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A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Nbeal2 Deficiency Increases Organ Damage but Does Not Affect Host Defense During Gram-Negative Pneumonia-Derived
Theodora A M Claushuis1, Sacha F de Stoppelaar1, Alex F de Vos1
1From the Center for Experimental and Molecular Medicine (T.A.M.C., S.F.d.S., A.F.d.V., C.v.V., T.v.d.P.).
Abstract:
Objective- Nbeal2-/- mice, a model of human gray platelet syndrome, have reduced neutrophil granularity and impaired host defense against systemic Staphylococcus aureus infection. We here aimed to study the role of Nbeal2 deficiency in both leukocytes and platelets during gram-negative pneumonia and sepsis. Approach and Results- We studied the role of Nbeal2 in platelets and leukocytes during murine pneumonia and sepsis by Klebsiella pneumoniae. Apart from platelet α-granule deficiency and reduced neutrophil granularity, also monocyte granularity was reduced in Nbeal2-/- mice, whereas plasma levels of MPO (myeloperoxidase), elastase, NGAL (neutrophil gelatinase-associated lipocalin), and MMP-9 (matrix metalloproteinase 9), and leukocyte CD11b expression were increased. Nbeal2-/- leukocytes showed unaltered in vitro antibacterial response and phagocytosis capacity against Klebsiella, and unchanged reactive nitrogen species and cytokine production. Also during Klebsiella pneumonia and sepsis, Nbeal2-/- mice had similar bacterial growth in lung and distant body sites, with enhanced leukocyte migration to the bronchoalveolar space. Despite similar infection-induced inflammation, organ damage was increased in Nbeal2-/- mice, which was also seen during endotoxemia. Platelet-specific Nbeal2 deficiency did not influence leukocyte functions, indicating that Nbeal2 directly modifies leukocytes. Transfusion of Nbeal2-/- but not of Nbeal2+/+ platelets into thrombocytopenic mice was associated with bleeding in the lung but similar host defense, pointing at a role for platelet α-granules in maintaining vascular integrity but not host defense during Klebsiella pneumosepsis. Conclusions- These data show that Nbeal2 deficiency-resulting in gray platelet syndrome-affects platelets, neutrophils, and monocytes, with intact host defense but increased organ damage during gram-negative pneumosepsis.
Insights
Nbeal2 deficiency, causing gray platelet syndrome, impairs leukocyte granularity but maintains host defense against gram-negative infections. However, it increases organ damage during Klebsiella pneumoniae sepsis.
Area of Science:
- Hematology
- Immunology
- Pathology
Background:
- Nbeal2 knockout (Nbeal2-/-) mice model human gray platelet syndrome.
- These mice exhibit reduced neutrophil granularity and impaired defense against Staphylococcus aureus.
Purpose of the Study:
- To investigate the role of Nbeal2 deficiency in leukocytes and platelets during gram-negative pneumonia and sepsis.
Main Methods:
- Studied Nbeal2's role in platelets and leukocytes during Klebsiella pneumoniae murine pneumonia and sepsis.
- Assessed leukocyte functions, bacterial growth, inflammation, organ damage, and platelet transfusion effects.
Main Results:
- Nbeal2-/- mice showed reduced granularity in platelets, neutrophils, and monocytes.
- Leukocyte functions and host defense against Klebsiella were intact, but organ damage and bleeding were increased.
- Platelet-specific Nbeal2 deficiency highlighted its role in vascular integrity, not host defense.
Conclusions:
- Nbeal2 deficiency affects multiple leukocyte types, compromising vascular integrity but not host defense in gram-negative pneumosepsis.
- Increased organ damage in Nbeal2-/- mice suggests a critical role beyond direct bacterial clearance.
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