Bioorthogonal metallocatalysis has opened up a xenobiotic route to perform nonenzymatic catalytic transformations in living settings. Despite their promising features, most metals are deactivated inside cells by a myriad of reactive biomolecules, including biogenic thiols, thereby limiting the catalytic functioning of these abiotic reagents. Here we report the development of cytocompatible alloyed AuPd nanoparticles with the capacity to elicit bioorthogonal depropargylations with high efficiency in biological media. We also show that the intracellular catalytic performance of these nanoalloys is significantly enhanced by protecting them following two different encapsulation methods. Encapsulation in mesoporous silica nanorods resulted in au...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
Bioorthogonal chemistry largely relies on the use of abiotic metals to catalyze new-to-nature reacti...
Bioorthogonal transformation of prodrugs and profluorophores using transition metal catalysts (TMCs)...
The ability to carry out efficient transition metal catalysis inside living cells has the potential ...
Bioorthogonal chemistry has emerged as a promising strategy for regulating bioprocesses through abio...
Bioorthogonal chemistry introduces nonbiogenic reactions that can be performed in biological systems...
The promising potential of bioorthogonal catalysis in biomedicine is inspiring incremental efforts t...
Powerful tools have emerged in the past few years to allow the sensing, imaging and modulation of bi...
Bacterial microcompartments (MCPs) are polyhedral organelles containing an enzyme cluster wrapped in...
The transformational impact of bioorthogonal chemistries has inspired new strategies for the in vivo...
Recent advances in bioorthogonal catalysis are increasing the capacity of researchers to manipulate ...
Compartmentalization of chemical reactions inside cells are a fundamental requirement for life. Enca...
Transition metals have been used to mediate bioorthogonal reactions within a biological environment...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
Bioorthogonal chemistry largely relies on the use of abiotic metals to catalyze new-to-nature reacti...
Bioorthogonal transformation of prodrugs and profluorophores using transition metal catalysts (TMCs)...
The ability to carry out efficient transition metal catalysis inside living cells has the potential ...
Bioorthogonal chemistry has emerged as a promising strategy for regulating bioprocesses through abio...
Bioorthogonal chemistry introduces nonbiogenic reactions that can be performed in biological systems...
The promising potential of bioorthogonal catalysis in biomedicine is inspiring incremental efforts t...
Powerful tools have emerged in the past few years to allow the sensing, imaging and modulation of bi...
Bacterial microcompartments (MCPs) are polyhedral organelles containing an enzyme cluster wrapped in...
The transformational impact of bioorthogonal chemistries has inspired new strategies for the in vivo...
Recent advances in bioorthogonal catalysis are increasing the capacity of researchers to manipulate ...
Compartmentalization of chemical reactions inside cells are a fundamental requirement for life. Enca...
Transition metals have been used to mediate bioorthogonal reactions within a biological environment...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...
We report a novel biochem. method based on the sacrificial hydrogen strategy to synthesize bimetalli...