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Specific Versus Non-specific Response in Exponential Molecular Amplification from Cross-Catalysis: Modeling the
Mathieu Branca1, Corentin Calvet1, Benoît Limoges1
1Université de Paris, Laboratoire d'Electrochimie Moléculaire, UMR 7591, CNRS, 75013, Paris, France.
Abstract:
Molecule based signal amplifications relying on an autocatalytic process may represent an ideal strategy for the development of ultrasensitive analytical or bioanalytical assays, the main reason being the exponential nature of the amplification. However, to take full advantage of such amplification rates, high stability of the starting co-reactants is required in order to avoid any undesirable background amplification. Here, on the basis of a simple kinetic model of cross-catalysis including a certain degree of intrinsic instability of co-reactants, we highlight the key parameters governing the analytical response of the system and discuss the analytical performances that are expected from a given kinetic set. In particular, we show how the detection limit is directly related to the relative instability of reactants within each catalytic loop. The model is validated with an experimental dataset and is intended to serve as a guide in the design and optimization of autocatalytic molecular-based amplification systems with improved analytical performances.
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