[HTML][HTML] From cascaded catalytic nucleic acids to enzyme–DNA nanostructures: controlling reactivity, sensing, logic operations, and assembly of complex structures

F Wang, CH Lu, I Willner - Chemical reviews, 2014 - ACS Publications
DNA is one of the most fascinating biopolymers. Besides its central role as carrier of genetic
information and translation of the genetic code into proteins, DNA holds great promise as a …

[HTML][HTML] Molecules with a sense of logic: a progress report

J Andréasson, U Pischel - Chemical Society Reviews, 2015 - pubs.rsc.org
In this tutorial review, the most recent developments in the field of molecular logic and
information processing are discussed. Special emphasis is given to the report of progress in …

DNAzyme-based biosensors and nanodevices

L Gong, Z Zhao, YF Lv, SY Huan, T Fu… - Chemical …, 2015 - pubs.rsc.org
DNAzymes, screened through in vitro selection, have shown great promise as molecular
tools in the design of biosensors and nanodevices. The catalytic activities of DNAzymes …

Smart and functionalized development of nucleic acid‐based hydrogels: Assembly strategies, recent advances, and challenges

Y Zhang, L Zhu, J Tian, L Zhu, X Ma, X He… - Advanced …, 2021 - Wiley Online Library
Nucleic acid‐based hydrogels that integrate intrinsic biological properties of nucleic acids
and mechanical behavior of their advanced assemblies are appealing bioanalysis and …

Catalytic nucleic acids (DNAzymes) as functional units for logic gates and computing circuits: from basic principles to practical applications

R Orbach, B Willner, I Willner - Chemical Communications, 2015 - pubs.rsc.org
This feature article addresses the implementation of catalytic nucleic acids as functional
units for the construction of logic gates and computing circuits, and discusses the future …

High-resolution mapping of bifurcations in nonlinear biochemical circuits

AJ Genot, A Baccouche, R Sieskind, N Aubert-Kato… - Nature …, 2016 - nature.com
Analog molecular circuits can exploit the nonlinear nature of biochemical reaction networks
to compute low-precision outputs with fewer resources than digital circuits. This analog …

[HTML][HTML] A single layer artificial neural network type architecture with molecular engineered bacteria for reversible and irreversible computing

K Sarkar, D Bonnerjee, R Srivastava, S Bagh - Chemical science, 2021 - pubs.rsc.org
Here, we adapted the basic concept of artificial neural networks (ANNs) and experimentally
demonstrate a broadly applicable single layer ANN type architecture with molecular …

Metallo-Toehold-Activated Catalytic Hairpin Assembly Formation of Three-Way DNAzyme Junctions for Amplified Fluorescent Detection of Hg2+

X Li, J Xie, B Jiang, R Yuan, Y Xiang - ACS applied materials & …, 2017 - ACS Publications
Because of their irreversible toxicological impacts on the environment and human body, the
development of reliable and sensitive Hg2+ detection methods with high selectivity is of …

Versatile and programmable DNA logic gates on universal and label-free homogeneous electrochemical platform

L Ge, W Wang, X Sun, T Hou, F Li - Analytical chemistry, 2016 - ACS Publications
Herein, a novel universal and label-free homogeneous electrochemical platform is
demonstrated, on which a complete set of DNA-based two-input Boolean logic gates (OR …

Recent advances in the synthesis and functions of reconfigurable interlocked DNA nanostructures

CH Lu, A Cecconello, I Willner - Journal of the American Chemical …, 2016 - ACS Publications
Interlocked circular DNA nanostructures, eg, catenanes or rotaxanes, provide functional
materials within the area of DNA nanotechnology. Specifically, the triggered reversible …