The crucial role of neutrophil granulocytes in bone fracture healing
Ключевая роль нейтрофильных гранулоцитов в заживлении переломов костей
2016-07-25
SCID: 54.1/b2e8cvu4
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anti-Ly-6G antibodybone fracture healingfracture hematomaneutrophil granulocytesthoracic trauma
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Abstract (AI)
Delayed bone fracture healing and the formation of non-unions represent an important clinical problem, particularly in polytrauma patients who suffer from posttraumatic systemic inflammation. However, the underlying pathomechanisms remain unclear. Neutrophil granulocytes are crucial effector cells in the systemic immune response and represent the most abundant immune cell population in the early fracture haematoma. Here we investigated the role of neutrophils in a mouse model of uncomplicated fracture healing and compromised fracture healing induced by an additional thoracic trauma. Twenty four hours before injury, 50 % of the mice were systemically treated with an anti-Ly-6G-antibody to reduce neutrophil numbers. In the isolated fracture model, Ly-6G-Ab treatment significantly increased the concentration of both pro- and anti-inflammatory cytokines, including interleukin (IL)-6 and IL-10, and chemokines, for example, C-X-C motif ligand 1 (CXCL1) and monocyte chemotactic protein-1 (MCP-1), in the fracture haematoma. Monocyte/macrophage recruitment was also significantly enhanced. After 21 d, bone regeneration was considerably impaired as demonstrated by significantly diminished bone content and impaired mechanical properties of the fracture callus. These results indicate that undisturbed neutrophil recruitment and function in the inflammatory phase after fracture is crucial to initiate downstream responses leading to bone regeneration. In the combined trauma model, the reduction of neutrophil numbers ameliorated pulmonary inflammation but did not provoke any significant effect on bone regeneration, suggesting that neutrophils may not play a crucial pathomechanistic role in compromised fracture healing induced by an additional thoracic trauma.
Key Findings
1
In mice with combined fracture and thoracic trauma, neutrophil reduction ameliorated pulmonary inflammation but did not significantly affect bone regeneration.
2
Neutrophil depletion enhanced monocyte/macrophage recruitment to the fracture haematoma but substantially impaired bone regeneration after 21 days, reducing callus bone content and mechanical properties.
3
Neutrophils are essential for uncomplicated fracture healing, but they do not appear to be a major mechanistic driver of impaired healing caused by additional thoracic trauma.
4
Neutrophils are the most abundant immune cells in the early fracture haematoma and are crucial for initiating responses that support bone regeneration.
5
Systemic neutrophil depletion with anti-Ly-6G increased pro- and anti-inflammatory cytokines, including IL-6 and IL-10, and chemokines such as CXCL1 and MCP-1 after isolated fracture.
Research Object
Neutrophils in mouse models of uncomplicated and thoracic-trauma-compromised bone fracture healing
Research Subject
The role of neutrophil recruitment and function in inflammatory signaling, immune-cell recruitment, bone regeneration, and fracture-callus mechanical properties
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2016-07-25
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