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1.
Clin Sci (Lond) ; 134(14): 1957-1971, 2020 07 31.
Article in English | MEDLINE | ID: mdl-32643759

ABSTRACT

Acute respiratory distress syndrome (ARDS) is a severe condition with high morbidity and mortality and few interventions. The role of sympathetic stress in the pathogenesis of ARDS has attracted recent research attention. Blockade of α-2 or α2A-adrenoceptor (α2A-AR) has been shown to attenuate lung injury induced by lipopolysaccharide (LPS) in rats. However, the mechanism is unclear. We confirmed the role of α2A-AR in ARDS using knockout mice and alveolar macrophages following LPS stimulation to assess the underlying mechanisms. We found that α2A-AR deficiency decreased the permeability of the alveolar capillary barrier in ARDS mice and suppressed lung inflammation by reducing inflammatory cell infiltration and the production of TNF-α, interleukin (IL)-6, and CXCL2/MIP-2. LPS stimulation decreased NF-κB activation in lung tissues of α2A-AR deficient mice and increased norepinephrine concentrations. In vitro, we found that norepinephrine inhibited the production of TNF-α, IL-6, and CXCL2/MIP-2 and promoted the secretion of IL-10 from LPS-stimulated murine alveolar macrophages. Blockade of α2A-AR by a specific antagonist further inhibited the production of TNF-α, IL-6, and IL-10. Furthermore, norepinephrine down-regulated NF-κB activation in stimulated alveolar macrophages. Altogether, these results suggest that α2A-AR deficiency ameliorates lung injury by increasing norepinephrine concentrations in lung tissues and inhibiting the activation of alveolar macrophages.


Subject(s)
Lung/metabolism , Macrophages, Alveolar/physiology , Norepinephrine/metabolism , Receptors, Adrenergic, alpha-2/physiology , Respiratory Distress Syndrome/immunology , Animals , Capillary Permeability , Cell Line , Disease Models, Animal , Lipopolysaccharides , Lung/immunology , Macrophage Activation , Male , Mice, Knockout , Neutrophil Infiltration , Respiratory Distress Syndrome/metabolism
2.
J Cell Physiol ; 235(10): 6905-6914, 2020 10.
Article in English | MEDLINE | ID: mdl-32003020

ABSTRACT

Acute respiratory distress syndrome (ARDS), characterized by acute hypoxic respiratory dysfunction or failure, is a manifestation of multiple organ failure in the lung, and the most common risk factor is sepsis. We previously showed that blocking α2 -adrenoceptor (α2 -AR) could attenuate lung injury induced by endotoxin in rats. α2A -adrenoceptor (α2A -AR), a subtype of α2 -AR plays a key role in inflammatory diseases, but the mechanism remains unknown. Here, we explored the effect of BRL-44408 maleate (BRL), a specific α2A -AR antagonist, on cecal ligation puncture (CLP)-induced ARDS in rats and the underlying mechanism. Preadministration of BRL-44408 maleate significantly alleviated CLP-induced histological injury, macrophage infiltration, inflammatory response, and wet/dry ratio in lung tissue. However, there was no statistical difference in survival rate between the CLP and CLP+BRL groups. Extracellular regulated protein kinase (ERK1/2), p38MAPK, and p65 were activated in the CLP group, and BRL-44408 maleate inhibited the activation of these signal molecules, c-Jun N-terminal kinase (JNK) and protein kinase A (PKA) showed no changes in activation between these two groups. BRL-44408 maleate decreased lipopolysaccharide (LPS)-induced expression of cytokines in NR8383 rat alveolar macrophages and reduced phosphorylation of ERK1/2, p38MAPK, and p65. JNK and PKA were not influenced by LPS. Together, these findings suggest that antagonism of α2A -AR improves CLP-induced acute lung injury and involves the downregulation of ERK1/2, p38MAPK, and p65 pathway independent of the activation of JNK and PKA.


Subject(s)
Acute Lung Injury/drug therapy , Adrenergic alpha-Antagonists/pharmacology , Down-Regulation/drug effects , Imidazoles/pharmacology , Isoindoles/pharmacology , Maleates/pharmacology , Signal Transduction/drug effects , Acute Lung Injury/chemically induced , Acute Lung Injury/metabolism , Animals , JNK Mitogen-Activated Protein Kinases/metabolism , Lipopolysaccharides/pharmacology , Lung/drug effects , Lung/metabolism , MAP Kinase Signaling System/drug effects , Macrophages, Alveolar/drug effects , Macrophages, Alveolar/metabolism , Male , Phosphorylation/drug effects , Rats , Rats, Sprague-Dawley , Respiratory Distress Syndrome/chemically induced , Respiratory Distress Syndrome/drug therapy , Respiratory Distress Syndrome/metabolism
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