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Biology subjects

Grädel, B.

Publications and source records attributed to Grädel, B..

2 recordsLinked to original sources

Tracking Coordinated Cellular Dynamics in Time-Lapse Microscopy with ARCOS.px

Subcellular structures like actin waves, podosomes and focal adhesions exhibit dynamic organization that traditional tracking methods struggle to capture. We developed ARCOS.px, an open-source Python package with an interactive napari plugin, to identify and track spatial clusters in microscopy time-lapse images. Unlike conventional approaches that focus on individual particles or bulk intensity changes, ARCOS.px tracks spatial relationships, coordination, and lineage evolution over time. We demonstrate the method by tracking podosome-like structures and RhoA activity waves triggered by growth factors or optogenetics. We revealed how various drugs affect the stability, mobility, and interactions of podosome-like structures in REF52 cells. Additionally, we discovered that actin waves in these cells are followed by active RhoA and Myosin, suggesting feedback mechanisms that recruit active RhoA at their trailing edge. ARCOS.px can be applied to diverse research contexts requiring the tracking of discontinuous yet dynamically associated regions.

cell biology↗

Automatic detection of spatio-temporal signalling patterns in cell collectives

An increasing experimental evidence points to physiological importance of space-time correlations in signalling of cell collectives. From wound healing to epithelial homeostasis to morphogenesis, coordinated activation of bio-molecules between cells allows the collectives to perform more complex tasks and better tackle environmental challenges. To understand this information exchange and to advance new theories of emergent phenomena, we created ARCOS, a computational method to detect and quantify collective signalling. We demonstrate ARCOS on cell and organism collectives with space-time correlations on different scales in 2D and 3D. We make a new observation that oncogenic mutations in the MAPK/ERK and PIK3CA/Akt pathways of MCF10A epithelial cells induce ERK activity waves with different size, duration, and frequency. The open-source implementations of ARCOS are available as R and Python packages, and as a plugin for napari image viewer to interactively quantify collective phenomena without prior programming experience.

cell biology↗