Optimized flow cytometry assays to monitor neutrophil activation in human and mouse whole blood samples

Carola Ledderose1, Naoyuki Hashiguchi2, Eleftheria-Angeliki Valsami1

  • 1Department of Surgery, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.

Insights

Simple blood assays were developed to measure polymorphonuclear neutrophil (PMN) activation in humans and mice. These assays can monitor inflammatory conditions and aid preclinical studies of sepsis and infection.

Area of Science:

  • Immunology
  • Cellular Biology
  • Biomedical Assays

Background:

  • Polymorphonuclear neutrophils (PMNs) are crucial for host defense but can cause tissue damage when overactivated during inflammation.
  • Accurate assessment of PMN activation is vital for understanding inflammatory diseases and evaluating therapeutic interventions.
  • Existing methods for assessing PMN function can be complex and may not fully capture in vivo conditions.

Purpose of the Study:

  • To develop simple, reliable assays for determining PMN activation state in human and murine whole blood.
  • To optimize these assays to minimize interference from sample handling and plasma factors.
  • To validate the assays' ability to detect PMN responses in relevant physiological and pathological contexts.

Main Methods:

  • Development and optimization of flow cytometry-based assays using whole blood.
  • Stimulation of PMNs with formyl peptide receptor (FPR) agonists (fMLP for human, WKYMVm for mouse).
  • Analysis of key activation markers: CD11b, CD62L, CD66b, CD63 expression, and reactive oxygen species (ROS) production.

Main Results:

  • Human PMNs showed sensitive responses to fMLP, with CD11b, CD62L, and CD66b expression being the most responsive markers.
  • Mouse PMNs required higher agonist concentrations and exhibited distinct activation profiles, with ROS production being the most sensitive.
  • Optimized assays successfully detected PMN responses to endotoxin priming in vitro and bacterial infection in a murine sepsis model.

Conclusions:

  • The developed assays provide a simple and effective method for assessing PMN activation in both human and mouse blood.
  • These assays can be valuable tools for monitoring inflammatory conditions in patients and for research involving animal models.
  • The findings facilitate the design and interpretation of preclinical studies investigating infectious and inflammatory diseases.

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