硫化氢对急性病毒性心肌炎小鼠心肌细胞凋亡的保护作用
Hydrogen Sulfide Confers Cardioprotection through Anti-Apoptotic Effect in Acute Viral Myocarditis
DOI: 10.12677/HJBM.2016.62002, PDF, HTML, XML, 下载: 2,180  浏览: 4,912  国家自然科学基金支持
作者: 杨翠平*, 钟 飞, 李双杰, 王 佐:吉首大学医学院,湖南 吉首
关键词: 硫化氢急性病毒性心肌炎细胞凋亡Hydrogen Sulfide Actue Viral Myocarditis Apoptosis
摘要: 目的:探讨硫化氢(H2S)对CVB3诱导的急性病毒性心肌炎(Acute Viral Myocarditis, AVMC) Balb/c小鼠心肌细胞抗凋亡的保护作用。方法:将50只4周龄雄性Balb/c小鼠随机分为正常对照组(N组)、病毒感染组(C组)、硫化氢治疗组(H组),C、H组小鼠腹腔反复接种0.2 mL内含柯萨奇病毒B3(CVB3)的1640培养液建立VMC模型,H组病毒感染同时腹腔注射50 μmol/kg NaHS,N组腹腔无菌注射等量生理盐水,1次/d,连续7天。动态观察记录实验期间各组小鼠一般情况,各组小鼠死亡数,绘制生存曲线进行生存分析;各组小鼠于第7天全部处死称重(BM),取心脏称重(HM),计算HM/BM;心肌HE染色后光镜下观察心肌病理改变并计算心肌病理积分;TUNEI法检测心肌细胞凋亡情况并计算心肌凋亡指数;Western Blot 法检测心肌细胞凋亡相关蛋白p53、Bax、Bcl-2、caspase-3的表达情况。结果:与N组相比,C组HM/BM比值增大、心肌病理积分较对照组明显增加,促凋亡蛋白p53、Bax表达水平增加,抑凋亡蛋白Bcl-2表达水平下降,caspase-3表达活性显著增加(p < 0.05)。在NaHS治疗后,H组与C组相比,H组的心肌病理积分明显降低,促凋亡蛋白p53、Bax表达水平明显下调,抑凋亡蛋白Bcl-2表达水平上调,caspase-3活性明显降低(p < 0.05)。结论:NaHS可提高VMC小鼠的存活率、降低心肌病理积分、减少心肌细胞凋亡数,并通过调节凋亡相关蛋白p53、Bax、Bcl-2、caspase-3表达抑制心肌细胞凋亡,从而起到保护VMC小鼠心肌的作用。
Abstract: Objective: To explore the cardiomyocytes anti-apoptosis effect of Hydrogen Sulfide (H2S) on CVB3- induced Acute Viral Myocarditis (AVMC) Balb/c mice. Methods: 50 male 4 - 5-week-old Balb/c mice were randomly divided into three groups, including group N (control group, n = 10), group C (CVB3 virus control group, n = 20), and group H (NaHS treatment group, n = 20). Mice in groups C and H were repeatedly inoculated with 0.2 mL 1640 medium containing Coxsackie Virus B3 (CVB3) to build VMC model; at the same time, mice in group H were intraperitoneally injected with 50 mol/kg NaHS; and mice in group H were received intraperitoneal injection of the same amount of normal saline, 1 time/d, for 7 consecutive days. We observed and recorded the symptoms and the survival situation of mice in each group within 7 days, counted the number of live mice at different time points and did analysis about survival rate of each group. We removed dead mice’s hearts after 7 days, weighed them, calculated the HM/BM, observed the pathology change of myocardial cells, calculated myocardial histopathologic score through HE staining, and detected the myocardial apoptosis by TUNEL, and the expression of p53, Bax, Bcl-2, caspase-3 related to apoptotic by Western Blot. Results: Compared with group N, the expression of p53 protein, and Bax protein in group C significantly increased; the expression of caspase-3 protein activity significantly increased; the expression of Bcl-2 protein reduced (p < 0.05). After injecting NaHS to group H, compared with group C, the expression of p53 protein reduced; the expression of Bax protein reduced; the expression of Bcl-2 protein was significantly higher than group C; the expression of caspase-3 protein activity significantly reduced (p < 0.05). Conclusion: These observations suggest that NaHS confers cardioprotection through increasing the survival rate of mice, reducing myocardial pathological scores and myocardial cell apoptosis, and regulating the apoptosis-related proteins p53, Bax, Bcl-2, caspase-3, and inhibition of cardiomyocyte apoptosis effect in acute viral myocarditis.
文章引用:杨翠平, 钟飞, 李双杰, 王佐. 硫化氢对急性病毒性心肌炎小鼠心肌细胞凋亡的保护作用[J]. 生物医学, 2016, 6(2): 7-16. http://dx.doi.org/10.12677/HJBM.2016.62002

参考文献

[1] Tischner, D., Woess, C., Ottina, E., et al. (2010) Bcl-2-Regulated Cell Death Signaling in the Prevention of Autoimmunity. Cell Death D, 1, e48.
http://dx.doi.org/10.1038/cddis.2010.27
[2] Reddy, J., Massilamany, C., Buskkiewicz, I., et al. (2013) Autoimmunity in Viral Myocarditis. Current Opinion in Rheumatology, 25, 502-508.
http://dx.doi.org/10.1097/BOR.0b013e3283620036
[3] Mason, J.W. (2003) Myocarditis and Dilated Cardiomyopathy: An Inflammatory Link. Cardiovascular Research, 60, 5-10.
http://dx.doi.org/10.1016/S0008-6363(03)00437-1
[4] Air, P., Kontorovich, A.R., Valentin, F. and William, D.G. (2015) Viral Myocarditis-Diagnosis Treatment Options, and Current Controversies. Nature Reviews Cardiology, 12, 670-680.
http://dx.doi.org/10.1038/nrcardio.2015.108
[5] Sachin, G., Markham, D.W., Drazner, M.H., et al. (2000) Fulminant Myocarditis. Nature Clinical Practice Cardiovascular Medicine, 343, 693-706.
[6] Abbate, A., Sinagra, G., Bussani, R., et al. (2009) Apoptosis in Patients with Acute Myocarditis. American Journal of Cardiology, 32, 388-390.
http://dx.doi.org/10.1016/j.amjcard.2009.05.041
[7] 张召才, 李双杰, 杨英珍, 等. 病毒性心脏病小鼠心肌细胞凋亡的动态变化[J]. 复旦学报(医学版), 2005, 32(4): 388-390.
[8] 陈雯, 谢晓华. 新型气体信号分子硫化氢的研究进展[J]. 医学综述, 2008, 14(24): 3704-3709.
[9] 李钢, 杨双强. 气体信号分子硫化氢与心肌保护的研究进展[J]. 西部医学, 2011, 23(3): 591-594.
[10] Saraste, A., Arola, A., Vuorinen, T., et al. (2003) Cardiomyopathy Apoptosis Experimental Coxsackie—Virus B3 Myocarditis. Cardiovascular Pathology, 12, 255-262.
[11] 张建新, 丁艳艳, 李兰芳, 刘芳, 张勤增, 解丽君, 郝娜. 硫化氢对急性缺血所致心肌细胞凋亡的影响[J]. 中国药理学通报, 2012, 28(11): 1602-1606.
[12] Jeffers, J.R., Parganas, E., Lee, Y., et al. (2003) Puma Is an Essential Mediator of p53-Dependent and -Independent Apoptotic Pathways. Cancer Cell, 4, 321-328.
http://dx.doi.org/10.1016/S1535-6108(03)00244-7
[13] Rezkalla, S., Kloner, R.A., Khatib, G., et al. (1988) Effect of Metoprolol in Acute Coxsackievirus B3 Murine Myocarditis. Journal of the American College of Cardiology, 12, 412-414.
http://dx.doi.org/10.1016/0735-1097(88)90414-7
[14] Lavu, M., Bhushan, S. and Lefer, D.J. (2011) Hydrogen Sulfide-Mediated Cardioprotection: Mechanisms and Therapeutic Potential. Clinical Science (London), 120, 219-229.
http://dx.doi.org/10.1042/CS20100462
[15] Fan, H., Guo, Y., Liang, X., et al. (2013) Hydrogen Sulfide Protects against Amyloid Beta-Peptide Induced Neuronal Injury via Attenuating Inflammatory Responses in a Rat Model. Biomedical Research, 27, 296-304.
http://dx.doi.org/10.7555/JBR.27.20120100
[16] Chattopadhyay, M., Kodela, R., Nath, N., et al. (2012) Hydrogen Sulfide-Releasing Aspirin Suppresses NF-KappaB Signaling in Estrogen Receptor Negative Breast Cancer Cells in Vitro and in Vivo. Biochemical Pharmacology, 83, 723-732.
http://dx.doi.org/10.1016/j.bcp.2011.12.019
[17] Benetti, L.R., Campos, D., Gurgueira, S.A., et al. (2013) Hydrogen Sulfide Inhibits Oxidative Stress in Lungs from Allergic Mice in Vivo. European Journal of Pharmacology, 698, 463-469.
http://dx.doi.org/10.1016/j.ejphar.2012.11.025
[18] 廖峰, 郑扬, 耿彬. 硫化氢——新的心脏保护因子[J]. 生理科学进展, 2012, 43(2): 111-114.
[19] 张友恩, 葛均波. 硫化氢抑制炎症反应和凋亡在心肌缺血损伤中的作用与机制研究[D]: [博士学位论文]. 上海:复旦大学中山医院, 2014.
[20] 花旺, 姜剑斌, 荣星, 等. 胱硫醚-γ-裂解酶/硫化氢通路在小鼠病毒性心肌炎中的表达[J]. 中国当代儿科杂志, 2010, 12(9): 744-748.
[21] 钱红, 刘理静. 硫化氢对试验性病毒性心肌炎小鼠的保护作用及其机制[J]. 细胞与分子免疫学杂志, 2014, 7(30): 708-712.
[22] 白景玉, 张烁, 卢少玲. 病毒性心肌炎的发病机制[J]. 心血管康复医学杂志, 2015, 24(5): 585-587.
[23] 刘旭杰, 柳德学. 参松养心胶囊对病毒性心肌炎小鼠模型心肌细胞凋及其调控基因的影响[J]. 中医研究, 2010, 23(9): 21-24.
[24] 韩波, 马沛然, 韩秀珍, 等. Bcl-2和Bax基因产物在小鼠柯萨奇病毒性心肌炎心肌组织中的表达[J]. 实用儿科临床杂志, 2003, 18(7): 513-515.
[25] 李双杰, 钟飞, 张召才, 等. 病毒性心肌疾病的基因时空表达特征[J]. 吉首大学学报(自然科学版), 2008, 29(6): 107-111.
[26] 孟楠, 刘芳. 心炎宁颗粒剂对病毒性心肌炎小鼠心肌细胞凋亡相关基因表达的影响[D]: [硕士学位论文]. 沈阳:辽宁中医药大学, 2013.
[27] 张芸娟, 董湘玉. 半胱天冬氨酸蛋白酶-3与病毒性心肌炎心肌细胞凋亡[J]. 儿科药学杂志, 2016, 22(1): 55-57.