Publication: Programmability of chemical reaction networks
Programmability of chemical reaction networks
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Cook, M., Soloveichik, D., Winfree, E., & Bruck, J. (2009). Programmability of chemical reaction networks. In A. Condon, D. Harel, J. N. Kok, A. Salomaa, & E. Winfree (Eds.), Algorithmic bioprocesses. Pt. 8: Biochemical reactions (pp. 543–584). Springer. https://doi.org/10.1007/978-3-540-88869-7_27
Abstract
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Motivated by the intriguing complexity of biochemical circuitry within individual cells we study Stochastic Chemical Reaction Networks (SCRNs), a formal model that considers a set of chemical reactions acting on a finite number of molecules in a well-stirred solution according to standard chemical kinetics equations. SCRNs have been widely used for describing naturally occurring (bio)chemical systems, and with the advent of synthetic biology they become a promising language for the design of artificial biochemical circuits. Our intere
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Cook, M., Soloveichik, D., Winfree, E., & Bruck, J. (2009). Programmability of chemical reaction networks. In A. Condon, D. Harel, J. N. Kok, A. Salomaa, & E. Winfree (Eds.), Algorithmic bioprocesses. Pt. 8: Biochemical reactions (pp. 543–584). Springer. https://doi.org/10.1007/978-3-540-88869-7_27