Zhang Yan, Yuan Peipei, Wei Yaxin, Li Saifei, Zhao Lirui, Ma Qingyun, Huo Yiran, Zheng Xiaoke, Feng Weisheng
Henan University of Chinese Medicine, Zhengzhou, 450046, China.
Engineering and Technology Center for Chinese Medicine Development of Henan Province, Zhengzhou, 450046, China.
Biochem Biophys Rep. 2025 Aug 28;44:102208. doi: 10.1016/j.bbrep.2025.102208. eCollection 2025 Dec.
5-Hydroxymethyl furfural (5-HMF) is a furan compound with a molecular formula of CHO. Studies have found that 5-HMF has many pharmacological effects, such as improving hemorheology, anti-inflammatory, antioxidant activity and anti-myocardial ischemia. Identifying the preventive effect of 5-HMF against ischemic stroke and its possible mechanism was the aim of this investigation.
The MCAO animal model was used to detect the related indexes of behavior, neurological function and mitochondrial function, and to clarify the effect of 5-HMF on ischemic stroke. The HBMECs model induced by OGD-R was intervened by 5-HMF, and the GluR2 silencing sequence was added to detect mitochondrial function and angiogenesis-related indicators, so as to further explore the mechanism of 5-HMF intervention in ischemic stroke.
In the MCAO experiment, the behavioral results showed that 5-HMF increased the quantity of autonomic activities, increased the exercise time and distance, reduced the balance beam score, and prolonged the residence time of MCAO rats on the rotating rod ( < 0.01). The results of neurological function indicated that 5-HMF reduced the neurological function score, increased the blood flow velocity of middle cerebral artery ( < 0.01), reduced the area of cerebral infarction, and alleviated the damage of cerebral cortex and hippocampal neurons. The results of mitochondrial function indicated that 5-HMF could significantly reduce the apoptosis of primary brain cells, ROS, Ca levels, increase mitochondrial membrane potential and GluR2 expression in MCAO rats ( < 0.01). In the OGD-R-induced HBMECs experiment, 5-HMF increased the expression level of GluR2, increased cell viability, and decreased LDH activity in cell supernatant ( < 0.01). The results of mitochondrial function showed that 5-HMF reduced the levels of Ca and glutamate in the cell supernatant, reduced the levels of apoptosis and ROS, increased the mitochondrial membrane potential, and improved the expression of mitochondrial dynamics-related proteins ( < 0.05 or < 0.01). These improvements were markedly reversed after the addition of GluR2 silencing sequence ( < 0.01).
5-HMF has the effect of ameliorating brain damage in MCAO rats, and by regulating the expression of GluR2, reducing intracellular Ca concentration, improving mitochondrial function, promoting angiogenesis, thereby reducing OGD-R-induced HBMECs damage.
5-羟甲基糠醛(5-HMF)是一种分子式为C₆H₆O₃的呋喃化合物。研究发现,5-HMF具有多种药理作用,如改善血液流变学、抗炎、抗氧化活性和抗心肌缺血。本研究旨在确定5-HMF对缺血性中风的预防作用及其可能的机制。
采用大脑中动脉闭塞(MCAO)动物模型检测行为、神经功能和线粒体功能的相关指标,以阐明5-HMF对缺血性中风的影响。用5-HMF干预氧糖剥夺复氧(OGD-R)诱导的人脑微血管内皮细胞(HBMECs)模型,并加入GluR2沉默序列检测线粒体功能和血管生成相关指标,以进一步探讨5-HMF干预缺血性中风的机制。
在MCAO实验中,行为学结果显示,5-HMF增加了自主活动量,增加了运动时间和距离,降低了平衡木评分,并延长了MCAO大鼠在转棒上的停留时间(P<0.01)。神经功能结果表明,5-HMF降低了神经功能评分,增加了大脑中动脉血流速度(P<0.01),减小了脑梗死面积,减轻了大脑皮质和海马神经元的损伤。线粒体功能结果表明,5-HMF可显著降低MCAO大鼠原代脑细胞凋亡、活性氧(ROS)、钙离子水平,增加线粒体膜电位和GluR2表达(P<0.01)。在OGD-R诱导的HBMECs实验中,5-HMF增加了GluR2表达水平,提高了细胞活力,并降低了细胞上清液中乳酸脱氢酶(LDH)活性(P<0.01)。线粒体功能结果显示,5-HMF降低了细胞上清液中钙离子和谷氨酸水平,降低了凋亡和ROS水平,增加了线粒体膜电位,并改善了线粒体动力学相关蛋白的表达(P<0.05或P<0.01)。加入GluR2沉默序列后,这些改善作用明显逆转(P<0.01)。
5-HMF具有改善MCAO大鼠脑损伤的作用,其通过调节GluR2表达,降低细胞内钙离子浓度,改善线粒体功能,促进血管生成,从而减轻OGD-R诱导的HBMECs损伤。