An engineered poly(A) tail attenuates gut ischemia/reperfusion-induced acute lung injury.
basic_science · Level V
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- Record sourced from PubMed, PMID 38342730.
- Also identified by DOI 10.1016/j.surg.2024.01.002 and PMC identifier 11001521.
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Abstract
Gut ischemia/reperfusion causes the release of damage-associated molecular patterns, leading to acute lung injury and high mortality. Cold-inducible ribonucleic acid-binding protein is a ribonucleic acid chaperon that binds the polyadenylation tail of messenger ribonucleic acid intracellularly. Upon cell stress, cold-inducible ribonucleic acid-binding protein is released, and extracellular cold-inducible ribonucleic acid-binding protein acts as a damage-associated molecular pattern, worsening inflammation. To inhibit extracellular cold-inducible ribonucleic acid-binding protein, we have recently developed an engineered polyadenylation tail named A<sub>12</sub>. Here, we sought to investigate the therapeutic potential of A<sub>12</sub> in gut ischemia/reperfusion-induced acute lung injury. Male C57BL6/J mice underwent superior mesenteric artery occlusion and were treated with intraperitoneal A<sub>12</sub> (0.5 nmol/g body weight) or vehicle at the time of reperfusion. Blood and lungs were collected 4 hours after gut ischemia/reperfusion. Systemic levels of extracellular cold-inducible ribonucleic acid-binding protein, interleukin-6, aspartate transaminase, alanine transaminase, and lactate dehydrogenase were determined. The pulmonary gene expression of cytokines (interleukin-6, interleukin-1β) and chemokines (macrophage-inflammatory protein-2, keratinocyte-derived chemokine) was also assessed. In addition, lung myeloperoxidase, injury score, and cell death were determined. Mice were monitored for 48 hours after gut ischemia/reperfusion for survival assessment. Gut ischemia/reperfusion significantly increased the serum extracellular cold-inducible ribonucleic acid-binding protein levels. A<sub>12</sub> treatment markedly reduced the elevated serum interleukin-6, alanine transaminase, aspartate transaminase, and lactate dehydrogenase by 53%, 23%, 23%, and 24%, respectively, in gut ischemia/reperfusion mice. A<sub>12</sub> also significantly decreased cytokine and chemokine messenger ribonucleic acids and myeloperoxidase activity in the lungs of gut ischemia/reperfusion mice. Histological analysis revealed that A<sub>12</sub> attenuated tissue injury and cell death in the lungs of gut ischemia/reperfusion mice. Finally, administration of A<sub>12</sub> markedly improved the survival of gut ischemia/reperfusion mice. A<sub>12</sub>, a novel extracellular cold-inducible ribonucleic acid-binding protein inhibitor, diminishes inflammation and mitigates acute lung injury when employed as a treatment during gut ischemia/reperfusion. Hence, the targeted approach toward extracellular cold-inducible ribonucleic acid-binding protein emerges as a promising therapeutic strategy for alleviating gut ischemia/reperfusion-induced acute lung injury.
Medical subject headings
- Reperfusion Injury
- Acute Lung Injury