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Updated: Aug 8, 2026

Isolation and Characterization of Neutrophil-derived Microparticles for Functional Studies
Published on: March 2, 2018
Changes in activation states of murine polymorphonuclear leukocytes (PMN) during inflammation: a comparison of bone
Takuya Itou1, L Vincent Collins, Fredrik B Thorén
1Department of Preventive Veterinary Medicine and Animal Health, Nihon University School of Veterinary Medicine, Nihon University, 1866 Kameino, Fujisawa, Kanagawa 252-8510, Japan. takuya@brs.nihon-u.ac.jp
Abstract:
To study different activation states in polymorphonuclear leukocytes (PMN) in mice, we compared the function of murine PMN obtained from the bone marrow (BMPMN) with those of PMN obtained by intraperitoneal induction with thioglycolate (TGPMN) or uric acid (UAPMN). When stimulated with chemotactic peptides, e.g., formyl-methionyl-leucyl-phenylalanine (fMLF), WKYMVM, or WKYMVm, the TGPMN and UAPMN showed greatly enhanced generation of reactive oxygen species (ROS) compared with BMPMN, which suggests that exudation to the peritoneum per se induces a primed state in the cells. The WKYMVm peptide was the most potent stimulant of ROS generation, and it desensitized for subsequent stimulation with fMLF or WKYMVM. This desensitization was broken by the addition of cytochalasin B. The TGPMN and UAPMN appeared to be fully primed, since no increase in response was induced by pretreatment with tumor necrosis factor alpha (TNF-alpha). In contrast, the BMPMN response was increased 2.5- to 3-fold. The differences in oxidative responses were supported by degranulation studies. Preincubation with TNF-alpha promoted CR3 expression on BMPMN, and this level of expression was also enhanced by WKYMVm. In contrast, CR3 expression on untreated TGPMN and UAPMN was already similar to that on TNF-alpha-primed BMPMN and could be only slightly enhanced by TNF-alpha treatment. Taken together, these results indicate that BMPMN are in a resting state and have the capacity to become primed, while peritoneal exudate PMN are already fully primed upon isolation. These results have major implications for murine neutrophil research and show the importance of defining which PMN subsets to use when investigating murine models.
Insights
Murine neutrophils from bone marrow are resting cells, while those from the peritoneum are already activated. This difference in polymorphonuclear leukocyte (PMN) activation states is crucial for interpreting murine neutrophil research findings.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- Polymorphonuclear leukocytes (PMN) exist in different activation states.
- Understanding PMN activation is critical for interpreting experimental results in murine models.
- Bone marrow-derived PMN (BMPMN) and peritoneal exudate PMN (TGPMN, UAPMN) represent distinct populations.
Purpose of the Study:
- To compare the functional activation states of murine PMN from different sources.
- To investigate the priming status of bone marrow-derived PMN versus peritoneal exudate PMN.
Main Methods:
- Comparison of reactive oxygen species (ROS) generation in response to chemotactic peptides (fMLF, WKYMVM, WKYMVm).
- Assessment of PMN priming using tumor necrosis factor alpha (TNF-alpha) pretreatment.
- Analysis of CR3 expression and degranulation markers.
Main Results:
- Peritoneal exudate PMN (TGPMN, UAPMN) exhibited significantly higher ROS generation than bone marrow PMN (BMPMN).
- Peritoneal PMN were already fully primed, showing no further increase in response to TNF-alpha, unlike BMPMN.
- CR3 expression was higher on resting peritoneal PMN compared to resting bone marrow PMN, which increased with TNF-alpha priming.
Conclusions:
- Murine bone marrow PMN are in a resting state with the capacity to be primed.
- Peritoneal exudate PMN are fully primed upon isolation.
- The distinct activation states of PMN subsets must be considered in murine neutrophil research.
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