Department of Pharmacy, The First Affiliated Hospital of Zhengzhou University, Zhengzhou 450052, PR China.
School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, Henan 450001, PR China; Key Laboratory of Advanced Drug Preparation Technologies, Ministry of Education, Zhengzhou University, Zhengzhou, Henan 450001, PR China.
Biomed Pharmacother. 2024 Jul;176:116819. doi: 10.1016/j.biopha.2024.116819. Epub 2024 Jun 3.
Our previous research discovered that cinnamamide derivatives are a new type of potential cardioprotective agents myocardial ischemia-reperfusion (MIR) injury, among which Compound 10 exhibits wonderful beneficial action in vitro. However, the exact mechanism of Compound 10 still needs to be elucidated.
The protective effect of Compound 10 was determined by detecting the cell viability and LDH leakage rate in H9c2 cells subjected to HO Alterations of electrocardiogram, echocardiography, cardiac infarct area, histopathology and serum myocardial zymogram were tested in MIR rats. Additionally, the potential mechanism of Compound 10 was explored through PCR. Network pharmacology and Western blotting was conducted to monitor levels of proteins related to autophagic flux and mTOR, autophagy regulatory substrate, induced by Compound 10 both in vitro and in vivo, as well as expressions of Sirtuins family members.
Compound 10 significantly ameliorated myocardial injury, as demonstrated by increased cell viability, decreased LDH leakage in vitro, and declined serum myocardial zymogram, ST elevation, cardiac infarct area and improved cardiac function and microstructure of heart tissue in vivo. Importantly, Compound 10 markedly enhanced the obstruction of autophagic flux and inhibited excessive autophagy initiation against MIR by decreased ATG5, Rab7 and increased P-mTOR and LAMP2. Furthermore, Sirt1 knockdown hindered Compound 10's regulation on mTOR, leading to interrupted cardiac autophagic flux.
Compound 10 exerted cardioprotective effects on MIR by reducing excessive autophagy and improving autophgic flux blockage. Our work would take a novel insight in seeking effective prevention and treatment strategies against MIR injury.
我们之前的研究发现肉桂酰胺衍生物是一种新的潜在心肌缺血再灌注(MIR)损伤的心脏保护剂,其中化合物 10 在体外表现出极好的有益作用。然而,化合物 10 的确切机制仍需阐明。
通过检测 H9c2 细胞中 HO 引起的细胞活力和 LDH 漏出率来确定化合物 10 的保护作用。在 MIR 大鼠中还检测了心电图、超声心动图、心肌梗死面积、组织病理学和血清心肌酶谱的变化。此外,通过 PCR 探讨了化合物 10 的潜在机制。通过网络药理学和 Western blot 监测了化合物 10 在体外和体内对自噬流和 mTOR 相关蛋白、自噬调节底物的影响,以及 Sirtuins 家族成员的表达。
化合物 10 显著改善了心肌损伤,表现为细胞活力增加,体外 LDH 漏出减少,血清心肌酶谱、ST 抬高、心肌梗死面积降低,心功能和心脏组织微观结构改善。重要的是,化合物 10 明显增强了自噬流的阻断,并通过降低 ATG5、Rab7 和增加 P-mTOR 和 LAMP2 抑制了 MIR 过度的自噬起始。此外,Sirt1 敲低抑制了化合物 10 对 mTOR 的调节,导致心脏自噬流中断。
化合物 10 通过减少过度自噬和改善自噬流阻断对 MIR 发挥心脏保护作用。我们的工作为寻找针对 MIR 损伤的有效预防和治疗策略提供了新的思路。