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Detecting Migration and Infiltration of Neutrophils in Mice
Published on: February 6, 2020
In vivo evidences that insulin regulates human polymorphonuclear neutrophil functions
S Walrand1, C Guillet, Y Boirie
1Unité du Métabolisme Protéino-Energétique, UMR Université d'Auvergne/INRA CHU de Clermont-Ferrand Cedex 1, France. swalrand@clermont.inra.fr
Abstract:
Polymorphonuclear neutrophils (PMN) are able to destroy invasive mircoorganisms by a wide variety of functions. Whereas insulin does not stimulate hexose transport in PMN, previous reports have clearly shown that this hormone regulates glucose metabolism inside this cell, raising the question of insulin action on PMN functions in humans. It is interesting that in vitro studies established a strong relationship between specific binding of insulin to its PMN membrane receptor and the activation of the main PMN functions. Therefore, investigation in healthy subjects under strict euglycemia and physiological insulinemia was performed to understand the in vivo-specific action of insulin on PMN functions without hyperglycemia interferences. We determined numerous PMN functions before and after hyperinsulinemia (0.5 mU/kg/min) and euglycemia (0.9 g/l) clamp for 4 h in eight adult healthy volunteers (24+/-6 years). The total number of PMN and the number of PMN expressing CD11b, CD15, CD62L, and CD89 were significantly increased over baseline (P<0.001), whereas the density of these receptors was down-regulated (P<0.01) by insulin. PMN chemotaxis (+117%, P<0.05), phagocytosis (+29%, P<0.001), and bactericidal (+17-25%, P<0.001) capacities were increased during the insulin clamp (P<0.05). Therefore, insulin treatment may modulate PMN functions not only by attainment of a better metabolic control, as suggested by in vivo studies in diabetic patients, but also through a direct effect of insulin.
Insights
Insulin directly enhances polymorphonuclear neutrophil (PMN) functions, including their ability to move, engulf pathogens, and kill bacteria. This study reveals insulin
Area of Science:
- Immunology
- Endocrinology
- Cell Biology
Background:
- Polymorphonuclear neutrophils (PMNs) are crucial for fighting infections.
- Insulin regulates glucose metabolism in PMNs, but its direct effects on PMN functions are unclear.
- In vitro studies suggest insulin binding to PMN receptors activates key functions.
Purpose of the Study:
- To investigate the in vivo effects of insulin on human PMN functions under controlled euglycemic conditions.
- To differentiate direct insulin actions from those secondary to hyperglycemia.
Main Methods:
- Healthy volunteers underwent a 4-hour hyperinsulinemic-euglycemic clamp.
- Various PMN functions and cell surface receptor expression were measured before and after the clamp.
- Key parameters included PMN count, receptor density, chemotaxis, phagocytosis, and bactericidal activity.
Main Results:
- Insulin significantly increased the total number of PMNs and those expressing CD11b, CD15, CD62L, and CD89.
- Receptor density for these markers was downregulated by insulin.
- PMN chemotaxis, phagocytosis, and bactericidal capacities were significantly enhanced.
Conclusions:
- Insulin directly modulates PMN functions in vivo.
- These effects extend beyond improved metabolic control, suggesting a direct signaling role for insulin on immune cells.
- Findings support a dual role for insulin in immune function: metabolic regulation and direct immune cell modulation.

