Sato_2024_Am.J.Physiol.Lung.Cell.Mol.Physiol__

Reference

Title : Functional roles of CD26\/DPP4 in lipopolysaccharide-induced lung injury - Sato_2024_Am.J.Physiol.Lung.Cell.Mol.Physiol__
Author(s) : Sato S , Kawasaki T , Hatano R , Koyanagi Y , Takahashi Y , Ohnuma K , Morimoto C , Dudek SM , Tatsumi K , Suzuki T
Ref : American Journal of Physiology Lung Cell Mol Physiol , : , 2024
Abstract :

Acute respiratory distress syndrome (ARDS) is characterized by dysregulated inflammation and increased permeability of lung microvascular cells. CD26/Dipeptidyl peptidase-4 (DPP4) is a type II membrane protein that is expressed in several cell types and mediates multiple pleiotropic effects. We previously reported that DPP4 inhibition by sitagliptin attenuates lipopolysaccharide (LPS)-induced lung injury in mice. The current study characterized the functional role of CD26/DPP4 expression in LPS-induced lung injury in mice, isolated alveolar macrophages, and cultured lung endothelial cells. In LPS-induced lung injury, inflammatory responses (bronchoalveolar lavage fluid (BALF) neutrophil numbers and several pro-inflammatory cytokine levels) were attenuated in Dpp4 knockout (Dpp4 KO) mice. However, multiple assays of alveolar capillary permeability were similar between the Dpp4 KO and wild-type mice. TNF-alpha and IL-6 production was suppressed in alveolar macrophages isolated from Dpp4 KO mice. In contrast, in cultured mouse lung microvascular endothelial cells (MLMVECs), reduction in CD26/DPP4 expression by siRNA resulted in greater ICAM-1 and IL-6 expression after LPS stimulation. Moreover, the LPS-induced vascular monolayer permeability in vitro was higher in MLMVECs treated with Dpp4 siRNA, suggesting that CD26/DPP4 plays a protective role in endothelial barrier function. In summary, this study demonstrated that genetic deficiency of Dpp4 attenuates inflammatory responses but not permeability in LPS-induced lung injury in mice, potentially through differential functional roles of CD26/DPP4 expression in resident cellular components of the lung. CD26/DPP4 may be a potential therapeutic target for ARDS and warrants further exploration to precisely identify the multiple functional effects of CD26/DPP4 in ARDS pathophysiology.

PubMedSearch : Sato_2024_Am.J.Physiol.Lung.Cell.Mol.Physiol__
PubMedID: 38469626

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Citations formats

Sato S, Kawasaki T, Hatano R, Koyanagi Y, Takahashi Y, Ohnuma K, Morimoto C, Dudek SM, Tatsumi K, Suzuki T (2024)
Functional roles of CD26\/DPP4 in lipopolysaccharide-induced lung injury
American Journal of Physiology Lung Cell Mol Physiol :

Sato S, Kawasaki T, Hatano R, Koyanagi Y, Takahashi Y, Ohnuma K, Morimoto C, Dudek SM, Tatsumi K, Suzuki T (2024)
American Journal of Physiology Lung Cell Mol Physiol :