In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with the mechanosensitivity and fluorescence lifetime needed for practical use in biology. Twisted push–pull scaffolds with large and bright dithienothiophenes and their S,S-dioxides as the first “fluorescent flippers” are shown to report on the lateral organization of lipid bilayers with quantum yields above 80% and lifetimes above 4 ns. Their planarization in liquid-ordered (Lo) and solid-ordered (So) membranes results in red shifts in excitation of up to +80 nm that can be transcribed into red shifts in emission of up to +140 nm by Förster resonance energy transfer (FRET). These unique properties are compatible with multidomain imaging in giant ...
The concept to couple fluorophore planarization and fluorophore polarization for the construction of...
This article assembles pertinent insights behind the concept of planarizable push–pull probes. As a ...
To image the mechanical properties of biological membranes, twisted push–pull mechanophores that res...
In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with t...
Planarizable push–pull fluorescent probes, also referred to as flipper probes, have been introduced ...
To image the membrane tension in living cells, planarizable push–pull probes have been introduced. T...
In 2016, Flipper-TR® has been introduced as the first small fluorescent molecule capable of visualiz...
The objective of this thesis was to design, synthesize and evaluate mechanosensitive membrane probes...
Abstract Measuring forces within living cells remains a technical challenge. We developed hydrophobi...
Lateral forces in biological membranes affect a variety of dynamic cellular processes. Recent synthe...
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...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...
Contrary to sulfides, sulfoxides or sulfones, sulfoximines have been mostly neglected in the design ...
Bent N,N′-diphenyl-dihydrodibenzo[a,c]phenazine amphiphiles are introduced as mechanosensitive membr...
The concept to couple fluorophore planarization and fluorophore polarization for the construction of...
This article assembles pertinent insights behind the concept of planarizable push–pull probes. As a ...
To image the mechanical properties of biological membranes, twisted push–pull mechanophores that res...
In this report, “fluorescent flippers” are introduced to create planarizable push–pull probes with t...
Planarizable push–pull fluorescent probes, also referred to as flipper probes, have been introduced ...
To image the membrane tension in living cells, planarizable push–pull probes have been introduced. T...
In 2016, Flipper-TR® has been introduced as the first small fluorescent molecule capable of visualiz...
The objective of this thesis was to design, synthesize and evaluate mechanosensitive membrane probes...
Abstract Measuring forces within living cells remains a technical challenge. We developed hydrophobi...
Lateral forces in biological membranes affect a variety of dynamic cellular processes. Recent synthe...
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...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...
Contrary to sulfides, sulfoxides or sulfones, sulfoximines have been mostly neglected in the design ...
Bent N,N′-diphenyl-dihydrodibenzo[a,c]phenazine amphiphiles are introduced as mechanosensitive membr...
The concept to couple fluorophore planarization and fluorophore polarization for the construction of...
This article assembles pertinent insights behind the concept of planarizable push–pull probes. As a ...
To image the mechanical properties of biological membranes, twisted push–pull mechanophores that res...