Synthetic DNA is a growing alternative to electronic-based technologies in fields such as data storage, product tagging, or signal processing. Its value lies in its characteristic attributes, namely Watson-Crick base pairing, array synthesis, sequencing, toehold displacement and polymerase chain reaction (PCR) capabilities. In this review, we provide an overview of the most prevalent applications of synthetic DNA that could shape the future of information technology. We emphasize the reasons why the biomolecule can be a valuable alternative for conventional electronic-based media, and give insights on where the DNA-analog technology stands with respect to its electronic counterparts.ISSN:2041-172
Although digital signals have been used as inputs in some DNA computing applications, there has been...
DNA polymerases are the enzymes that catalyse all DNA synthesis in Nature often with astounding spee...
For over 20 years, laboratories around the world have been applying the principles of Darwinian evol...
As the blueprint of life, the natural exploits of DNA are admirable. However, DNA should not only be...
DNA nanotechnology employs synthetic nucleic acid strands to design and engineer nanoscale structura...
Natural DNA storage allows cellular differentiation, evolution, the growth of our children and contr...
Thesis (Ph.D.)--University of Washington, 2018DNA is the principal carrier of biological information...
Digital information and the technologies that manage it are an essential part of our lives. Ever-pre...
International audienceStoring data on DNA molecules is an alternative to traditional storage media b...
Abstract--All computers in existence today make use of binary code – 1’s and 0’s, or on’s and off’s ...
Technical Report in support of Sloan Foundation study on DNA synthesis and governance options.Until ...
Generally, the computer systems are made up of silicon-based computer technologies. In DNA computing...
With the increased rate of data collection, there are growing problems with how to efficiently and e...
DNA computing is a new computing paradigm utilizing actual DNA oligonucleotides to do computation b...
In this report, a number of mechanisms and computational applications using DNA nanotechnology are p...
Although digital signals have been used as inputs in some DNA computing applications, there has been...
DNA polymerases are the enzymes that catalyse all DNA synthesis in Nature often with astounding spee...
For over 20 years, laboratories around the world have been applying the principles of Darwinian evol...
As the blueprint of life, the natural exploits of DNA are admirable. However, DNA should not only be...
DNA nanotechnology employs synthetic nucleic acid strands to design and engineer nanoscale structura...
Natural DNA storage allows cellular differentiation, evolution, the growth of our children and contr...
Thesis (Ph.D.)--University of Washington, 2018DNA is the principal carrier of biological information...
Digital information and the technologies that manage it are an essential part of our lives. Ever-pre...
International audienceStoring data on DNA molecules is an alternative to traditional storage media b...
Abstract--All computers in existence today make use of binary code – 1’s and 0’s, or on’s and off’s ...
Technical Report in support of Sloan Foundation study on DNA synthesis and governance options.Until ...
Generally, the computer systems are made up of silicon-based computer technologies. In DNA computing...
With the increased rate of data collection, there are growing problems with how to efficiently and e...
DNA computing is a new computing paradigm utilizing actual DNA oligonucleotides to do computation b...
In this report, a number of mechanisms and computational applications using DNA nanotechnology are p...
Although digital signals have been used as inputs in some DNA computing applications, there has been...
DNA polymerases are the enzymes that catalyse all DNA synthesis in Nature often with astounding spee...
For over 20 years, laboratories around the world have been applying the principles of Darwinian evol...