Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury. 2019

Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea.

The lung is highly vulnerable during sepsis, yet its functional deterioration accompanied by disturbances in the pulmonary microcirculation is poorly understood. This study aimed to investigate how the pulmonary microcirculation is distorted in sepsis-induced acute lung injury (ALI) and reveal the underlying cellular pathophysiologic mechanism.Using a custom-made intravital lung microscopic imaging system in a murine model of sepsis-induced ALI, we achieved direct real-time visualisation of the pulmonary microcirculation and circulating cells in vivo We derived the functional capillary ratio (FCR) as a quantitative parameter for assessing the fraction of functional microvasculature in the pulmonary microcirculation and dead space.We identified that the FCR rapidly decreases in the early stage of sepsis-induced ALI. The intravital imaging revealed that this decrease resulted from the generation of dead space, which was induced by prolonged neutrophil entrapment within the capillaries. We further showed that the neutrophils had an extended sequestration time and an arrest-like dynamic behaviour, both of which triggered neutrophil aggregates inside the capillaries and arterioles. Finally, we found that Mac-1 (CD11b/CD18) was upregulated in the sequestered neutrophils and that a Mac-1 inhibitor restored the FCR and improved hypoxaemia.Using the intravital lung imaging system, we observed that Mac-1-upregulated neutrophil aggregates led to the generation of dead space in the pulmonary microcirculation that was recovered by a Mac-1 inhibitor in sepsis-induced ALI.

UI MeSH Term Description Entries
D008168 Lung Either of the pair of organs occupying the cavity of the thorax that effect the aeration of the blood. Lungs
D008297 Male Males
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D008833 Microcirculation The circulation of the BLOOD through the MICROVASCULAR NETWORK. Microvascular Blood Flow,Microvascular Circulation,Blood Flow, Microvascular,Circulation, Microvascular,Flow, Microvascular Blood,Microvascular Blood Flows,Microvascular Circulations
D009504 Neutrophils Granular leukocytes having a nucleus with three to five lobes connected by slender threads of chromatin, and cytoplasm containing fine inconspicuous granules and stainable by neutral dyes. LE Cells,Leukocytes, Polymorphonuclear,Polymorphonuclear Leukocytes,Polymorphonuclear Neutrophils,Neutrophil Band Cells,Band Cell, Neutrophil,Cell, LE,LE Cell,Leukocyte, Polymorphonuclear,Neutrophil,Neutrophil Band Cell,Neutrophil, Polymorphonuclear,Polymorphonuclear Leukocyte,Polymorphonuclear Neutrophil
D002196 Capillaries The minute vessels that connect arterioles and venules. Capillary Beds,Sinusoidal Beds,Sinusoids,Bed, Sinusoidal,Beds, Sinusoidal,Capillary,Capillary Bed,Sinusoid,Sinusoidal Bed
D004195 Disease Models, Animal Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases. Animal Disease Model,Animal Disease Models,Disease Model, Animal
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000911 Antibodies, Monoclonal Antibodies produced by a single clone of cells. Monoclonal Antibodies,Monoclonal Antibody,Antibody, Monoclonal
D016177 Macrophage-1 Antigen An adhesion-promoting leukocyte surface membrane heterodimer. The alpha subunit consists of the CD11b ANTIGEN and the beta subunit the CD18 ANTIGEN. The antigen, which is an integrin, functions both as a receptor for complement 3 and in cell-cell and cell-substrate adhesive interactions. CR3 Receptor,Complement 3 Receptor,Integrin alphaMbeta2,Mac-1 Antigen,Receptor, Complement 3,Adhesive Receptor Mac-1,Integrin alpha(M)beta(2),Integrin alpha-M beta-2,Mac-1 Adhesive Receptor,Mac-1 Receptor,Mo1 Antigen Receptor,Mo1 Glycoprotein Receptor,Receptor, CR3,Receptor, Mo1 Antigen,Receptor, Mo1 Glycoprotein,Adhesive Receptor, Mac-1,Antigen Receptor, Mo1,Antigen, Macrophage-1,Glycoprotein Receptor, Mo1,Integrin alpha M beta 2,Mac 1 Adhesive Receptor,Mac 1 Antigen,Mac 1 Receptor,Macrophage 1 Antigen,Receptor, Mac-1 Adhesive,alpha-M beta-2, Integrin,alphaMbeta2, Integrin

Related Publications

Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
April 2024, Clinical immunology (Orlando, Fla.),
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
October 2001, Nihon Kokyuki Gakkai zasshi = the journal of the Japanese Respiratory Society,
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
March 1997, The Journal of trauma,
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
January 2012, ISRN inflammation,
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
February 2019, Microcirculation (New York, N.Y. : 1994),
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
October 2023, International immunopharmacology,
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
January 2021, Frontiers in microbiology,
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
January 2009, Critical care (London, England),
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
April 2019, Annals of translational medicine,
Inwon Park, and Mingyo Kim, and Kibaek Choe, and Eunjoo Song, and Howon Seo, and Yoonha Hwang, and Jinhyo Ahn, and Seung-Hyo Lee, and Jae Hyuk Lee, and You Hwan Jo, and Kyuseok Kim, and Gou Young Koh, and Pilhan Kim
February 2021, Journal of translational medicine,
Copied contents to your clipboard!