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Updated: May 14, 2026

Microfluidic Platform for Measuring Neutrophil Chemotaxis from Unprocessed Whole Blood
Published on: June 3, 2014
Fer kinase limits neutrophil chemotaxis toward end target chemoattractants
Maitham Khajah1, Graciela Andonegui, Ronald Chan
1Department of Physiology and Pharmacology, Gastrointestinal Research Group, Institute of Inflammation, Immunity, and Infection, University of Calgary, Calgary, Alberta, Canada T2N 4N1.
Abstract:
Neutrophil recruitment and directional movement toward chemotactic stimuli are important processes in innate immune responses. This study examines the role of Fer kinase in neutrophil recruitment and chemotaxis to various chemoattractants in vitro and in vivo. Mice targeted with a kinase-inactivating mutation (Fer(DR/DR)) or wild type (WT) were studied using time-lapse intravital microscopy to examine leukocyte recruitment and chemotaxis in vivo. In response to keratinocyte-derived cytokine, no difference in leukocyte chemotaxis was observed between WT and Fer(DR/DR) mice. However, in response to the chemotactic peptide WKYMVm, a selective agonist of the formyl peptide receptor, a 2-fold increase in leukocyte emigration was noted in Fer(DR/DR) mice (p < 0.05). To determine whether these defects were due to Fer signaling in the endothelium or other nonhematopoietic cells, bone marrow chimeras were generated. WKYMVm-induced leukocyte recruitment in chimeric mice (WT bone marrow to Fer(DR/DR) recipients or vice versa) was similar to WT mice, suggesting that Fer kinase signaling in both leukocytes and endothelial cells serves to limit chemotaxis. Purified Fer(DR/DR) neutrophils demonstrated enhanced chemotaxis toward end target chemoattractants (WKYMVm and C5a) compared with WT using an under-agarose gel chemotaxis assay. These defects were not observed in response to intermediate chemoattractants (keratinocyte-derived cytokine, MIP-2, or LTB(4)). Increased WKYMVm-induced chemotaxis of Fer(DR/DR) neutrophils correlated with sustained PI3K activity and reduced reliance on the p38 MAPK pathway compared with WT neutrophils. Together, these data identify Fer as a novel inhibitory kinase for neutrophil chemotaxis toward end target chemoattractants through modulation of PI3K activity.
Insights
Fer kinase normally limits neutrophil movement toward specific immune signals. Inactivating Fer kinase enhances neutrophil chemotaxis by altering PI3K and p38 MAPK pathways, revealing Fer as an inhibitory kinase in innate immunity.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Neutrophil recruitment is crucial for innate immune responses.
- Chemotaxis guides neutrophils to inflammatory sites.
- The role of Fer kinase in neutrophil chemotaxis requires clarification.
Purpose of the Study:
- To investigate the function of Fer kinase in neutrophil recruitment and chemotaxis.
- To elucidate the signaling pathways modulated by Fer kinase during chemotaxis.
- To determine the impact of Fer kinase on innate immune responses.
Main Methods:
- Utilized Fer(DR/DR) mutant and wild-type (WT) mice.
- Employed time-lapse intravital microscopy for in vivo leukocyte recruitment and chemotaxis.
- Generated bone marrow chimeras to assess cell-specific roles.
- Performed under-agarose gel chemotaxis assays with purified neutrophils.
Main Results:
- Fer(DR/DR) mice showed increased leukocyte emigration in response to WKYMVm, a formyl peptide receptor agonist.
- Fer kinase signaling in both leukocytes and endothelial cells limits chemotaxis.
- Fer(DR/DR) neutrophils exhibited enhanced chemotaxis to WKYMVm and C5a, correlating with sustained PI3K activity and reduced p38 MAPK pathway reliance.
- No chemotaxis defects were observed with intermediate chemoattractants.
Conclusions:
- Fer kinase acts as a novel inhibitory kinase for neutrophil chemotaxis.
- Fer kinase modulates PI3K and p38 MAPK signaling pathways.
- Targeting Fer kinase may offer therapeutic strategies for immune-related disorders.
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