Ophiopogonin D from Ophiopogon japonicas-induced USP25 Activity to Reduce Ferroptosis of Macrophage in Acute Lung Injury by the Inhibition of Bound Rac1 and Nox1 Complex.

IF 5.5
The American journal of Chinese medicine Pub Date : 2025-01-01 Epub Date: 2025-03-19 DOI:10.1142/S0192415X25500193
Zhichen Pu, Yingjing Gui, Wenhui Wang, Yinping Shui, Haitang Xie, Min Zhao
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Abstract

Acute lung injury (ALI) can lead to severe respiratory system damage, characterized by extensive inflammation and lung tissue injury. Ophiopogonin D (OD), from Ophiopogon japonicus, has pharmacological effects such as anti-inflammatory and anti-oxidant, hypoglycemic, anti-aging, and immune regulation properties. This study attempts to identify the protective mechanism of OD against ALI by the inhibition of ferroptosis of macrophages. The tissue-specific expression of USP25 in patients with COVID-19 was evaluated using single-cell data from the China National GeneBank and the GSE147507 dataset from Gene Expression Omnibus (GEO). C57BL/6 mice, Murine bone marrow derived macrophages (BMDM) or RAW264.7 cells were induced by Lipopolysaccharide (LPS). OD prevented ALI, and reduced inflammation levels and oxidative stress in mice models. OD significantly decreased the number of monocyte/macrophages (CD11b [Formula: see text]Ly6G-cells) in the peritoneal cavity after ALI induction. OD-mitigated inflammation and oxidative stress of macrophages in the ALI model. OD-reduced ferroptosis of macrophages in a model of ALI through the inhibition of ROS-induced mitochondrial damage. USP25 is significantly expressed in macrophages in patients with COVID-19 using single-cell analysis. OD-suppressed Rac1/NOX1-derived ROS to reduce the mitochondrial damage of macrophages in a model of ALI by the induction of USP25 activity. OD-identified USP25 at 907-VAL and 975-ARG in an ALI model to suppress USP25 Ubiquitination. OD from Ophiopogon japonicus induces USP25 activity to reduce ferroptosis of macrophages in ALI by binding the Rac1 and Nox1 complex. Therefore, it can be concluded that OD may be a potential therapeutic drug for the treatment of ALI.

麦冬皂苷D通过抑制结合的Rac1和Nox1复合物,诱导USP25活性降低急性肺损伤巨噬细胞铁下垂
急性肺损伤(Acute lung injury, ALI)可导致严重的呼吸系统损伤,以广泛的炎症和肺组织损伤为特征。麦冬皂苷D (Ophiopogonin D, OD)从麦冬中提取,具有抗炎抗氧化、降血糖、抗衰老、免疫调节等药理作用。本研究试图通过对巨噬细胞铁下垂的抑制来确定OD对ALI的保护机制。使用来自中国国家基因库的单细胞数据和来自Gene expression Omnibus (GEO)的GSE147507数据集评估USP25在COVID-19患者中的组织特异性表达。脂多糖(LPS)诱导C57BL/6小鼠、小鼠骨髓源性巨噬细胞(BMDM)和RAW264.7细胞。在小鼠模型中,OD可预防ALI,降低炎症水平和氧化应激。OD显著降低ALI诱导后腹腔内单核/巨噬细胞(CD11b[公式:见文]ly6g细胞)的数量。od可减轻ALI模型中巨噬细胞的炎症和氧化应激。通过抑制ros诱导的线粒体损伤,od减少ALI模型中巨噬细胞的铁下垂。单细胞分析显示,USP25在COVID-19患者巨噬细胞中显著表达。od抑制Rac1/ nox1来源的ROS,通过诱导USP25活性来减少ALI模型中巨噬细胞的线粒体损伤。在ALI模型中,od鉴定出USP25在907-VAL和975-ARG处抑制USP25泛素化。麦草OD通过结合Rac1和Nox1复合物,诱导USP25活性降低ALI巨噬细胞铁下垂。因此,可以得出结论,OD可能是一种潜在的治疗ALI的药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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