The transport of nutrients, xenobiotics, and signaling molecules across biological membranes is essential for life. As gatekeepers of cells, membrane proteins and nanopores are key targets in pharmaceutical research and industry. Multiple techniques help in elucidating, utilizing, or mimicking the function of biological membrane-embedded nanodevices. In particular, the use of DNA origami to construct simple nanopores based on the predictable folding of nucleotides provides a promising direction for innovative sensing and sequencing approaches. Knowledge of translocation characteristics is crucial to link structural design with function. Here, we summarize recent developments and compare features of membrane-embedded nanopores with solid-sta...
International audienceHighly Focused Ion Beams (FIB) are used to produce in one step large quantitie...
<div><p>Nanopores have become an important tool for molecule detection at single molecular level. Wi...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
The transport of nutrients, xenobiotics, and signaling molecules across biological membranes is esse...
Nanopores are key in portable sequencing and research given their ability to transport elongated DNA...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
Synthetic solid-state nanopores are being intensively investigated as single-molecule sensors for de...
Membrane proteins are prime drug targets as they control the transit of information, ions, and solut...
Solid-state nanopores, nanometer-size holes in a thin synthetic membrane, are a versatile tool for t...
Solid-state nanopores of on-demand dimensions and shapes can facilitate desired sensor functions. Ho...
Solid-state nanopores have emerged as versatile single-molecule sensors for applications including D...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
We review the current status of various aspects of biopolymer translocation through nanopores and th...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...
International audienceHighly Focused Ion Beams (FIB) are used to produce in one step large quantitie...
<div><p>Nanopores have become an important tool for molecule detection at single molecular level. Wi...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
The transport of nutrients, xenobiotics, and signaling molecules across biological membranes is esse...
Nanopores are key in portable sequencing and research given their ability to transport elongated DNA...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
Synthetic solid-state nanopores are being intensively investigated as single-molecule sensors for de...
Membrane proteins are prime drug targets as they control the transit of information, ions, and solut...
Solid-state nanopores, nanometer-size holes in a thin synthetic membrane, are a versatile tool for t...
Solid-state nanopores of on-demand dimensions and shapes can facilitate desired sensor functions. Ho...
Solid-state nanopores have emerged as versatile single-molecule sensors for applications including D...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
We review the current status of various aspects of biopolymer translocation through nanopores and th...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...
International audienceHighly Focused Ion Beams (FIB) are used to produce in one step large quantitie...
<div><p>Nanopores have become an important tool for molecule detection at single molecular level. Wi...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...