways within a cell will depend on our ability to ...
We report our efforts to enable transition-metal catalysis in the presence of cellular debris, notab...
Metal ions are known to act as catalytic centres in metallo-enzymes. On the other hand, low-molecula...
Bioorthogonal metallocatalysis has opened up a xenobiotic route to perform nonenzymatic catalytic tr...
Chemical reactions are required for the conversion of feedstocks to valuable materials, such as diff...
A concerted effort of synthetic chemistry and synthetic biology promises to expand biological functi...
Bioorthogonal chemistry offers powerful tools to study and manipulate biological systems without int...
A concerted effort of synthetic chemistry and synthetic biology promises to expand biological functi...
Considerable attention has been focused on improving the biocompatibility of Cu(I)-catalyzed azide-a...
Catalysis has strongly emerged in the field of medicinal inorganic chemistry as a suitable tool to d...
Powerful tools have emerged in the past few years to allow the sensing, imaging and modulation of bi...
Cancer is a metabolic disease characterized by immortal cells which develop in a non-controlled and ...
Bioorthogonal chemistry largely relies on the use of abiotic metals to catalyze new-to-nature reacti...
Transition-metal catalysis has changed the way in which chemical reactions can be accomplished. Whil...
The site-specific delivery of antitumor agents is a rapidly developing field that relies on prodrug ...
The viability of building artificial metabolic pathways within a cell will depend on our ability to ...
We report our efforts to enable transition-metal catalysis in the presence of cellular debris, notab...
Metal ions are known to act as catalytic centres in metallo-enzymes. On the other hand, low-molecula...
Bioorthogonal metallocatalysis has opened up a xenobiotic route to perform nonenzymatic catalytic tr...
Chemical reactions are required for the conversion of feedstocks to valuable materials, such as diff...
A concerted effort of synthetic chemistry and synthetic biology promises to expand biological functi...
Bioorthogonal chemistry offers powerful tools to study and manipulate biological systems without int...
A concerted effort of synthetic chemistry and synthetic biology promises to expand biological functi...
Considerable attention has been focused on improving the biocompatibility of Cu(I)-catalyzed azide-a...
Catalysis has strongly emerged in the field of medicinal inorganic chemistry as a suitable tool to d...