4.6 Article

RHO-KINASE SIGNALING REGULATES PULMONARY INFILTRATION OF NEUTROPHILS IN ABDOMINAL SEPSIS VIA ATTENUATION OF CXC CHEMOKINE FORMATION AND MAC-1 EXPRESSION ON NEUTROPHILS

期刊

SHOCK
卷 37, 期 3, 页码 282-288

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/SHK.0b013e3182426be4

关键词

Adhesion; lung; inflammation; leukocyte and platelet

资金

  1. Swedish Medical Research Council [2009-4872]
  2. Crafoordska stiftelsen
  3. Einar och Inga Nilssons stiftelse
  4. Greta och Johan Kocks stiftelser
  5. Froken Agnes Nilssons stiftelse
  6. Magnus Bergvalls stiftelse
  7. Mossfelts stiftelse
  8. Nanna Svartz stiftelse
  9. Ruth och Richard Julins stiftelse
  10. Dir. A. Pahlsson's Foundation
  11. Swedish Cancer Foundation
  12. Malmo University Hospital Cancer Foundation
  13. Lundgren's Foundation
  14. Gunnar Nilsson's Foundation
  15. Apotekaren Hedberg's Fond
  16. Malmo University Hospital
  17. Lund University
  18. Kurdistan regional government

向作者/读者索取更多资源

Excessive neutrophil infiltration is a major component in septic lung injury, although the signaling mechanisms behind pulmonary recruitment of neutrophils in polymicrobial sepsis remain elusive. Herein, we hypothesized that Rho-kinase activity may play a significant role in pulmonary neutrophil recruitment and tissue damage in abdominal sepsis. Male C57BL/6 mice were treated with the Rho-kinase inhibitor Y-27632 (0.5 or 5 mg/kg) before cecal ligation and puncture (CLP). Bronchoalveolar lavage fluid and lung tissue were harvested for analysis of neutrophil infiltration, as well as edema and CXC chemokine formation. Blood was collected for analysis of Mac-1 on neutrophils and CD40L on platelets as well as soluble CD40L and matrix metalloproteinase 9 (MMP-9) in plasma. Cecal ligation and puncture triggered significant pulmonary damage characterized by neutrophil infiltration, increased levels of CXC chemokines, and edema formation in the lung. Furthermore, CLP upregulated Mac-1 expression on neutrophils, decreased CD40L on platelets, and increased soluble CD40L and MMP-9 in the circulation. Interestingly, inhibition of Rho-kinase dose-dependently decreased CLP-induced neutrophil expression of Mac-1, formation of CXC chemokines and edema, as well as neutrophil infiltration and tissue damage in the lung. Moreover, Rho-kinase inhibition significantly reduced sepsis-provoked gene expression of CXC chemokines in alveolar macrophages. In contrast, Rho-kinase inhibition had no effect on platelet shedding of CD40L or plasma levels of MMP-9 in septic mice. In conclusion, these data demonstrate that the Rho-kinase signaling pathway plays a key role in regulating pulmonary infiltration of neutrophils and tissue injury via regulation of CXC chemokine production in the lung and Mac-1 expression on neutrophils in abdominal sepsis.

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