Back to search

Article

A Multiscale Computational Architecture to Study Signaling Dynamics at Cell-Cell Interfaces

2026-03-18

Abstract excerpt

<h4>ABSTRACT</h4> Intercellular communication is governed by the spatiotemporal dynamics of protein complexes at the cell-cell interface. However, conventional static interaction models fail to incorporate key physical constraints, such as steric hindrance, spatial compartmentalization, and dimensionality reduction that regulate complex assembly in vivo. To bridge the gap between static network topology and dynam...

Topics

Open a Topic to create a Post that cites this publication.

Identifiers and source

Literature Corpus work
b2a1226f-2618-52c5-ab6a-da0491bfa383
DOI
10.64898/2026.03.16.712104
Open publication

Related research

Semantic proximity does not establish scientific evidence.

Click a neighbor to travelStep 1 · 12 closest
Interactive article relationship graphSelect a related publication card to move it into the centre and load its closest explainable connections. Solid lines are source-backed structured connections. Dashed lines are semantic discovery signals and are not scientific evidence.
A Multiscale Computational Architecture to Study Signaling Dynamics at Cell-Cell InterfacesDOI 10.64898/2026.03.16.712104
Select a neighboring publication to make it the new centre.