Suppr超能文献

地尔硫䓬通过 MEK 防止高 KCl 心脏停搏液诱导的 H9c2 心肌细胞凋亡。

Dilong prevents the high-KCl cardioplegic solution administration-induced apoptosis in H9c2 cardiomyoblast cells mediated by MEK.

机构信息

Department of Health and Nutrition Biotechnology, Asia University, Taichung, Taiwan.

出版信息

Am J Chin Med. 2014;42(6):1507-19. doi: 10.1142/S0192415X14500943.

Abstract

Infusion of high-KCl cardioplegic solution (High-KCS) is the most common method used to induce asystole before cardiac surgery. However, our previous study showed the High-KCS can cause the apoptosis of cardiomyocytes in patients who were administered High-KCS prior to undergoing coronary artery bypass graft (CABG) to treat coronary artery disease (CAD). Therefore, it is urgent today to find a complementary medicine to reduce this damage. Dilong (earthworm) has been used as a traditional medicine in China for several thousand years, and extract from the dilong has been empirically used in Asia for the treatment of vascular disorders. In this study, we applied dilong extract to reduce myocardial cell damage from High-KCS infusion and further investigated the mechanisms. H9c2 cardiomyoblast cells were cultured in serum-free medium for 4 h and then treated with dilong at 31.25, 62.5, 125, and 250 mg/mL for 24 h, which was then followed by High-KCS treatment for 3 h to detect the protective mechanisms of dilong behind cardiomyocyte apoptosis and cardiac fibrosis. Cells were harvested for MTT assay, TUNEL assay, and western blot analysis. We found that High-KCS-induced cardiomyocyte apoptosis, enhanced the protein level of pro-apoptotic Bad, released cytochrome c, and activated caspase-3 in H9c2 cells. The IGF-I/IGF-IR/ERK pathway involved in non-cardiomyocyte proliferation, and the expression/activation of uPA, Sp-1 and CTGF, which are implicated in the development of cardiac fibrosis were up-regulated, but the Akt for cardiomyocyte survival was greatly deactivated in postcardioplegic H9c2 cardiomyoblast cells. However, dilong was highly protective and totally reversed the apoptosis and cardiac fibrosis effects induced by High-KCS. Chemical inhibitors P38 (SB203580), JNK (SP600125), MEK (U0126), IGF-1 (AG1024), and PI3K (LY294002) were applied to investigate which is the mediator for dilong attenuated High-KCS stimulated caspase 3 activation. MEK (U0126) inhibitor completely blocked dilong inhibited caspase 3 activation in High-KCS treated H9c2 cells. The MEK siRNA was further applied to knockdown MEK to confirm our finding. We found dilong worked through MEK to inhibit caspase 3 activity induced by High-KCS in H9c2 cells. Furthermore, we used the pure component of dilong, Lumbrokinase, to block the High-KCS effect. Using the microscope to observe the cell viability, we found Lumbrokinase could reverse the High-KCS effect. Lumbrokinase could also reduce the protein levels of caspase 8, caspase 9, and caspase 3, and enhance the survival related proteins PI3K/Akt and Bcl2. These results demonstrate that dilong could be used as a potential agent to block the side effects caused by High-KCS in CABG surgery patients.

摘要

高钾停搏液(High-KCS)的输注是心脏手术前诱导心脏停搏最常用的方法。然而,我们之前的研究表明,高钾停搏液可引起接受冠状动脉旁路移植术(CABG)治疗冠心病患者的心肌细胞凋亡。因此,今天迫切需要找到一种互补药物来减少这种损伤。地龙(蚯蚓)在中国已被用作传统药物数千年,地龙提取物已在亚洲被经验性地用于治疗血管疾病。在这项研究中,我们应用地龙提取物来减少高钾停搏液输注引起的心肌细胞损伤,并进一步研究其机制。将 H9c2 心肌细胞在无血清培养基中培养 4 小时,然后用 31.25、62.5、125 和 250mg/mL 的地龙处理 24 小时,然后用高钾停搏液处理 3 小时,以检测地龙对心肌细胞凋亡和心脏纤维化的保护机制。收集细胞进行 MTT 测定、TUNEL 测定和 Western blot 分析。我们发现,高钾停搏液诱导的心肌细胞凋亡增强了促凋亡 Bad 的蛋白水平,释放了细胞色素 c,并激活了 H9c2 细胞中的 caspase-3。IGF-I/IGF-IR/ERK 通路参与非心肌细胞增殖,uPA、Sp-1 和 CTGF 的表达/激活,这些都与心脏纤维化的发展有关,在心脏停搏后的 H9c2 心肌细胞中上调,但 Akt 对心肌细胞的存活有很大的失活。然而,地龙具有高度的保护作用,完全逆转了高钾停搏液诱导的细胞凋亡和心脏纤维化作用。应用化学抑制剂 P38(SB203580)、JNK(SP600125)、MEK(U0126)、IGF-1(AG1024)和 PI3K(LY294002)来研究地龙减弱高钾停搏液刺激 caspase 3 激活的介质。MEK(U0126)抑制剂完全阻断了地龙抑制高钾停搏液处理的 H9c2 细胞中 caspase 3 的激活。进一步应用 MEK siRNA 敲低 MEK 以证实我们的发现。我们发现地龙通过 MEK 抑制高钾停搏液诱导的 H9c2 细胞中 caspase 3 的活性。此外,我们使用地龙的纯成分蚓激酶来阻断高钾停搏液的作用。通过显微镜观察细胞活力,我们发现蚓激酶可以逆转高钾停搏液的作用。蚓激酶还可以降低半胱天冬酶 8、9 和 3 的蛋白水平,并增强与存活相关的蛋白 PI3K/Akt 和 Bcl2。这些结果表明,地龙可用作阻断 CABG 手术患者高钾停搏液引起的副作用的潜在药物。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验