collaborators

5 papers

cond-mat.soft2026

Propelling catalytic structures using active phase separation

Benjamin Sorkin, Ned S. Wingreen

Living systems routinely consume energy to achieve motility, often using intricate biomolecular machinery. In this work, we show that active droplets can sustain indefinite self-pr…

physics.bio-ph2026

Roadmap for Condensates in Cell Biology

Dilimulati Aierken, Sebastian Aland, Stefano Bo +38

Biomolecular condensates govern essential cellular processes yet elude description by traditional equilibrium models. This roadmap, distilled from structured discussions at a works…

cond-mat.soft2025

Morphogenesis of bacterial colonies in liquid crystalline environments

Sebastian Gonzalez La Corte, Thomas G. J. Chandler, Saverio E. Spagnolie +2

Natural bacterial habitats are often complex fluids with viscoelastic and anisotropic responses to stress; for example, they can take the form of liquid crystals (LCs), with elonga…

physics.bio-ph2025

Accelerated Ostwald ripening by chemical activity

Benjamin Sorkin, Ned S. Wingreen

Phase separation of biomolecular condensates promotes membrane-free compartmentalization in cells. The dynamics of these biocondensates is routinely regulated by energy-consuming p…

q-bio.BM2025

Data-driven Discovery of Biophysical T Cell Receptor Co-specificity Rules

Andrew G. T. Pyo, Yuta Nagano, Martina Milighetti +5

The biophysical interactions between the T cell receptor (TCR) and its ligands determine the specificity of the cellular immune response. However, the immense diversity of receptor…