首页> 美国卫生研究院文献>Drug Delivery >Combined treatment with ultrasound-targeted microbubble destruction technique and NM-aFGF-loaded PEG-nanoliposomes protects against diabetic cardiomyopathy-induced oxidative stress by activating the AKT/GSK-3β1/Nrf-2 pathway
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Combined treatment with ultrasound-targeted microbubble destruction technique and NM-aFGF-loaded PEG-nanoliposomes protects against diabetic cardiomyopathy-induced oxidative stress by activating the AKT/GSK-3β1/Nrf-2 pathway

机译:通过激活AKT / GSK-3β1/ NRF-2途径用超声靶向微泡破坏技术和NM-AFGF负载的PEG纳米脂质体的组合治疗通过激活AKT / GSK-3β1/ NRF-2途径来保护糖尿病心肌病引起的氧化应激

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摘要

The present study sought to investigate the effect of non-mitogenic acidic fibroblast growth factor (NM-aFGF) loaded PEGylated nanoliposomes (NM-aFGF-PEG-lips) combined with the ultrasound-targeted microbubble destruction (UTMD) technique on modulating diabetic cardiomyopathy (DCM)and the mechanism involved. Animal studies showed that the diabetes mellitus (DM) group exhibited typical myocardial structural and functional changes of DCM. The indexes from the transthoracic echocardiography showed that the left ventricular function in the NM-aFGF-PEG-lips + UTMD group was significantly improved compared with the DM group. Histopathological observation further confirmed that the cardiomyocyte structural abnormalities and mitochondria ultrastructural changes were also significantly improved in the NM-aFGF-PEG-lips + UTMD group compared with DM group. The cardiac volume fraction (CVF) and apoptosis index in the NM-aFGF-PEG-lips + UTMD group decreased to 10.31 ± 0.76% and 2.16 ± 0.34, respectively, compared with those in the DM group (CVF = 21.4 ± 2.32, apoptosis index = 11.51 ± 1.24%). Moreover, we also found significantly increased superoxide dismutase (SOD) activity and glutathione peroxidase (GSH-Px) activity as well as clearly decreased lipid hydroperoxide levels and malondialdehyde (MDA) activity in the NM-aFGF-PEG-lips + UTMD group compared with those in the DM group (p < .05). Western blot analysis further revealed the highest level of NM-aFGF, p-AKT, p-GSK-3β1, Nrf-2, SOD2 and NQO1 in the NM-aFGF-PEG-lips + UTMD group. This study confirmed using PEGylated nanoliposomes combined with the UTMD technique can effectively deliver NM-aFGF to the cardiac tissue of diabetic rats. The NM-aFGF can then inhibit myocardial oxidative stress damage due to DM by activating the AKT/GSK/Nrf-2 signaling pathway, which ultimately improved the myocardial structural and functional lesions in diabetic rats.
机译:本研究寻求研究非促丝酸酯酸性成纤维细胞生长因子(NM-AFGF)负载的聚乙二醇化纳米体(NM-AFGF-PEG-嘴唇)与超声靶向微泡破坏(UTMD)技术在调节糖尿病心肌病上( DCM)和所涉及的机制。动物研究表明,糖尿病(DM)组表现出DCM的典型心肌结构和功能变化。与DM组相比,来自Transthorace超声心动图的指标显示NM-AFGF-PEG-LIPS + UTMD组中的左心室功能显着改善。组织病理学观察进一步证实,与DM组相比,NM-AFGF-PEG-LIPS + UTMD组在NM-AFGF-PEG-LIPS + UTMD组中的心肌细胞结构异常和线粒体超微结构变化也显着改善。与DM组中的那些(CVF = 21.4±2.32,细胞凋亡相比,NM-AFGF-PEG-LIPS + UTMD组中的心脏体积分数(CVF)和凋亡指数分别降至10.31±0.76%和2.16±0.34.16±0.34(细胞凋亡)索引= 11.51±1.24%)。此外,我们还发现显着增加的超氧化物歧化酶(SOD)活性和谷胱甘肽过氧化物酶(GSH-PX)活性以及NM-AFGF-PEG-LIPS + UTMD组中的脂质氢过氧化物水平和丙二醛(MDA)活性的明显降低DM组中的那些(p <.05)。 Western印迹分析进一步揭示了NM-AFGF-PEG-LIPS + UTMD组中NM-AFGF,P-AKT,P-GSK-3β1,NRF-2,SOD 2和NQO1的最高水平。使用聚乙二醇化纳米吡咯与UTMD技术合并的该研究可以有效地将NM-AFGF递送至糖尿病大鼠的心脏组织。然后,通过激活AKT / GSK / NRF-2信号传导途径,NM-AFGF可以通过DM抑制心肌氧化应激损伤,这最终改善了糖尿病大鼠心肌结构和功能性病变。

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