Department of Biomedical Science & Engineering, Konkuk University, Seoul 05029, Republic of Korea.
Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Republic of Korea.
Int J Mol Sci. 2024 May 14;25(10):5360. doi: 10.3390/ijms25105360.
Oxylipins, the metabolites of polyunsaturated fatty acids, are vital in regulating cell proliferation and inflammation. Among these oxylipins, specialized pro-resolving mediators notably contribute to inflammation resolution. Previously, we showed that the specialized pro-resolving mediators isomer 11,17dihydroxy docosapentaenoic acid (11,17diHDoPE) can be synthesized in bacterial cells and exhibits anti-inflammatory effects in mammalian cells. This study investigates the in vivo impact of 11,17diHDoPE in mice exposed to particulate matter 10 (PM10). Our results indicate that 11,17diHDoPE significantly mitigates PM10-induced lung inflammation in mice, as evidenced by reduced pro-inflammatory cytokines and pulmonary inflammation-related gene expression. Metabolomic analysis reveals that 11,17diHDoPE modulates inflammation-related metabolites such as threonine, 2-keto gluconic acid, butanoic acid, and methyl oleate in lung tissues. In addition, 11,17diHDoPE upregulates the LA-derived oxylipin pathway and downregulates arachidonic acid- and docosahexaenoic acid-derived oxylipin pathways in serum. Correlation analyses between gene expression and metabolite changes suggest that 11,17diHDoPE alleviates inflammation by interfering with macrophage differentiation. These findings underscore the in vivo role of 11,17diHDoPE in reducing pulmonary inflammation, highlighting its potential as a therapeutic agent for respiratory diseases.
氧化脂类是多不饱和脂肪酸的代谢产物,在调节细胞增殖和炎症中起着至关重要的作用。在这些氧化脂类中,专门的促解决介质特别有助于炎症的解决。此前,我们表明专门的促解决介质异构体 11,17-二羟基二十二碳五烯酸(11,17diHDoPE)可以在细菌细胞中合成,并在哺乳动物细胞中表现出抗炎作用。本研究调查了 11,17diHDoPE 在暴露于 10 微米颗粒物(PM10)的小鼠体内的影响。我们的结果表明,11,17diHDoPE 显著减轻了 PM10 诱导的小鼠肺部炎症,这表现在促炎细胞因子和与肺部炎症相关的基因表达减少。代谢组学分析表明,11,17diHDoPE 调节了与炎症相关的代谢物,如苏氨酸、2-酮葡萄糖酸、丁酸和油酸甲酯在肺组织中的表达。此外,11,17diHDoPE 上调了 LA 衍生的氧化脂类途径,并下调了血清中花生四烯酸和二十二碳六烯酸衍生的氧化脂类途径。基因表达和代谢物变化之间的相关性分析表明,11,17diHDoPE 通过干扰巨噬细胞分化来减轻炎症。这些发现强调了 11,17diHDoPE 在减轻肺部炎症中的体内作用,突出了其作为治疗呼吸疾病的潜在治疗剂的作用。