Membrane fusion is a ubiquitous phenomenon linked to many biological processes, and represents a crucial step in liposome-based drug delivery strategies. The ability to control, ever more precisely, membrane fusion pathways would thus be highly valuable for next generation nano-medical solutions and, more generally, the design of advanced biomimetic systems such as synthetic cells. In this article, we present fusogenic nanostructures constructed from synthetic DNA which, different from previous solutions, unlock routes for modulating the rate of fusion and making it conditional to the presence of soluble DNA molecules, thus demonstrating how membrane fusion can be controlled through simple DNA-based molecular circuits. We then systematicall...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
AbstractMembrane fusion consists of a complex rearrangement of lipids and proteins that results in t...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
The plasma membrane of cells has evolved to mediate a broad array of functionalities critical to lif...
the number and location of complementary basepairs and inserting repeated base sequences. Membrane-a...
AbstractMembrane fusion consists of a complex rearrangement of lipids and proteins that results in t...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
This thesis investigates the use of engineered DNA to program fusion and aggregation behaviors of ar...
This thesis investigates the use of engineered DNA to program fusion and aggregation behaviors of ar...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
We investigate the Ca2+-triggered fusion of lipid vesicles site-selectively tethered to a DNA-modifi...
We investigate the Ca2+-triggered fusion of lipid vesicles site-selectively tethered to a DNA-modifi...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
AbstractMembrane fusion consists of a complex rearrangement of lipids and proteins that results in t...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
The plasma membrane of cells has evolved to mediate a broad array of functionalities critical to lif...
the number and location of complementary basepairs and inserting repeated base sequences. Membrane-a...
AbstractMembrane fusion consists of a complex rearrangement of lipids and proteins that results in t...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
This thesis investigates the use of engineered DNA to program fusion and aggregation behaviors of ar...
This thesis investigates the use of engineered DNA to program fusion and aggregation behaviors of ar...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
We investigate the Ca2+-triggered fusion of lipid vesicles site-selectively tethered to a DNA-modifi...
We investigate the Ca2+-triggered fusion of lipid vesicles site-selectively tethered to a DNA-modifi...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...