Photoregulation is among the most promising tools for development of dynamic DNA nanosystems, due to its high spatiotemporal precision, biocompatibility, and ease of use. So far, azobenzene and its derivatives have shown high potential in photocontrolling DNA duplex hybridization by light-dependent photoisomerization. Despite many recent advances, obtaining sufficiently high photoswitching efficiency under conditions more suitable for work with DNA nanostructures are challenging. Here we introduce a pair of arylazopyrazoles as new photoswitches for efficient and reversible control of DNA hybridization achieved even at room temperature with a low number of required modifications. Their photophysical properties in the native state and in DNA ...
A novel method for synthesizing and photopatterning colloidal crystals via light-responsive DNA is d...
There is a growing interest in the photoregulation of biological functions, due to the high level of...
Phase transition is a promising aspect of DNA as biopolymers. Anionic DNA oligonucleotides easily fo...
DNA switches that can change conformation in response to certain wavelengths of light could enable r...
Photoswitch-modified DNA is being studied for applications including light-harvesting molecular moto...
We describe a new class of stimulus-responsive DNA-functionalized gold nanoparticles that incorporat...
Reversible control over the functionality of biological systems via external triggers may be used in...
AbstractMolecular photoswitches provide a promising way for selective regulation of nanoscaled biolo...
Short, complementary DNA single strands with mismatched base pairs cannot undergo spontaneous format...
Reversible control over the functionality of biological systems via external triggers may be used in...
Modified DNA carrying an azobenzene was successfully applied to the photo-regulation of DNA/RNA hybr...
Thesis (Ph.D.)--University of Washington, 2015-12The azobenzene-modified DNA is an oligonucleotide m...
ABSTRACT Various three-dimensional structures have been created on a nanometer scale using the self-...
Photoresponsive azobenzene-modified DNA (RNA) has become a very fruitful material for nanotechnology...
Recently, photochromic derivatives of nucleobases have drawn attention for regulating oligonucleotid...
A novel method for synthesizing and photopatterning colloidal crystals via light-responsive DNA is d...
There is a growing interest in the photoregulation of biological functions, due to the high level of...
Phase transition is a promising aspect of DNA as biopolymers. Anionic DNA oligonucleotides easily fo...
DNA switches that can change conformation in response to certain wavelengths of light could enable r...
Photoswitch-modified DNA is being studied for applications including light-harvesting molecular moto...
We describe a new class of stimulus-responsive DNA-functionalized gold nanoparticles that incorporat...
Reversible control over the functionality of biological systems via external triggers may be used in...
AbstractMolecular photoswitches provide a promising way for selective regulation of nanoscaled biolo...
Short, complementary DNA single strands with mismatched base pairs cannot undergo spontaneous format...
Reversible control over the functionality of biological systems via external triggers may be used in...
Modified DNA carrying an azobenzene was successfully applied to the photo-regulation of DNA/RNA hybr...
Thesis (Ph.D.)--University of Washington, 2015-12The azobenzene-modified DNA is an oligonucleotide m...
ABSTRACT Various three-dimensional structures have been created on a nanometer scale using the self-...
Photoresponsive azobenzene-modified DNA (RNA) has become a very fruitful material for nanotechnology...
Recently, photochromic derivatives of nucleobases have drawn attention for regulating oligonucleotid...
A novel method for synthesizing and photopatterning colloidal crystals via light-responsive DNA is d...
There is a growing interest in the photoregulation of biological functions, due to the high level of...
Phase transition is a promising aspect of DNA as biopolymers. Anionic DNA oligonucleotides easily fo...