Together with tremendous progress in biotechnology, nucleic acids, while retaining their status as “molecules of life„, are becoming “molecular wires„, materials for the construction of molecular structures at the junction between the biological and abiotic worlds. Herein, we present an overview of the approaches for incorporating metal centers into nucleic acids based on metal⁻boron cluster complexes (metallacarboranes) as the metal carriers. The methods are modular and versatile, allowing practical access to innovative metal-containing DNA for various applications, such as nucleic acid therapeutics, electrochemical biosensors, infrared-sensitive probes, and building blocks for nanoconstruction
Here we develop a synthetic protocol for assembling DNA with participating metal ions into multiple ...
During this thesis a new infrastructure of methods to template functional materials at specific site...
During this thesis a new infrastructure of methods to template functional materials at specific site...
Modified oligonucleotides have shown potential for multiple applications including nucleic acid-base...
Boron cluster-modified therapeutic nucleic acids with improved properties are of interest in gene th...
Boron cluster-modified therapeutic nucleic acids with improved properties are of interest in gene th...
<p>The facile construction of metal–DNA complexes using ‘Click’ reactions is reported here. A series...
In this chapter, we presented an analysis of the recent advances in the applications of boron cluste...
DNA nanotechnology has laid a platform to construct a variety of custom-shaped nanoscale objects for...
Synthetic strategies have been developed for the preparation of in-chain metallated oligonucleoticle...
During this thesis a new infrastructure of methods to template functional materials at specific site...
Various DNA structures, including specific metal ion complexes, have been designed based on the know...
Increasing numbers of DNA structures are being revealed using biophysical, spectroscopic and genomic...
During this thesis a new infrastructure of methods to template functional materials at specific site...
Metal ions bind to nucleic acids at various positions. This binding can be modulated by using metal ...
Here we develop a synthetic protocol for assembling DNA with participating metal ions into multiple ...
During this thesis a new infrastructure of methods to template functional materials at specific site...
During this thesis a new infrastructure of methods to template functional materials at specific site...
Modified oligonucleotides have shown potential for multiple applications including nucleic acid-base...
Boron cluster-modified therapeutic nucleic acids with improved properties are of interest in gene th...
Boron cluster-modified therapeutic nucleic acids with improved properties are of interest in gene th...
<p>The facile construction of metal–DNA complexes using ‘Click’ reactions is reported here. A series...
In this chapter, we presented an analysis of the recent advances in the applications of boron cluste...
DNA nanotechnology has laid a platform to construct a variety of custom-shaped nanoscale objects for...
Synthetic strategies have been developed for the preparation of in-chain metallated oligonucleoticle...
During this thesis a new infrastructure of methods to template functional materials at specific site...
Various DNA structures, including specific metal ion complexes, have been designed based on the know...
Increasing numbers of DNA structures are being revealed using biophysical, spectroscopic and genomic...
During this thesis a new infrastructure of methods to template functional materials at specific site...
Metal ions bind to nucleic acids at various positions. This binding can be modulated by using metal ...
Here we develop a synthetic protocol for assembling DNA with participating metal ions into multiple ...
During this thesis a new infrastructure of methods to template functional materials at specific site...
During this thesis a new infrastructure of methods to template functional materials at specific site...