首页|卡格列净通过调控铁死亡改善射血分数保留型心力衰竭大鼠心功能

卡格列净通过调控铁死亡改善射血分数保留型心力衰竭大鼠心功能

Canagliflozin can improve cardiac function in HFpEF rats partly by regulating ferroptosis

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目的 探讨卡格列净对射血分数保留型心力衰竭(HFpEF)大鼠心功能的影响及其对铁死亡机制的调控作用.方法 选取32只7周龄Dahl盐敏感大鼠,随机分为对照组(予低盐饲料)、HFpEF组(予高盐饲料)、卡格列净20组(予高盐饲料+卡格列净20 mg·kg-1·d-1)和卡格列净30组(予高盐饲料+卡格列净30 mg·kg-1·d-1),每组8只,监测各组大鼠体重、血压,于实验第10周行代谢笼检测,于实验第12周行超声心动图检查后处死大鼠,留取血液及左心室标本行HE染色、Masson染色、普鲁士蓝铁染色和活性氧染色,分别在光学显微镜下观察心肌细胞大小和形态、间质纤维化程度、铁染色及活性氧生成情况.另取切片在电子显微镜下观察心肌细胞超微结构,并应用Western blot法及实时荧光定量逆转录聚合酶链反应检测各组大鼠左心室心肌组织中铁死亡相关指标的蛋白及mRNA表达水平.结果 适应性饲养1周后各组大鼠均全部存活.代谢笼结果示,与对照组相比,HFpEF组、卡格列净20组和卡格列净30组大鼠进食量、进水量及排尿量更多,体重较低(P均<0.05);这些变化在卡格列净20组和卡格列净30组比HFpEF组更显著;卡格列净20组与卡格列净30组相比,只有12周体重组间差异有统计学意义(P<0.05).HFpEF组大鼠第6、12周血压及第12周全心重量、左心室校正质量较对照组、卡格列净20组和卡格列净30组高,而第12周二尖瓣舒张早期最大峰值速度与舒张晚期最大峰值速度比值较低(P均<0.05).HE染色、Masson染色结果示,与对照组比较,HFpEF组大鼠左心室心肌组织心肌纤维排列紊乱、细胞直径大[(0.032±0.004)mm比(0.023±0.003)mm,P<0.05],且形态欠规则、间质胶原纤维增生明显、胶原容积分数较高(0.168±0.028比0.118±0.013,P<0.05).与HFpEF组相比,卡格列净20组和卡格列净30组大鼠左心室心肌组织心肌纤维排列较整齐,心肌细胞形态较规则,细胞直径较小,胶原容积分数较低(P均<0.05).电镜下观察到,与对照组相比,HFpEF组大鼠心肌组织中大部分横纹肌发生断裂,Z线和M线不能明显区分,出现线粒体部分肿胀、膜增厚、嵴减少甚至消失等变化.卡格列净20组和卡格列净30组大鼠心肌组织横纹肌排列趋于规整,线粒体形态变化较轻.普鲁士蓝铁染色结果示,HFpEF组大鼠心肌组织中铁含量较对照组、卡格列净20组和卡格列净30组高.活性氧染色结果示,HFpEF组大鼠心肌组织中活性氧含量较对照组、卡格列净20组和卡格列净30组高.心肌组织生化示,HFpEF组大鼠心肌组织中Fe2+含量、丙二醛含量较对照组、卡格列净20组和卡格列净30组高,而谷胱甘肽含量较低(P均<0.05).Western blot法和实时荧光定量逆转录聚合酶链反应检测结果示,与对照组比较,HFpEF组大鼠心肌组织中转铁蛋白受体1(蛋白相对表达量:1.37±0.16比0.31±0.12)、酰基辅酶A合成酶长链家族成员4(蛋白相对表达量:1.31±0.15比0.63±0.09)蛋白及mRNA表达水平较高,铁蛋白重链1(蛋白相对表达量:0.45±0.08比1.41±0.15)蛋白及mRNA表达水平较低(P均<0.05);上述指标在卡格列净20组与卡格列净30组间差异均无统计学意义(P>0.05).4组大鼠心肌组织中谷胱甘肽过氧化物酶4蛋白及mRNA表达水平差异无统计学意义(P>0.05).结论 卡格列净通过调控铁死亡机制改善HFpEF大鼠心功能.
Objective To explore the effects of canagliflozin on cardiac function and its regulation of ferroptosis in rats with heart failure with preserved ejection fraction(HFpEF).Methods Thirty-two 7-week-old Dahl salt-sensitive rats were selected and randomly divided into four groups:the control group(fed with low-salt diet),the HFpEF group(fed with high-salt diet),the canagliflozin 20 group(fed with high-salt diet and 20 mg·kg-1·d-1 canagliflozin),and the canagliflozin 30 group(fed with high-salt diet and 30 mg·kg-1·day-1 canagliflozin).Body weight and blood pressure of the rats in each group were monitored.Metabolic cage tests were conducted at the 10th week of the experiment,and echocardiography was performed at the 12th week,after which the rats were killed.Blood and left ventricular samples were collected.HE staining,Masson staining,Prussian blue iron staining,and reactive oxygen species staining were performed to observe the cardiomyocyte size and shape,degree of interstitial fibrosis,iron staining,reactive oxygen species production under optical microscope.The ultrastructure of cardiomyocytes was observed under electron microscope.Western blotting and real-time fluorescent quantitative reverse transcription polymerase chain reaction(RT-qPCR)were used to detect the expression levels of proteins and mRNA related to ferroptosis in left ventricular myocardial tissue of rats in each group.Results After 1 week of adaptive feeding,all rats survived.Metabolic cage results showed that compared with control group,rats in the HFpEF group,canagliflozin 20 group and canagliflozin 30 group had more food intake,water intake and urine output,and lower body weight(all P<0.05).These changes were more pronounced in canagliflozin 20 group and canagliflozin 30 group than in HFPEF group,and only the body weight at the 12th week showed a statistically significant difference between canagliflozin 20 group and canagliflozin 30 group(P<0.05).The blood pressure of 6th week and 12th week,heart weight and left ventricular corrected mass of 12th week of rats in HFpEF group were higher than those in control group,canagliflozin 20 group and canagliflozin 30 group,while the ratio of early mitral valve peak velocity to late mitral valve peak velocity of 12th week was lower(all P<0.05).HE and Masson staining showed that compared to control group,the myocardial fibers in the left ventricular myocardial tissue of rats in HFpEF group were disordered,with larger cell diameter((0.032±0.004)mm vs.(0.023±0.003)mm,P<0.05),irregular shape,obvious proliferation of interstitial collagen fibers,and higher collagen volume fraction(0.168±0.028 vs.0.118±0.013,P<0.05).Compared with HFpEF group,rats in the canagliflozin 20 group and canagliflozin 30 had more orderly arranged myocardial fibers,more regular cardiomyocyte shape,smaller cell diameter,and lower collagen volume fraction(P<0.05).It was observed under electron microscopy that,compared to control group,most of the striated muscles in myocardial tissue of HFpEF group were broken,and the Z line and M line could not be clearly distinguished,some changes such as mitochondrial swelling,membrane thickening,cristae reduction or even disappearance occurred.In the canagliflozin 20 group and canagliflozin 30 group,the arrangement of striated muscles in the myocardial tissue of rats tended to be more regular,and the morphological changes of mitochondria were milder.Prussian blue iron staining results showed that the iron content in myocardial tissue of rats in HFpEF group was higher than that in control group,canagliflozin 20 group and canagliflozin 30 group.Reactive oxygen species staining results showed that the reactive oxygen species content in the myocardial tissue of rats in HFpEF group was higher than that of control group,canagliflozin 20 group and canagliflozin 30 group.Biochemical analysis of myocardial tissue showed that Fe and malondialdehyde content in myocardial tissue of rats in HFpEF group were higher than those in control group,canagliflozin 20 group and canagliflozin 30 group,while glutathione content was lower(all P<0.05).Western blot and RT-qPCR detection results showed that compared to control group,rats in HFpEF group had higher expression levels of transferrin receptor 1(protein relative expression level:1.37±0.16 vs.0.31±0.12),acyl-CoA synthetase long-chain family member 4(protein relative expression level:1.31±0.15 vs.0.63±0.09)protein and mRNA,and lower expression levels of ferritin heavy chain 1(protein relative expression level:0.45±0.08 vs.1.41±0.15)protein and mRNA(all P<0.05).There was no statistically significant difference in these indicators between canagliflozin 20 group and the canagliflozin 30 group(all P>0.05).There was no significant difference in levels of glutathione peroxidase 4 protein and mRNA expression in myocardial tissue of rats in four groups(P>0.05).Conclusion Canagliflozin improves cardiac function in HFpEF rats by regulating the ferroptosis mechanism.

Heart failure with preserved ejection fractionSodium-glucose cotransporters-2 inhibitorCanagliflozinFerroptosisIron metabolismLipid peroxidation

马赛、左庆娟、和丽丽、张国瑞、翟建龙、张婷婷、王忠丽、郭艺芳

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河北省人民医院疼痛科,石家庄 050051

河北省人民医院老年心血管内科,石家庄 050051

河北医科大学附属石家庄市第三医院心内科,石家庄 050011

河北省人民医院心内科,石家庄 050051

河北省人民医院体检中心,石家庄 050051

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射血分数保留型心力衰竭 钠-葡萄糖协同转运蛋白2抑制剂 卡格列净 铁死亡 铁代谢 脂质过氧化

2024

中华心血管病杂志
中华医学会

中华心血管病杂志

CSTPCD北大核心
影响因子:2.846
ISSN:0253-3758
年,卷(期):2024.52(9)