[Protective mechanism of modulating cyclic guanosine monophosphate-adenosine monophosphate synthase/stimulator of interferon gene pathway in oleic acid-induced acute lung injury in mice].

Q3 Medicine
Liangyu Mi, Wenyan Ding, Yingying Yang, Qianlin Wang, Xiangyu Chen, Ziqi Tan, Xiaoyu Zhang, Min Zheng, Longxiang Su, Yun Long
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The ALI model was established by tail vein injection of oleic acid (7 mL/kg), while the normal control group received no intervention. The inhibitor pretreatment groups were intraperitoneally injected with the corresponding doses of cGAS inhibitor RU.521 respectively 1 hour before modeling. At 24 hours post-modeling, blood was collected, and mice were sacrificed. Lung tissue pathological changes were observed under light microscopy after hematoxylin-eosin (HE) staining, and pathological scores were assessed. Western blotting was used to detect the protein expressions of cGAS, STING, phosphorylated TANK-binding kinase 1 (p-TBK1), phosphorylated interferon regulatory factor 3 (p-IRF3), and phosphorylated nuclear factor-κB p65 (p-NF-κB p65) in lung tissue. Immunohistochemistry was performed to observe STING and p-NF-κB positive expressions in lung tissue. Serum interferon-β (IFN-β) levels were measured by enzyme-linked immunosorbent assay (ELISA).</p><p><strong>Results: </strong>Compared with the normal control group, the ALI model group exhibited significant focal alveolar thickening, intra-alveolar hemorrhage, pulmonary capillary congestion, and neutrophil infiltration in the pulmonary interstitium and alveoli, along with markedly increased pathological scores (10.33±0.58 vs. 1.33±0.58, P < 0.05). Protein expressions of cGAS, STING, p-TBK1, p-IRF3, and p-NF-κB p65 in lung tissue significantly increased [cGAS protein (cGAS/β-actin): 1.24±0.02 vs. 0.56±0.02, STING protein (STING/β-actin): 1.27±0.01 vs. 0.55±0.01, p-TBK1 protin (p-TBK1/β-actin): 1.34±0.03 vs. 0.22±0.01, p-IRF3 protein (p-IRF3/β-actin): 1.23±0.02 vs. 0.36±0.01, p-NF-κB p65 protein (p-NF-κB p65/β-actin): 1.30±0.02 vs. 0.53±0.02, all P < 0.05], positive expressions of STING and p-NF-κB in lung tissue were significantly elevated [STING (A value): 0.51±0.03 vs. 0.30±0.07, p-NF-κB (A value): 0.57±0.05 vs. 0.31±0.03, both P < 0.05], and serum IFN-β levels were also significantly higher (ng/L: 256.02±3.84 vs. 64.15±1.17, P < 0.05). The cGAS inhibitor pretreatment groups showed restored alveolar structural integrity, reduced inflammatory cell infiltration, and decreased hemorrhage area, along with dose-dependent lower pathological scores as well as the protein expressions of cGAS, STING, p-TBK1, p-IRF3 and p-NF-κB p65 in lung tissue, with significant differences between the 500 μg/kg inhibitor group and ALI model group [pathological score: 2.67±0.58 vs. 10.33±0.58, cGAS protein (cGAS/β-actin): 0.56±0.03 vs. 1.24±0.02, STING protein (STING/β-actin): 0.67±0.03 vs. 1.27±0.01, p-TBK1 protein (p-TBK1/β-actin): 0.28±0.01 vs. 1.34±0.03, p-IRF3 protein (p-IRF3/β-actin): 0.32±0.01 vs. 1.23±0.02, p-NF-κB p65 protein (p-NF-κB p65/β-actin): 0.63±0.01 vs. 1.30±0.02, all P < 0.05]. Compared with the ALI model group, positive expressions of STING and p-NF-κB in lung tissue were significantly reduced in the 500 μg/kg inhibitor group [STING (A value): 0.40±0.01 vs. 0.51±0.03, p-NF-κB (A value): 0.43±0.02 vs. 0.57±0.05, both P < 0.05], and serum IFN-β levels were also markedly reduced (ng/L: 150.03±6.19 vs. 256.02±3.84, P < 0.05).</p><p><strong>Conclusions: </strong>The cGAS/STING pathway is activated in oleic acid-induced ALI, leading to exacerbated inflammatory responses and increased lung damage. 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引用次数: 0

Abstract

Objective: To investigate the role and mechanism of the cyclic guanosine monophosphate-adenosine monophosphate synthase/stimulator of interferon gene (cGAS/STING) pathway in oleic acid-induced acute lung injury (ALI) in mice.

Methods: Male wild-type C57BL/6J mice were randomly divided into five groups (each n = 10): normal control group, ALI model group, and 5, 50, 500 μg/kg inhibitor pretreatment groups. The ALI model was established by tail vein injection of oleic acid (7 mL/kg), while the normal control group received no intervention. The inhibitor pretreatment groups were intraperitoneally injected with the corresponding doses of cGAS inhibitor RU.521 respectively 1 hour before modeling. At 24 hours post-modeling, blood was collected, and mice were sacrificed. Lung tissue pathological changes were observed under light microscopy after hematoxylin-eosin (HE) staining, and pathological scores were assessed. Western blotting was used to detect the protein expressions of cGAS, STING, phosphorylated TANK-binding kinase 1 (p-TBK1), phosphorylated interferon regulatory factor 3 (p-IRF3), and phosphorylated nuclear factor-κB p65 (p-NF-κB p65) in lung tissue. Immunohistochemistry was performed to observe STING and p-NF-κB positive expressions in lung tissue. Serum interferon-β (IFN-β) levels were measured by enzyme-linked immunosorbent assay (ELISA).

Results: Compared with the normal control group, the ALI model group exhibited significant focal alveolar thickening, intra-alveolar hemorrhage, pulmonary capillary congestion, and neutrophil infiltration in the pulmonary interstitium and alveoli, along with markedly increased pathological scores (10.33±0.58 vs. 1.33±0.58, P < 0.05). Protein expressions of cGAS, STING, p-TBK1, p-IRF3, and p-NF-κB p65 in lung tissue significantly increased [cGAS protein (cGAS/β-actin): 1.24±0.02 vs. 0.56±0.02, STING protein (STING/β-actin): 1.27±0.01 vs. 0.55±0.01, p-TBK1 protin (p-TBK1/β-actin): 1.34±0.03 vs. 0.22±0.01, p-IRF3 protein (p-IRF3/β-actin): 1.23±0.02 vs. 0.36±0.01, p-NF-κB p65 protein (p-NF-κB p65/β-actin): 1.30±0.02 vs. 0.53±0.02, all P < 0.05], positive expressions of STING and p-NF-κB in lung tissue were significantly elevated [STING (A value): 0.51±0.03 vs. 0.30±0.07, p-NF-κB (A value): 0.57±0.05 vs. 0.31±0.03, both P < 0.05], and serum IFN-β levels were also significantly higher (ng/L: 256.02±3.84 vs. 64.15±1.17, P < 0.05). The cGAS inhibitor pretreatment groups showed restored alveolar structural integrity, reduced inflammatory cell infiltration, and decreased hemorrhage area, along with dose-dependent lower pathological scores as well as the protein expressions of cGAS, STING, p-TBK1, p-IRF3 and p-NF-κB p65 in lung tissue, with significant differences between the 500 μg/kg inhibitor group and ALI model group [pathological score: 2.67±0.58 vs. 10.33±0.58, cGAS protein (cGAS/β-actin): 0.56±0.03 vs. 1.24±0.02, STING protein (STING/β-actin): 0.67±0.03 vs. 1.27±0.01, p-TBK1 protein (p-TBK1/β-actin): 0.28±0.01 vs. 1.34±0.03, p-IRF3 protein (p-IRF3/β-actin): 0.32±0.01 vs. 1.23±0.02, p-NF-κB p65 protein (p-NF-κB p65/β-actin): 0.63±0.01 vs. 1.30±0.02, all P < 0.05]. Compared with the ALI model group, positive expressions of STING and p-NF-κB in lung tissue were significantly reduced in the 500 μg/kg inhibitor group [STING (A value): 0.40±0.01 vs. 0.51±0.03, p-NF-κB (A value): 0.43±0.02 vs. 0.57±0.05, both P < 0.05], and serum IFN-β levels were also markedly reduced (ng/L: 150.03±6.19 vs. 256.02±3.84, P < 0.05).

Conclusions: The cGAS/STING pathway is activated in oleic acid-induced ALI, leading to exacerbated inflammatory responses and increased lung damage. RU.521 can inhibit cGAS, thereby down-regulating the expression of pathway proteins and cytokines, and providing protection to lung tissue.

[调节环鸟苷单磷酸-腺苷单磷酸合成酶/干扰素基因通路刺激因子对油酸致小鼠急性肺损伤的保护机制]。
目的:探讨环鸟苷单磷酸-腺苷单磷酸合成酶/干扰素基因刺激因子(cGAS/STING)通路在油酸致小鼠急性肺损伤(ALI)中的作用及机制。方法:将雄性野生型C57BL/6J小鼠随机分为正常对照组、ALI模型组和5、50、500 μg/kg抑制剂预处理组,每组10只。通过尾静脉注射油酸(7 mL/kg)建立ALI模型,正常对照组不进行干预。抑制剂预处理组在造模前1 h分别腹腔注射相应剂量的cGAS抑制剂RU.521。造模后24小时采血,处死小鼠。苏木精-伊红(HE)染色后光镜下观察肺组织病理变化,并进行病理评分。Western blotting检测肺组织中cGAS、STING、磷酸化tank结合激酶1 (p-TBK1)、磷酸化干扰素调节因子3 (p-IRF3)、磷酸化核因子-κB p65 (p-NF-κB p65)蛋白的表达。免疫组化观察肺组织中STING和p-NF-κB的阳性表达。采用酶联免疫吸附试验(ELISA)检测血清干扰素-β (IFN-β)水平。结果:与正常对照组比较,ALI模型组大鼠肺泡局灶性增厚、肺泡内出血、肺毛细血管充血、肺间质及肺泡中性粒细胞浸润明显增多,病理评分明显升高(10.33±0.58∶1.33±0.58,P < 0.05)。肺组织中cGAS、STING、p-TBK1、p-IRF3、p-NF-κB p65蛋白表达显著升高[cGAS蛋白(cGAS/β-actin): 1.24±0.02比0.56±0.02,STING蛋白(STING/β-actin): 1.27±0.01比0.55±0.01,p-TBK1蛋白(p-TBK1/β-actin): 1.34±0.03比0.22±0.01,p-IRF3蛋白(p-IRF3/β-actin): 1.23±0.02比0.36±0.01,p-NF-κB p65蛋白(p-NF-κB p65/β-actin):1.30±0.02比0.53±0.02,P < 0.05],肺组织中STING和P - nf -κB阳性表达显著升高[STING (A值):0.51±0.03比0.30±0.07,P - nf -κB (A值):0.57±0.05比0.31±0.03,P < 0.05],血清中IFN-β水平也显著升高(ng/L: 256.02±3.84比64.15±1.17,P < 0.05)。cGAS抑制剂预处理组肺泡结构完整性恢复,炎症细胞浸润减少,出血面积减小,肺组织cGAS、STING、p-TBK1、p-IRF3、p-NF-κB p65蛋白表达呈剂量依赖性降低,病理评分降低,500 μg/kg抑制剂组与ALI模型组比较差异有统计学意义[cGAS蛋白(cGAS/β-actin)病理评分:2.67±0.58∶10.33±0.58];0.56±0.03比1.24±0.02,STING蛋白(STING/β-actin): 0.67±0.03比1.27±0.01,P - tbk1蛋白(P - tbk1 /β-actin): 0.28±0.01比1.34±0.03,P - irf3蛋白(P - irf3 /β-actin): 0.32±0.01比1.23±0.02,P - nf -κB p65蛋白(P - nf -κB p65/β-actin): 0.63±0.01比1.30±0.02,均P < 0.05]。与ALI模型组比较,500 μg/kg抑制剂组肺组织中STING、P - nf -κB阳性表达明显降低[STING (A值):0.40±0.01 vs. 0.51±0.03,P - nf -κB (A值):0.43±0.02 vs. 0.57±0.05,P < 0.05],血清中IFN-β水平也明显降低(ng/L: 150.03±6.19 vs. 256.02±3.84,P < 0.05)。结论:油酸诱导的ALI中cGAS/STING通路被激活,导致炎症反应加重,肺损伤加重。RU.521可以抑制cGAS,从而下调通路蛋白和细胞因子的表达,对肺组织起到保护作用。
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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来源期刊
Zhonghua wei zhong bing ji jiu yi xue
Zhonghua wei zhong bing ji jiu yi xue Medicine-Critical Care and Intensive Care Medicine
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