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Adenosine A2B receptor activation stimulates alveolar fluid clearance through alveolar epithelial sodium channel via cAMP pathway in endotoxin-induced lung injury.
Wang, Mengnan; Guo, Xiaoxia; Zhao, Huiying; Lv, Jie; Wang, Huixia; An, Youzhong.
Afiliação
  • Wang M; Department of Critical Care Medicine, Peking University People's Hospital, Beijing, China.
  • Guo X; Department of Critical Care Medicine, Peking University People's Hospital, Beijing, China.
  • Zhao H; Department of Critical Care Medicine, Peking University People's Hospital, Beijing, China.
  • Lv J; Department of Critical Care Medicine, Peking University People's Hospital, Beijing, China.
  • Wang H; Department of Critical Care Medicine, Peking University People's Hospital, Beijing, China.
  • An Y; Department of Critical Care Medicine, Peking University People's Hospital, Beijing, China.
Am J Physiol Lung Cell Mol Physiol ; 318(4): L787-L800, 2020 04 01.
Article em En | MEDLINE | ID: mdl-32129084
ABSTRACT
Clinical studies have established that the capacity of removing excess fluid from alveoli is impaired in most patients with acute respiratory distress syndrome. Impaired alveolar fluid clearance (AFC) correlates with poor outcomes. Adenosine A2B receptor (A2BAR) has the lowest affinity with adenosine among four adenosine receptors. It is documented that A2BAR can activate adenylyl cyclase (AC) resulting in elevated cAMP. Based on the understanding that cAMP is a key regulator of epithelial sodium channel (ENaC), which is the limited step in sodium transport, we hypothesized that A2BAR signaling may affect AFC in acute lung injury (ALI) through regulating ENaC via cAMP, thus attenuating pulmonary edema. To address this, we utilized pharmacological approaches to determine the role of A2BAR in AFC in rats with endotoxin-induced lung injury and further focused on the mechanisms in vitro. We observed elevated pulmonary A2BAR level in rats with ALI and the similar upregulation in alveolar epithelial cells exposed to LPS. A2BAR stimulation significantly attenuated pulmonary edema during ALI, an effect that was associated with enhanced AFC and increased ENaC expression. The regulatory effects of A2BAR on ENaC-α expression were further verified in cultured alveolar epithelial type II (ATII) cells. More importantly, activation of A2BAR dramatically increased amiloride-sensitive Na+ currents in ATII cells. Moreover, we observed that A2BAR activation stimulated cAMP accumulation, whereas the cAMP inhibitor abolished the regulatory effect of A2BAR on ENaC-α expression, suggesting that A2BAR activation regulates ENaC-α expression via cAMP-dependent mechanism. Together, these findings suggest that signaling through alveolar epithelial A2BAR promotes alveolar fluid balance during endotoxin-induced ALI by regulating ENaC via cAMP pathway, raising the hopes for treatment of pulmonary edema due to ALI.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Alvéolos Pulmonares / Transdução de Sinais / AMP Cíclico / Receptor A2B de Adenosina / Lesão Pulmonar Aguda / Células Epiteliais Alveolares Limite: Animals Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Alvéolos Pulmonares / Transdução de Sinais / AMP Cíclico / Receptor A2B de Adenosina / Lesão Pulmonar Aguda / Células Epiteliais Alveolares Limite: Animals Idioma: En Ano de publicação: 2020 Tipo de documento: Article