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Exploring the pathophysiological mechanism of interstitial edema focusing on the role of macrophages and their interaction with the glycocalyx.

Authors :
Nishida, Rie
Suzuki, Dai
Akimoto, Yoshihiro
Matsubara, Sachie
Hayakawa, Junri
Ushiyama, Akira
Sasa, Kiyohito
Miyamoto, Yoichi
Iijima, Takehiko
Kamijo, Ryutaro
Source :
Journal of Oral Biosciences; Mar2023, Vol. 65 Issue 1, p111-118, 8p
Publication Year :
2023

Abstract

Glycocalyx lines the vascular intraluminal space that regulates fluid movement between the intra- and extra-vascular compartments. The depletion of glycocalyx (GCX) is associated with leukocyte accumulation, possibly causing the endothelial cells to become hyperpermeable in various organs, including oral tissues. Whether neutrophils or macrophages are responsible for developing interstitial edema remains controversial. We explored the pathophysiological mechanism of interstitial edema by examining the role of reactive neutrophils and macrophages and their interactions with GCX. An anti-MHC class I antibody was administered intravenously to male BALB/c mice to induce pulmonary edema. Pulmonary edema was evaluated by measuring the lung wet-to-dry weight ratio. Changes in the GCX were evaluated by electron microscopy and measurements of the serum level of soluble syndecan-1. Heparin sulfate was administered to examine its protective effect on the GCX. The macrophages were depleted using clodronate to examine their role in developing edema. The GCX degradation induced by the anti-MHC class I antibody was accompanied by increased serum syndecan-1 and heparan sulfate levels. Macrophage depletion inhibited the development of pulmonary edema, and the administration of supplemental heparin suppressed the edema. We demonstrated that the degradation of the GCX induced by the anti-MHC class I antibody was suppressed by macrophage depletion. These results suggest that macrophages may play a key role in interstitial edema. Heparin inhibited both the degradation of the GCX and interstitial edema. This study's results may be extrapolated to develop an interventional strategy for inhibiting interstitial edema in various organs. • The administration of anti-MHC class I antibody induced interstitial edema. • The GCX on the pulmonary vascular endothelium was degraded administered anti-MHC class I antibody. • Macrophage depletion prevented the development of interstitial edema, preserving the GCX. • Interstitial edema can be ameliorated by the administration of supplemental heparin. • The contribution of macrophages to glycocalyx degradation remains to be elucidated. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13490079
Volume :
65
Issue :
1
Database :
Supplemental Index
Journal :
Journal of Oral Biosciences
Publication Type :
Academic Journal
Accession number :
162176059
Full Text :
https://doi.org/10.1016/j.job.2023.01.001