Sun Yuanfang, Cheng Guoliang, Du Lijing, Gan Yu, Li Bing, Yan Shikai, Shao Mingguo, Jin Huizi, Li Shasha
The Second Clinical College of Guangzhou University of Chinese Medicine, Guangzhou, China.
School of Pharmacy, Shanghai Jiao Tong University, Shanghai, China.
Front Pharmacol. 2022 Oct 7;13:1011333. doi: 10.3389/fphar.2022.1011333. eCollection 2022.
Ischemic stroke is a leading cause of mortality and disability worldwide. Microcirculatory dysfunction is the foremost hindrance for a good clinical prognosis in ischemic stroke patients. Clinical researches show that capsule (CZTL) has a curative effect during the recovery period of ischemic stroke, which contributes to a good prognosis. However, it is not known whether CZTL treats ischemic stroke by ameliorating microcirculation dysfunction. In this study, we investigated the influence of CZTL on microcirculation and its underlying mechanism. A rat model of acute microcirculatory dysfunction was established by stimuli of adrenaline and ice water. The microcirculatory damage in model rats and the efficacy of CZTL were assessed by detecting laser speckle contrast imaging, coagulation function, hemorheology, vasomotor factor and microcirculation function. The potential mechanism of CZTL action was explored by the untargeted metabolomic analysis based on ultra-performance liquid chromatography-quadrupole-time of flight-mass spectrometry. Laser speckle contrast imaging showed that model rats suffered low perfusion in ears, feet and tails, and CZTL treatment increased microcirculatory blood flow. Coagulation function detection results showed that CZTL diminished the reduction of thrombin time, prothrombin time, activated partial thromboplastin time and the elevated fibrinogen level caused by acute microcirculatory dysfunction. Furthermore, CZTL could recover the increased blood viscosity as well as the abnormal vasomotor and microcirculation function in rats with acute microcirculatory dysfunction. Metabolomics analysis indicated that CZTL might regulate sphingolipid metabolism and arachidonic acid metabolism to exert protective effects on microcirculation. These results elucidated that CZTL was highly effective against microcirculatory dysfunction and its potential mechanisms related with the modulation of sphingolipid and arachidonic acid metabolic pathways. The present study provided a new perspective on the clinical application of CZTL, and it contribute to explore novel therapeutic drug against microcirculatory dysfunction.
缺血性中风是全球范围内导致死亡和残疾的主要原因。微循环功能障碍是缺血性中风患者获得良好临床预后的首要障碍。临床研究表明,[胶囊名称未给出,推测为 CZTL]在缺血性中风恢复期具有治疗作用,有助于良好的预后。然而,尚不清楚 CZTL 是否通过改善微循环功能障碍来治疗缺血性中风。在本研究中,我们研究了 CZTL 对微循环的影响及其潜在机制。通过肾上腺素和冰水刺激建立大鼠急性微循环功能障碍模型。通过检测激光散斑对比成像、凝血功能、血液流变学、血管舒缩因子和微循环功能来评估模型大鼠的微循环损伤和 CZTL 的疗效。基于超高效液相色谱 - 四极杆 - 飞行时间质谱的非靶向代谢组学分析探索了 CZTL 作用的潜在机制。激光散斑对比成像显示,模型大鼠的耳朵、足部和尾部灌注不足,而 CZTL 治疗增加了微循环血流量。凝血功能检测结果表明,CZTL 减轻了急性微循环功能障碍引起的凝血酶时间、凝血酶原时间、活化部分凝血活酶时间的降低以及纤维蛋白原水平的升高。此外,CZTL 可以恢复急性微循环功能障碍大鼠升高的血液粘度以及异常的血管舒缩和微循环功能。代谢组学分析表明,CZTL 可能通过调节鞘脂代谢和花生四烯酸代谢对微循环发挥保护作用。这些结果表明,CZTL 对微循环功能障碍具有高效性,其潜在机制与鞘脂和花生四烯酸代谢途径的调节有关。本研究为 CZTL 的临床应用提供了新的视角,并有助于探索针对微循环功能障碍的新型治疗药物。