2024
DOI: 10.1098/rspa.2023.0694
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Unstable cores are the source of instability in chemical reaction networks

Nicola Vassena,
Peter F. Stadler

Abstract: In biochemical networks, complex dynamical features such as superlinear growth and oscillations are classically considered a consequence of autocatalysis. For the large class of parameter-rich kinetic models, which includes generalized mass action kinetics and Michaelis–Menten kinetics, we show that certain submatrices of the stoichiometric matrix, so-called unstable cores, are sufficient for a reaction network to admit instability and potentially give rise to such complex dynamical behaviour. The determinant … Show more

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