脂多糖
药理学
益生菌
肺
医学
氧化应激
肠道菌群
抗氧化剂
支气管肺泡灌洗
炎症
微生物学
新陈代谢
免疫学
呼吸系统
多糖
菌群(微生物学)
慢性阻塞性肺病
生物
免疫系统
肝损伤
化学
细菌
药物代谢
炎症反应
氧化磷酸化
水肿
败血症
作者
Haili Niu,Fangjia Zhao,Qi Wang,Min Li,Yuan Li,Ivan Kurtovic,Zitong Zhang,Yahong Yuan,Tianli Yue
摘要
ABSTRACT Acute lung injury (ALI) is a serious global respiratory disease lacking completely safe drug treatments. This study investigated the protective mechanism of Auricularia auricula polysaccharides (AAP; 100, 200, and 400 mg/kg) against lipopolysaccharide (LPS)‐induced ALI in mice. The results demonstrated AAP's efficacy in attenuating LPS‐induced ALI. AAP intervention significantly reduced pulmonary edema (lung W/D ratio: 3.5–4.0 vs. LPS 5.2) and bronchoalveolar protein leakage (493–567 µg/mL vs. LPS 616 µg/mL) compared to the LPS group. AAP treatment also dose‐dependently suppressed key pro‐inflammatory cytokines (TNF‐α: 56‐142 pg/mL vs. LPS 184 pg/mL; IL‐1β: 42–45 pg/mL vs. LPS 73 pg/mL; IL‐6: 6–15 pg/mL vs. LPS 31 pg/mL) and effectively restored antioxidant capacity (GSH‐Px: 56.0‐56.1 U/mg prot vs. LPS 41.4 U/mg prot; SOD: 212‐233 U/mg prot vs. LPS 186 U/mg prot; MDA: 0.90–0.94 nmol/mg prot vs. LPS 1.54 nmol/mg prot). Critically, different AAP doses selectively stimulated probiotic growth in the gut. Spearman correlation analysis revealed that these AAP‐modulated probiotics were strongly associated with significant alterations in host metabolic profiles. This metabolic remodeling was further linked to improvements in ALI‐related biochemical parameters described above. Our results indicate that pre‐intervention with AAP attenuates ALI primarily by modulating gut flora composition and associated metabolic pathways. This flora‐metabolite interplay ultimately mediates lung protection via the gut–lung axis, enhancing anti‐inflammatory and antioxidant responses. The present study suggests AAP's potential as a dietary protective agent against ALI, providing a novel therapeutic path focused on the gut‐lung axis.
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