The disulfide dihedral angle in epidithiodiketopiperazines (ETPs) is near 0°. Application of this highest possible ring tension to strain-promoted thiol-mediated uptake results in efficient delivery to the cytosol and nucleus. Compared to the previous best asparagusic acid (AspA), ring-opening disulfide exchange with ETPs occurs more efficiently even with nonactivated thiols, and the resulting thiols exchange rapidly with nonactivated disulfides. ETP-mediated cellular uptake is more than 20 times more efficient compared to AspA, occurs without endosomal capture, depends on temperature, and is “unstoppable” by inhibitors of endocytosis and conventional thiol-mediated uptake, including siRNA against the transferrin receptor. These results sug...
Cyclic oligochalcogenides (COCs) are emerging as promising systems to penetrate cells. Clearly bette...
Simple cyclic disulfides under high tension mediate the uptake of giant substrates, that is, liposom...
Chalcogen-centered cascade exchange chemistry is increasingly understood to account for thiol-mediat...
The disulfide dihedral angle in epidithiodiketopiperazines (ETPs) is near 0°. Application of this hi...
The objective of the study was to explore the potential of ring tension in cyclic disulfides for thi...
This Perspective focuses on thiol-mediated uptake, that is, the entry of substrates into cells enabl...
The cytosolic delivery of various substrates in 3D multicellular spheroids by thiol-mediated uptake ...
In this study, we demonstrate that appendage of a single asparagusic acid residue (AspA tag) is suff...
In this study, we demonstrate that appendage of a single asparagusic acid residue (AspA tag) is suff...
Since their discovery, cell-penetrating peptides (CPPs) has been developed as a powerful drug delive...
The cellular uptake of biologically relevant cargos is a longstanding challenge in drug discovery pr...
Intracellular delivery is an essential challenge for drug development, as low membrane permeability...
Thiol-mediated uptake is emerging as a powerful method to penetrate cells. Cyclic oligochalcogenides...
INTRODUCTION: Recently, exploiting cell-surface thiols (also known as exofacial protein thiols (EPTs...
Copyright © 2020 American Chemical Society. Epithiodiketopiperazines (ETPs) are a structurally compl...
Cyclic oligochalcogenides (COCs) are emerging as promising systems to penetrate cells. Clearly bette...
Simple cyclic disulfides under high tension mediate the uptake of giant substrates, that is, liposom...
Chalcogen-centered cascade exchange chemistry is increasingly understood to account for thiol-mediat...
The disulfide dihedral angle in epidithiodiketopiperazines (ETPs) is near 0°. Application of this hi...
The objective of the study was to explore the potential of ring tension in cyclic disulfides for thi...
This Perspective focuses on thiol-mediated uptake, that is, the entry of substrates into cells enabl...
The cytosolic delivery of various substrates in 3D multicellular spheroids by thiol-mediated uptake ...
In this study, we demonstrate that appendage of a single asparagusic acid residue (AspA tag) is suff...
In this study, we demonstrate that appendage of a single asparagusic acid residue (AspA tag) is suff...
Since their discovery, cell-penetrating peptides (CPPs) has been developed as a powerful drug delive...
The cellular uptake of biologically relevant cargos is a longstanding challenge in drug discovery pr...
Intracellular delivery is an essential challenge for drug development, as low membrane permeability...
Thiol-mediated uptake is emerging as a powerful method to penetrate cells. Cyclic oligochalcogenides...
INTRODUCTION: Recently, exploiting cell-surface thiols (also known as exofacial protein thiols (EPTs...
Copyright © 2020 American Chemical Society. Epithiodiketopiperazines (ETPs) are a structurally compl...
Cyclic oligochalcogenides (COCs) are emerging as promising systems to penetrate cells. Clearly bette...
Simple cyclic disulfides under high tension mediate the uptake of giant substrates, that is, liposom...
Chalcogen-centered cascade exchange chemistry is increasingly understood to account for thiol-mediat...