Contrary to sulfides, sulfoxides or sulfones, sulfoximines have been mostly neglected in the design of fluorescent probes until recently. In this study, we elaborate systematically on sulfoximine acceptors in fluorescent flipper probes. Fluorescent flippers have been introduced as mechanosensitive probes to image membrane order and tension. They consist of twisted dithienothiophene dimers with sulfide and sulfone bridges to produce the essential primary dipole of the coupled push-pull system. The objective of this study was to replace the sulfone acceptor by a series of sulfoximines. This is intriguing as a synthetic challenge and worthwhile because the extra nitrogen substituent offers a variability that is attractive to understand and con...
Inspired by the color tuning of carotenoids pigments in lobster, our group highlighted how the inter...
Lateral forces in biological membranes affect a variety of dynamic cellular processes. Recent synthe...
New fluorescent probes were introduced as an innovative methodology to label lipid bilayer membranes...
To image the membrane tension in living cells, planarizable push–pull probes have been introduced. T...
The objective of this thesis was to design, synthesize and evaluate mechanosensitive membrane probes...
Planarizable push–pull fluorescent probes, also referred to as flipper probes, have been introduced ...
Planarizable and polarizable dithieno[3,2-b;2′,3′-d]thiophene (DTT) dimers have been introduced rece...
In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with t...
In 2016, Flipper-TR® has been introduced as the first small fluorescent molecule capable of visualiz...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...
It is currently not possible to directly measure the lateral pressure of a biomembrane. Mechanorespo...
The concept to couple fluorophore planarization and fluorophore polarization for the construction of...
Planarizable push–pull flipper probes have been introduced to image order and tension of membranes i...
Mechanosensitive flipper probes are attracting interest as fluorescent reporters of membrane order a...
In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with t...
Inspired by the color tuning of carotenoids pigments in lobster, our group highlighted how the inter...
Lateral forces in biological membranes affect a variety of dynamic cellular processes. Recent synthe...
New fluorescent probes were introduced as an innovative methodology to label lipid bilayer membranes...
To image the membrane tension in living cells, planarizable push–pull probes have been introduced. T...
The objective of this thesis was to design, synthesize and evaluate mechanosensitive membrane probes...
Planarizable push–pull fluorescent probes, also referred to as flipper probes, have been introduced ...
Planarizable and polarizable dithieno[3,2-b;2′,3′-d]thiophene (DTT) dimers have been introduced rece...
In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with t...
In 2016, Flipper-TR® has been introduced as the first small fluorescent molecule capable of visualiz...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...
It is currently not possible to directly measure the lateral pressure of a biomembrane. Mechanorespo...
The concept to couple fluorophore planarization and fluorophore polarization for the construction of...
Planarizable push–pull flipper probes have been introduced to image order and tension of membranes i...
Mechanosensitive flipper probes are attracting interest as fluorescent reporters of membrane order a...
In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with t...
Inspired by the color tuning of carotenoids pigments in lobster, our group highlighted how the inter...
Lateral forces in biological membranes affect a variety of dynamic cellular processes. Recent synthe...
New fluorescent probes were introduced as an innovative methodology to label lipid bilayer membranes...