The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool for achieving effective cell photo-stimulation. Here, an amphiphilic azobenzene that preferentially dwells within the plasma membrane is studied. In particular, its isomerization dynamics in different media is investigated. It is found that in molecular aggregates formed in water, the isomerization reaction is hindered, while radiative deactivation is favored. However, once protected by a lipid shell, the photochromic molecule reacquires its ultrafast photoisomerization capacity. This behavior is explained considering collective excited states that may form in aggregates, locking the conformational dynamics and redistributing the oscillator st...
Light can effectively interrogate biological systems providing control over complex cellular process...
We report the synthesis and characterization of a simple nonionic azoamphiphile, C<sub>12</sub>OazoE...
When adorned with n-octyl chains azobenzene is able to disrupt a variety of calcein-loaded phospholi...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
G.M.P. and E.C. contributed equally to this work. G.M.P. acknowledges the financial support from Fo...
G.M.P. and E.C. contributed equally to this work. G.M.P. acknowledges the financial support from Fo...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
We report on the isomerization dynamics of an amphiphilic azobenzene that dwells within the plasma m...
We report on the isomerization dynamics of an amphiphilic azobenzene that dwells within the plasma m...
We report on the isomerization dynamics of an amphiphilic azobenzene that dwells within the plasma m...
We report the synthesis and characterization of a simple nonionic azoamphiphile, C12OazoE3OH, which ...
Light can effectively interrogate biological systems providing control over complex cellular process...
We report the synthesis and characterization of a simple nonionic azoamphiphile, C<sub>12</sub>OazoE...
When adorned with n-octyl chains azobenzene is able to disrupt a variety of calcein-loaded phospholi...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
G.M.P. and E.C. contributed equally to this work. G.M.P. acknowledges the financial support from Fo...
G.M.P. and E.C. contributed equally to this work. G.M.P. acknowledges the financial support from Fo...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
We report on the isomerization dynamics of an amphiphilic azobenzene that dwells within the plasma m...
We report on the isomerization dynamics of an amphiphilic azobenzene that dwells within the plasma m...
We report on the isomerization dynamics of an amphiphilic azobenzene that dwells within the plasma m...
We report the synthesis and characterization of a simple nonionic azoamphiphile, C12OazoE3OH, which ...
Light can effectively interrogate biological systems providing control over complex cellular process...
We report the synthesis and characterization of a simple nonionic azoamphiphile, C<sub>12</sub>OazoE...
When adorned with n-octyl chains azobenzene is able to disrupt a variety of calcein-loaded phospholi...