Nuclear segmentation facilitates neutrophil migration
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Publication date
2023-06-01
Authors
Shen, Connie
Mulder, Eva
Buitenwerf, Wiebe
Postat, Jérémy
Jansen, Aron
Kox, Matthijs
Mandl, Judith N
Vrisekoop, Nienke
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Document Type
Article
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cc_by
Abstract
Neutrophils are among the fastest-moving immune cells. Their speed is critical to their function as 'first responder' cells at sites of damage or infection, and it has been postulated that the unique segmented nucleus of neutrophils functions to assist their rapid migration. Here, we tested this hypothesis by imaging primary human neutrophils traversing narrow channels in custom-designed microfluidic devices. Individuals were given an intravenous low dose of endotoxin to elicit recruitment of neutrophils into the blood with a high diversity of nuclear phenotypes, ranging from hypo- to hyper-segmented. Both by cell sorting of neutrophils from the blood using markers that correlate with lobularity and by directly quantifying the migration of neutrophils with distinct lobe numbers, we found that neutrophils with one or two nuclear lobes were significantly slower to traverse narrower channels, compared to neutrophils with more than two nuclear lobes. Thus, our data show that nuclear segmentation in primary human neutrophils provides a speed advantage during migration through confined spaces.
Keywords
Cell Movement/physiology, Cell Nucleus, Humans, Neutrophils/physiology, Nucleus, Migration, Neutrophil, Nuclear segmentation, Endotoxemia, Microfluidics, Cell Biology, Research Support, Non-U.S. Gov't, Journal Article
Citation
Shen, C, Mulder, E, Buitenwerf, W, Postat, J, Jansen, A, Kox, M, Mandl, J N & Vrisekoop, N 2023, 'Nuclear segmentation facilitates neutrophil migration', Journal of cell science, vol. 136, no. 11, jcs260768. https://doi.org/10.1242/jcs.260768