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Role of succinate in airway epithelial cell regulation following traumatic lung injury
Madathilparambil V. Suresh, … , Subramaniam Pennathur, Krishnan Raghavendran
Madathilparambil V. Suresh, … , Subramaniam Pennathur, Krishnan Raghavendran
Published September 22, 2023
Citation Information: JCI Insight. 2023;8(18):e166860. https://doi.org/10.1172/jci.insight.166860.
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Research Article Inflammation Pulmonology

Role of succinate in airway epithelial cell regulation following traumatic lung injury

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Abstract

Lung contusion and gastric aspiration (LC and GA) are major risk factors for developing acute respiratory distress following trauma. Hypoxia from lung injury is mainly regulated by hypoxia-inducible factor 1α (HIF-1α). Published data from our group indicate that HIF-1α regulation in airway epithelial cells (AEC) drives the acute inflammatory response following LC and GA. Metabolomic profiling and metabolic flux of Type II AEC following LC revealed marked increases in glycolytic and TCA intermediates in vivo and in vitro that were HIF-1α dependent. GLUT-1/4 expression was also increased in HIF-1α+/+ mice, suggesting that increased glucose entry may contribute to increased intermediates. Importantly, lactate incubation in vitro on Type II cells did not significantly increase the inflammatory byproduct IL-1β. Contrastingly, succinate had a direct proinflammatory effect on human small AEC by IL-1β generation in vitro. This effect was reversed by dimethylmalonate, suggesting an important role for succinate dehydrogenase in mediating HIF-1α effects. We confirmed the presence of the only known receptor for succinate binding, SUCNR1, on Type II AEC. These results support the hypothesis that succinate drives HIF-1α–mediated airway inflammation following LC. This is the first report to our knowledge of direct proinflammatory activation of succinate in nonimmune cells such as Type II AEC in direct lung injury models.

Authors

Madathilparambil V. Suresh, Sinan Aktay, George Yalamanchili, Sumeet Solanki, Dily Thazhath Sathyarajan, Manikanta Swamy Arnipalli, Subramaniam Pennathur, Krishnan Raghavendran

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Figure 12

Type II AEC regulation of HIF-1α promotes lung injury and inflammation through succinate.

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Type II AEC regulation of HIF-1α promotes lung injury and inflammation t...
This process is dependent on the activation of HIF-1α in Type II AEC. The process is intricately linked with the increased entry of glucose into the cell, mediated by GLUT-1. HIF-1α–regulated reduction in SDHA promotes extracellular succinate production. Succinate directly induced inflammation and injury to the surrounding AEC through the presence of SUCNR1 in AEC, thereby worsening permeability injury and inflammation.

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