Trans-Sodium Crocetinate Ameliorates High-Altitude Acute Lung Injury via Modulating EGFR/PI3K/AKT/NF-κB Signaling Axis
Keke Liang, Yanlin Ta, Liang Xu, Shuhe Ma, Renjie Wang, Chenrong Xiao, Yue Gao, Maoxing Li

TL;DR
Trans-sodium crocetinate reduces high-altitude lung injury by targeting a key signaling pathway that reduces inflammation and oxidative stress.
Contribution
This study identifies the EGFR/PI3K/AKT/NF-κB pathway as a novel target for TSC in treating high-altitude acute lung injury.
Findings
TSC reversed hypoxia-induced lung damage and inflammation in rats.
TSC inhibited the EGFR/PI3K/AKT/NF-κB pathway and reduced oxidative stress in human lung cells.
Molecular docking confirmed TSC's stable interaction with key proteins in the signaling pathway.
Abstract
Objectives: Saffron, a traditional Chinese medicine, is renowned for its pharmacological effects in promoting blood circulation, resolving blood stasis, regulating menstruation, detoxification, and alleviating mental disturbances. Trans-crocetin, its principal bioactive component, exhibits significant anti-hypoxic activity. The clinical development and therapeutic efficacy of trans-crocetin are limited by its instability, poor solubility, and low bioavailability. Conversion of trans-crocetin into trans-sodium crocetinate (TSC) enhances its solubility, stability, and bioavailability, thereby amplifying its anti-hypoxic potential. Methods: This study integrates network pharmacology with in vivo and in vitro validation to elucidate the molecular targets and mechanisms underlying TSC’s therapeutic effects against high-altitude acute lung injury (HALI), aiming to identify novel treatment…
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Taxonomy
TopicsSaffron Plant Research Studies · Medicinal Plants and Bioactive Compounds · High Altitude and Hypoxia
