Title : β-elemene alleviates airway stenosis via the ILK/Akt pathway modulated by MIR143HG sponging miR-1275.

Pub. Date : 2021 Jun 12

PMID : 34118875






5 Functional Relationships(s)
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1 beta-elemene alleviates airway stenosis via the ILK/Akt pathway modulated by MIR143HG sponging miR-1275. beta-elemene microRNA 1275 Homo sapiens
2 RESULTS: The hyperactive ILK/Akt pathway and dysregulated LncRNA-MIR143HG, which acted as a miR-1275 ceRNA to modulate ILK expression, were suppressed in beta-elemene-treated airway granulation fibroblasts; beta-elemene suppressed the ILK/Akt pathway via the MIR143HG/miR-1275/ILK axis. beta-elemene microRNA 1275 Homo sapiens
3 RESULTS: The hyperactive ILK/Akt pathway and dysregulated LncRNA-MIR143HG, which acted as a miR-1275 ceRNA to modulate ILK expression, were suppressed in beta-elemene-treated airway granulation fibroblasts; beta-elemene suppressed the ILK/Akt pathway via the MIR143HG/miR-1275/ILK axis. beta-elemene microRNA 1275 Homo sapiens
4 In vivo application of beta-elemene attenuated airway granulation hyperplasia and alleviated scar stricture, and histological detections suggested that beta-elemene"s effects on the MIR143HG/miR-1275/ILK axis and ILK/Akt pathway were in line with in vitro findings. beta-elemene microRNA 1275 Homo sapiens
5 The MIR143HG/miR-1275/ILK axis mediates beta-elemene-induced cell cycle arrest and apoptosis of airway granulation fibroblasts by modulating the ILK/Akt pathway, thereby inhibiting airway granulation proliferation and ultimately alleviating airway stenosis. beta-elemene microRNA 1275 Homo sapiens