Motile cells moving in multicellular organisms encounter microenvironments of locally heterogeneous mechanochemical composition. Individual compositional parameters like chemotactic signals, adhesiveness, and pore sizes are well known to be sensed by motile cells, providing individual guidance cues for cellular pathfinding. However, motile cells encounter diverse mechanochemical signals at the same time, raising the question of how cells respond to locally diverse and potentially competing signals on their migration routes. Here, we reveal that motile amoeboid cells require nuclear repositioning, termed nucleokinesis, for adaptive pathfinding in heterogeneous mechanochemical microenvironments. Using mammalian immune cells and the amoebaDict...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
During metazoan development, immune surveillance and cancer dissemination, cells migrate in complex ...
Cell movement is a multistep cycle that is essential for many biological events and involves the int...
SummaryThe mesenchymal-amoeboid transition (MAT) was proposed as a mechanism for cancer cells to ada...
International audienceMammalian cells developed two main migration modes. The slow mesenchymatous mo...
The behaviour of an organism often reflects a strategy for coping with its environment. Such behavio...
Cell migration directed by spatial cues, or taxis, is a primary mechanism for orchestrating concerte...
International audienceCell migration is essential to living organisms and deregulated in cancer. Sin...
Cell migration is a very complicated process essential for proper functioning of all living cells an...
Abstract: Cell movement within three-dimen-sional tissues is a cycling multistep process that requir...
Amoeboid cell migration is a crucial part of life. Neutrophil granulocytes, a kind of phagocytes of ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The morphological term 'amoeboid' migration subsumes a number of rather distinct biophysical modes o...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
During metazoan development, immune surveillance and cancer dissemination, cells migrate in complex ...
Cell movement is a multistep cycle that is essential for many biological events and involves the int...
SummaryThe mesenchymal-amoeboid transition (MAT) was proposed as a mechanism for cancer cells to ada...
International audienceMammalian cells developed two main migration modes. The slow mesenchymatous mo...
The behaviour of an organism often reflects a strategy for coping with its environment. Such behavio...
Cell migration directed by spatial cues, or taxis, is a primary mechanism for orchestrating concerte...
International audienceCell migration is essential to living organisms and deregulated in cancer. Sin...
Cell migration is a very complicated process essential for proper functioning of all living cells an...
Abstract: Cell movement within three-dimen-sional tissues is a cycling multistep process that requir...
Amoeboid cell migration is a crucial part of life. Neutrophil granulocytes, a kind of phagocytes of ...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The morphological term 'amoeboid' migration subsumes a number of rather distinct biophysical modes o...
Cell motility plays an essential role in many physiological and pathological processes, yet we still...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...
The motility of adherent eukaryotic cells is driven by the dynamics of the actin cytoskeleton. Despi...