The First Affiliated Hospital of Xinjiang Medical University, Urumqi, Xinjiang Uygur Autonomous Region, Urumqi, People's Republic of China.
Braz J Cardiovasc Surg. 2022 May 23;37(3):370-379. doi: 10.21470/1678-9741-2020-0591.
The objective of this study is to investigate the protective mechanism of dexmedetomidine (Dex) in myocardial ischemia/reperfusion (MIR)-induced acute lung injury (ALI) of diabetic rats by inhibiting hypoxia-inducible factor-1α (HIF-1α).
Initially, healthy male Sprague Dawley rats were treated with streptozocin to induce diabetes. Then, three weeks after the induction, Dex or lentiviral vector (LV)-HIF-1α was injected into the rats 30 minutes prior to the MIR modeling. After four weeks, lung tissues were harvested for pathological changes observation and the wet/dry weight (W/D) ratio determination. Afterwards, oxidative stress indicators and pro-inflammatory factors were measured. In addition, HIF-1α expression was assessed by immunohistochemistry and western blot analysis.
Dex could suppress inflammatory cell infiltration, improve lung tissue structure, reduce pathological score and the W/D ratio, and block oxidative stress and inflammatory response in MIR-induced ALI of diabetic rats. Besides, Dex could also inhibit HIF-1α expression. Moreover, Dex + LV-HIF-1α reversed the protective role of Dex on diabetic MIR-induced ALI.
Our study has made it clear that Dex inhibited the upregulation of HIF-1α in diabetic MIR-induced ALI, and thus protect lung functions by quenching the accumulation of oxygen radical and reducing lung inflammatory response.
本研究旨在通过抑制低氧诱导因子-1α(HIF-1α)来探讨右美托咪定(Dex)在糖尿病大鼠心肌缺血/再灌注(MIR)诱导的急性肺损伤(ALI)中的保护机制。
首先,用链脲佐菌素(streptozocin)处理健康雄性 Sprague Dawley 大鼠以诱导糖尿病。然后,在 MIR 模型建立前 30 分钟,将 Dex 或慢病毒载体(LV)-HIF-1α 注入大鼠体内。四周后,采集肺组织观察病理变化并测定湿/干重(W/D)比值。然后,测定氧化应激指标和促炎因子。此外,通过免疫组化和 Western blot 分析评估 HIF-1α 的表达。
Dex 可抑制炎性细胞浸润,改善肺组织结构,降低 MIR 诱导的糖尿病大鼠 ALI 的病理评分和 W/D 比值,并阻断氧化应激和炎症反应。此外,Dex 还可以抑制 HIF-1α 的表达。而且,Dex + LV-HIF-1α 逆转了 Dex 对糖尿病 MIR 诱导的 ALI 的保护作用。
本研究表明,Dex 抑制了糖尿病 MIR 诱导的 ALI 中 HIF-1α 的上调,从而通过淬灭氧自由基的积累和减轻肺炎症反应来保护肺功能。