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Updated: Nov 3, 2025

Detecting Migration and Infiltration of Neutrophils in Mice
Published on: February 6, 2020
Transmigration of Neutrophils From Patients With Familial Mediterranean Fever Causes Increased Cell Activation
Anush Martirosyan1, David Poghosyan1, Susanna Ghonyan1
1Laboratory of Molecular and Cellular Immunology, Institute of Molecular Biology National Academy of Sciences of the Republic of Armenia (NAS RA), Yerevan, Armenia.
Abstract:
Familial Mediterranean fever (FMF) is caused by pyrin-encoding MEFV gene mutations and characterized by the self-limiting periods of intense inflammation, which are mainly mediated by a massive influx of polymorphonuclear neutrophils (PMNs) into the inflamed sites. Perturbation of actin polymerization by different pathogens was shown to activate the pyrin inflammasome. Our aim was to test whether cytoskeletal dynamics in the absence of pathogens may cause abnormal activation of PMNs from FMF patients. We also aimed to characterize immunophenotypes of circulating neutrophils and their functional activity. Circulating PMNs displayed heterogeneity in terms of cell size, granularity and immunophenotypes. Particularly, PMNs from the patients in acute flares (FMF-A) exhibited a characteristic of aged/activated cells (small cell size and granularity, up-regulated CXCR4), while PMNs form the patients in remission period (FMF-R) displayed mixed fresh/aged cell characteristics (normal cell size and granularity, up-regulated CD11b, CD49d, CXCR4, and CD62L). The findings may suggest that sterile tissue-infiltrated PMNs undergo reverse migration back to bone marrow and may explain why these PMNs do not cause immune-mediated tissue damage. A multidirectional expression of FcγRs on neutrophils during acute flares was also noteworthy: up-regulation of FcγRI and down-regulation of FcγRII/FcγRIII. We also observed spontaneous and fMPL-induced activation of PMNs from the patients after transmigration through inserts as seen by the increased expression of CD11b and intracellular expression of IL-1β. Our study suggests heightened sensitivity of mutated pyrin inflammasome towards cytoskeletal modifications in the absence of pathogens.
Insights
Familial Mediterranean Fever (FMF) neutrophils show abnormal activation due to cytoskeletal changes, even without pathogens. This suggests the mutated pyrin inflammasome is sensitive to sterile inflammation triggers.
Area of Science:
- Immunology
- Genetics
- Cell Biology
Background:
- Familial Mediterranean Fever (FMF) involves intense inflammation mediated by polymorphonuclear neutrophils (PMNs).
- Pathogen-induced actin polymerization typically activates the pyrin inflammasome, a key player in FMF pathogenesis.
Purpose of the Study:
- To investigate if cytoskeletal dynamics alone can abnormally activate PMNs in FMF patients.
- To characterize the immunophenotypes and functional activity of circulating neutrophils in FMF patients during flares and remission.
Main Methods:
- Analysis of circulating PMN heterogeneity (cell size, granularity, immunophenotypes).
- Assessment of PMN activation markers (e.g., CXCR4, CD11b, FcγRs, IL-1β) via flow cytometry.
- Evaluation of PMN function after transmigration through cell culture inserts.
Main Results:
- PMNs from FMF patients in acute flares exhibited aged/activated characteristics (small size, high CXCR4).
- PMNs from FMF patients in remission showed mixed fresh/aged cell features (upregulated CD11b, CD49d, CXCR4, CD62L).
- Neutrophils displayed altered FcγR expression and increased spontaneous/induced activation (CD11b, IL-1β) after transmigration.
Conclusions:
- Cytoskeletal modifications, in the absence of pathogens, can trigger abnormal PMN activation in FMF.
- PMN heterogeneity and altered activation states may contribute to FMF pathogenesis.
- Findings suggest sterile inflammation triggers heightened sensitivity of the mutated pyrin inflammasome.
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