Han Xiao-Xiao, Tian Yan-Ge, Liu Wen-Jing, Zhao Di, Liu Xue-Fang, Hu Yan-Ping, Feng Su-Xiang, Li Jian-Sheng
College of Pharmacy, Henan University of Chinese Medicine, Zhengzhou, Henan, China.
The First Affiliated Hospital, Henan University of Chinese Medicine, Zhengzhou, Henan, China.
Front Pharmacol. 2023 Jul 24;14:1131479. doi: 10.3389/fphar.2023.1131479. eCollection 2023.
Acute lung injury (ALI) is a common and devastating respiratory disease associated with uncontrolled inflammatory response and transepithelial neutrophil migration. In recent years, a growing number of studies have found that Ardisiae Japonicae Herba (AJH) has a favorable anti-inflammatory effect. However, its serum material basis and molecular mechanism are still unknown in ALI treatment. In this study, metabolomics and network analysis of serum pharmacochemistry were used to explore the therapeutic effect and molecular mechanism of AJH against lipopolysaccharide (LPS)-induced ALI. A total of 12 rats for serum pharmacochemistry analysis were randomly divided into the LPS group and LPS + AJH-treated group (treated with AJH extract 20 g/kg/d), which were administered LPS (2 mg/kg) by intratracheal instillation and then continuously administered for 7 days. Moreover, 36 rats for metabolomic research were divided into control, LPS, LPS + AJH-treated (5, 10, and 20 g/kg/d), and LPS + dexamethasone (Dex) (2.3 × 10 g/kg/d) groups. After 1 h of the seventh administration, the LPS, LPS + AJH-treated, and LPS + Dex groups were administered LPS by intratracheal instillation to induce ALI. The serum pharmacochemistry profiling was performed by UPLC-Orbitrap Fusion MS to identify serum components, which further explore the molecular mechanism of AJH against ALI by network analysis. Meanwhile, metabolomics was used to select the potential biomarkers and related metabolic pathways and to analyze the therapeutic mechanism of AJH against ALI. The results showed that 71 serum components and 18 related metabolites were identified in ALI rat serum. We found that 81 overlapping targets were frequently involved in AGE-RAGE, PI3K-AKT, and JAK-STAT signaling pathways in network analysis. The LPS + AJH-treated groups exerted protective effects against ALI by reducing the infiltration of inflammatory cells and achieved anti-inflammatory efficacy by significantly regulating the interleukin (IL)-6 and IL-10 levels. Metabolomics analysis shows that the therapeutic effect of AJH on ALI involves 43 potential biomarkers and 14 metabolic pathways, especially phenylalanine, tyrosine, and tryptophan biosynthesis and linoleic acid metabolism pathways, to be influenced, which implied the potential mechanism of AJH in ALI treatment. Our study initially elucidated the material basis and effective mechanism of AJH against ALI, which provided a solid basis for AJH application.
急性肺损伤(ALI)是一种常见且严重的呼吸系统疾病,与失控的炎症反应和跨上皮中性粒细胞迁移有关。近年来,越来越多的研究发现紫金牛(AJH)具有良好的抗炎作用。然而,其在ALI治疗中的血清物质基础和分子机制仍不清楚。本研究采用血清药物化学的代谢组学和网络分析方法,探讨AJH对脂多糖(LPS)诱导的ALI的治疗作用和分子机制。将12只用于血清药物化学分析的大鼠随机分为LPS组和LPS+AJH治疗组(用AJH提取物20 g/kg/d治疗),通过气管内滴注给予LPS(2 mg/kg),然后连续给药7天。此外,将36只用于代谢组学研究的大鼠分为对照组、LPS组、LPS+AJH治疗组(5、10和20 g/kg/d)和LPS+地塞米松(Dex)组(2.3×10 g/kg/d)。在第七次给药1小时后,对LPS组、LPS+AJH治疗组和LPS+Dex组进行气管内滴注LPS以诱导ALI。通过超高效液相色谱-轨道阱融合质谱进行血清药物化学图谱分析以鉴定血清成分,并通过网络分析进一步探索AJH抗ALI的分子机制。同时,利用代谢组学选择潜在的生物标志物和相关代谢途径,并分析AJH抗ALI的治疗机制。结果显示,在ALI大鼠血清中鉴定出71种血清成分和18种相关代谢物。我们发现,在网络分析中,81个重叠靶点频繁参与AGE-RAGE、PI3K-AKT和JAK-STAT信号通路。LPS+AJH治疗组通过减少炎症细胞浸润对ALI发挥保护作用,并通过显著调节白细胞介素(IL)-6和IL-10水平实现抗炎效果。代谢组学分析表明,AJH对ALI的治疗作用涉及43种潜在生物标志物和14条代谢途径,尤其是苯丙氨酸、酪氨酸和色氨酸生物合成以及亚油酸代谢途径受到影响,这暗示了AJH在ALI治疗中的潜在机制。我们的研究初步阐明了AJH抗ALI的物质基础和作用机制,为AJH的应用提供了坚实的依据。