Cardioprotective effects of nanoparticles green formulated by Spinacia oleracea extract on isoproterenol-induced myocardial infarction in mice by the determination of PPAR-γ/NF-κB pathway

IF 2.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Open Chemistry Pub Date : 2024-07-17 DOI:10.1515/chem-2024-0058
Zhongyang Xu, Ningyu Xu, Tingcui Zhang, Jing Wang, Xiaoqi Wang
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Abstract

We developed a contemporary cardioprotective medication using silver nanoparticles (AgNPs) loaded with Spinacia oleracea to treat isoproterenol (ISO)-induced myocardial infarction in mice, focusing on the PPAR-γ/NF-κB pathway. The physicochemical techniques, such as Fourier-transform infrared spectroscopy, field emission scanning electron microscopy, ultraviolet–visible spectroscopy, and energy dispersive X-ray analysis, were employed to characterize the AgNPs. In the in vivo experiment, myocardial infarction was induced in mice by administering ISO subcutaneously at a dose of 40 mg/kg every 12 h for a total of three times. The mice were divided into five groups in a random manner: (1 and 2) ISO + AgNPs at varying doses (10 and 20 μg/mL) and time points; (3) ISO; and (4) control. Following the treatment, cardiac function was assessed through electrocardiogram, as well as biochemical and histochemical analyses. In the study, we examined the inflammatory reactions and cell death in human coronary artery endothelial cells exposed to lipopolysaccharide (LPS). The PPAR-γ/NF-κB activation by LPS and the resulting cytokine production were checked using real-time PCR and western blot techniques. The typical ST segment depression in myocardial infarction mice is significantly inhibited by the administration of AgNPs. Additionally, the treatment with AgNPs leads to a significant improvement in ventricular wall infarction, a decrease in mortality rate, and inhibition of myocardial injury marker levels. Furthermore, the application of AgNPs resulted in a decrease in the inflammatory environment within the hearts of mice with myocardial infarction. This effectively prevented the increase in TNF-α, IL-1β, and IL-6. The gene expression normalization of PPAR-γ/NF-κB/IκB-α/IKKα/β and PPAR-γ phosphorylation could potentially be linked to the advantageous impacts of AgNPs. In the context of an in vitro experiment, the administration of AgNPs demonstrated a notable decrease in cell death and inflammation cytokines expression inhibition. The myocardial infarction mice in the pre + post-ISO group appear to experience more noticeable cardioprotective effects from the treatment with AgNPs than those in the post-ISO group. Our research findings demonstrate that AgNPs possess cardioprotective efficacies in ISO-induced myocardial infarction. This beneficial effect may be attributed to the PPAR-γ activation and the NF-κB signaling inhibition. Consequently, our study presents a novel remedial approach for myocardial infarction treatment in clinical settings.
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通过测定 PPAR-γ/NF-κB 通路确定绿菠菜提取物配制的纳米颗粒对异丙肾上腺素诱发的小鼠心肌梗死的心脏保护作用
我们以 PPAR-γ/NF-κB 通路为研究对象,开发了一种利用银纳米颗粒(AgNPs)负载菠菜(Spinacia oleracea)治疗异丙肾上腺素(ISO)诱导的小鼠心肌梗死的现代心脏保护药物。傅立叶变换红外光谱、场发射扫描电子显微镜、紫外可见光谱和能量色散 X 射线分析等理化技术用于表征 AgNPs。在体内实验中,给小鼠皮下注射 ISO,剂量为 40 毫克/千克,每 12 小时一次,共注射三次,诱发小鼠心肌梗死。小鼠被随机分为五组:(1 和 2) ISO + AgNPs,剂量(10 和 20 μg/mL)和时间点各不相同;(3) ISO;(4) 对照组。治疗后,通过心电图以及生化和组织化学分析评估心脏功能。在这项研究中,我们检测了暴露于脂多糖(LPS)的人冠状动脉内皮细胞的炎症反应和细胞死亡情况。我们使用实时 PCR 和 Western 印迹技术检测了 LPS 对 PPAR-γ/NF-κB 的激活作用以及由此产生的细胞因子。AgNPs能显著抑制心肌梗死小鼠典型的ST段压低。此外,AgNPs 还能显著改善心室壁梗死,降低死亡率,抑制心肌损伤标志物水平。此外,AgNPs 的应用还降低了心肌梗死小鼠心脏内的炎症环境。这有效阻止了 TNF-α、IL-1β 和 IL-6 的增加。PPAR-γ/NF-κB/IκB-α/IKKα/β 和 PPAR-γ 磷酸化的基因表达正常化可能与 AgNPs 的有利影响有关。在体外实验中,AgNPs 的施用明显减少了细胞死亡,抑制了炎症细胞因子的表达。使用 AgNPs 治疗前 +ISO 后组的心肌梗塞小鼠似乎比使用 AgNPs 治疗后组的小鼠具有更明显的心脏保护作用。我们的研究结果表明,AgNPs 对 ISO 诱导的心肌梗死具有心脏保护作用。这种益处可能归因于 PPAR-γ 激活和 NF-κB 信号抑制。因此,我们的研究为临床治疗心肌梗死提供了一种新的补救方法。
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来源期刊
Open Chemistry
Open Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
3.80
自引率
4.30%
发文量
90
审稿时长
6 weeks
期刊介绍: Open Chemistry is a peer-reviewed, open access journal that publishes original research, reviews and short communications in the fields of chemistry in an ongoing way. The central goal is to provide a hub for researchers working across all subjects to present their discoveries, and to be a forum for the discussion of the important issues in the field. The journal is the premier source for cutting edge research in fundamental chemistry and it provides high quality peer review services for its authors across the world. Moreover, it allows for libraries everywhere to avoid subscribing to multiple local publications, and to receive instead all the necessary chemistry research from a single source available to the entire scientific community.
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