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Updated: May 6, 2026

Plasmid-derived DNA Strand Displacement Gates for Implementing Chemical Reaction Networks
Published on: November 25, 2015
Networked enzymatic logic gates with filtering: new theoretical modeling expressions and their experimental
Vladimir Privman1, Oleksandr Zavalov, Lenka Halámková
1Department of Physics, and ‡Department of Chemistry and Biomolecular Science, Clarkson University , Potsdam, New York 13676, United States.
Abstract:
We report the first study of a network of connected enzyme-catalyzed reactions, with added chemical and enzymatic processes that incorporate the recently developed biochemical filtering steps into the functioning of this biocatalytic cascade. New theoretical expressions are derived to allow simple, few-parameter modeling of network components concatenated in such cascades, both with and without filtering. The derived expressions are tested against experimental data obtained for the realized network's responses, measured optically, to variations of its input chemicals' concentrations with and without filtering processes. We also describe how the present modeling approach captures and explains several observations and features identified in earlier studies of enzymatic processes when they were considered as potential network components for multistep information/signal processing systems.
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