activity
20212025
most citedSelf-organization of primitive metabolic cycles due to non-reciprocal interactions

45 citations · 103 across the 5 of their papers we have counts for

collaborators

5 papers

physics.bio-ph2025

Spatial self-organization of enzymes in complex reaction networks

Vincent Ouazan-Reboul, Ramin Golestanian, Jaime Agudo-Canalejo

Living systems contain intricate biochemical networks whose structure is closely related to their function and allows them to exhibit robust behavior in the presence of external st…

cond-mat.soft2023★ 11 cited

Interaction-motif-based classification of self-organizing metabolic cycles

Vincent Ouazan-Reboul, Ramin Golestanian, Jaime Agudo-Canalejo

Particles that are catalytically-active and chemotactic can interact through the concentration fields upon which they act, which in turn may lead to wide-scale spatial self-organiz…

cond-mat.soft2023★ 18 cited

Network effects lead to self-organization in metabolic cycles of self-repelling catalysts

Vincent Ouazan-Reboul, Ramin Golestanian, Jaime Agudo-Canalejo

Mixtures of particles that interact through phoretic effects are known to aggregate if they belong to species that exhibit attractive self-interactions. We study self-organization…

cond-mat.soft2023★ 45 cited

Self-organization of primitive metabolic cycles due to non-reciprocal interactions

Vincent Ouazan-Reboul, Jaime Agudo-Canalejo, Ramin Golestanian

We study analytically and numerically a model metabolic cycle composed of an arbitrary number of species of catalytically active particles. Each species converts a substrate into a…

q-bio.SC2021★ 29 cited

Non-equilibrium phase separation in mixtures of catalytically active particles: size dispersity and screening effects

Vincent Ouazan-Reboul, Jaime Agudo-Canalejo, Ramin Golestanian

Biomolecular condensates in cells are often rich in catalytically-active enzymes. This is particularly true in the case of the large enzymatic complexes known as metabolons, which…