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基于内质网应激探究中医药防治心力衰竭
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Abstract:
近年来,心力衰竭的患病人数逐年增加,对于人们生活质量产生严重影响,研究发现内质网应激在心力衰竭的发生发展中产生重要作用,一方面,内质网应激可以促进心血管疾病向心力衰竭的转变;另一方面,内质网应激会加重心力衰竭的严重程度。中医药在治疗心力衰竭、改善患者预后方面具有显著疗效,对于内质网应激的调控也有显著作用,可以通过改善其相应感受器通路的表达来缓解内质网应激,下调未折叠蛋白反应,减少心肌细胞凋亡,延缓心力衰竭进程。
In recent years, the number of patients with heart failure has increased year by year, which has a serious impact on people’s quality of life, and studies have found that endoplasmic reticulum stress plays an important role in the occurrence and development of heart failure. On the one hand, endoplasmic reticulum stress can promote the transition of cardiovascular disease to heart failure, on the other hand, endoplasmic reticulum stress can exacerbate the severity of heart failure. Traditional Chinese medicine (TCM) has significant efficacy in the treatment of heart failure and the prognosis of patients, and also plays a significant role in the regulation of endoplasmic reticulum stress, which can alleviate endoplasmic reticulum stress by improving the expression of its corresponding receptor pathways, down-regulate the unfolded protein response, reduce cardiomyocyte apoptosis, and delay the process of heart failure.
[1] | Ziaeian, B. and Fonarow, G.C. (2016) Epidemiology and Aetiology of Heart Failure. Nature Reviews Cardiology, 13, 368-378. https://doi.org/10.1038/nrcardio.2016.25 |
[2] | Zhang, Y., Zhang, J., Butler, J., Yang, X., Xie, P., Guo, D., Wei, T., Yu, J., Wu, Z., Gao, Y., Han, X., Zhang, X., Wen, S., Anker, S.D., Filippatos, G., Fonarow, G.C., Gan, T. and Zhang, R. (2017) Contemporary Epidemiology, Management, and Outcomes of Patients Hospitalized for Heart Failure in China: Results from the China Heart Failure (China-HF) Registry. Journal of Cardiac Failure, 23, 868-875. https://doi.org/10.1016/j.cardfail.2017.09.014 |
[3] | 国家心血管病中心. 中国心血管健康与疾病报告[M]. 北京: 科学出版社, 2021. |
[4] | Almanza, A., Carlesso, A., Chintha, C., et al. (2019) Endoplasmic Reticulum Stress Signalling—From Basic Mechanisms to Clinical Applications. The FEBS Journal, 286, 241-278. https://doi.org/10.1111/febs.14608 |
[5] | Alberts, B., Johnson, A., Lewis, J., Raff, M., Roberts, K. and Walter, P. (2002) Molecular Biology of the Cell. 4th Edition, Garland Science, New York. |
[6] | Schr?der, M. (2008) Endoplasmic Reticulum Stress Responses. Cellular and Molecular Life Sciences, 65, 862-894. https://doi.org/10.1007/s00018-007-7383-5 |
[7] | Hetz, C. (2012) The Unfolded Protein Response: Controlling Cell Fate Decisions under ER Stress and Beyond. Nature Reviews Molecular Cell Biology, 13, 89-102. https://doi.org/10.1038/nrm3270 |
[8] | Hanahan, D. and Weinberg, R.A. (2011) Hallmarks of Cancer: The Next Generation. Cell, 144, 646-674. https://doi.org/10.1016/j.cell.2011.02.013 |
[9] | Holderfield, M., Deuker, M.M., Mccormick, F. and Mcmahon, M. (2014) Targeting RAF Kinases for Cancer Therapy: BRAF Mutated Melanoma and Beyond. Nature Reviews Cancer, 14, 455-467. https://doi.org/10.1038/nrc3760 |
[10] | Nishimura, A.L., Mitne-Neto, M., Silva, H.C.A., Richieri-Costa, A., Middleton, S., Cascio, D., Kok, F., Oliveira, J.R.M., Gillingwater, T., Webb, J., et al. (2004) A Mutation in the Vesicle-Trafficking Protein VAPB Causes Late-Onset Spinal Muscular Atrophy and Amyotrophic Lateral Sclerosis. American Journal of Human Genetics, 75, 822-831. https://doi.org/10.1086/425287 |
[11] | Harding, H.P. and Ron, D. (2002) Endoplasmic Reticulum Stress and the Development of Diabetes: A Review. Diabetes, 51, S455-S461. https://doi.org/10.2337/diabetes.51.2007.S455 |
[12] | Olden, K., Pratt, R.M., Jaworski, C. and Yamada, K.M. (1979) Evidence for Role of Glycoprotein Carbohydrates in Membrane Transport: Specific Inhibition by Tunicamycin. Proceedings of the National Academy of Sciences of the United States of America, 76, 791-795. https://doi.org/10.1073/pnas.76.2.791 |
[13] | Datema, R. and Schwarz, R.T. (1979) Interference with Glycosylation of Glycoproteins. Inhibition of Formation of Lipid-Linked Oligosaccharides in vivo. Biochemical Journal, 184, 113-123. https://doi.org/10.1042/bj1840113 |
[14] | Cleland, W.W. (1964) Dithiothreitol, a New Protective Reagent for SH Groups. Biochemistry, 3, 480-482. https://doi.org/10.1021/bi00892a002 |
[15] | Malo, A., Krüger, B., G?ke, B. and Kubisch, C.H. (2013) 4-Phenylbutyric Acid Reduces Endoplasmic Reticulum Stress, Trypsin Activation, and Acinar Cell Apoptosis While Increasing Secretion in Rat Pancreatic Acini. Pancreas, 42, 92-101. https://doi.org/10.1097/MPA.0b013e318259f6ca |
[16] | Lee, Y.Y., Hong, S.H., Lee, Y.J., Chung, S.S., Jung, H.S., Park, S.G. and Park, K.S. (2010) Tauroursodeoxycholate (TUDCA), Chemical Chaperone, Enhances Function of Islets by Reducing ER Stress. Biochemical and Biophysical Research Communications, 397, 735-739. https://doi.org/10.1016/j.bbrc.2010.06.022 |
[17] | Giampietri, C., Petrungaro, S., Conti, S., Facchiano, A., Filippini, A. and Ziparo, E. (2015) Cancer Microenvironment and Endoplasmic Reticulum Stress Response. Mediators of Inflammation, 2015, Article ID: 417281. https://doi.org/10.1155/2015/417281 |
[18] | Schr?der, M. and Kaufman, R.J. (2005) The Mammalian Unfolded Protein Response. Annual Review of Biochemistry, 74, 739-789. https://doi.org/10.1146/annurev.biochem.73.011303.074134 |
[19] | Tang, Q., Liu, Q., Li, Y., et al. (2023) CRELD2, Endoplasmic Reticulum Stress, and Human Diseases. Frontiers in Endocrinology, 14, Article 1117414. https://doi.org/10.3389/fendo.2023.1117414 |
[20] | Walter, P. and Ron, D. (2011) The Unfolded Protein Response: From Stress Pathway to Homeostatic Regulation. Science, 334, 1081-1086. https://doi.org/10.1126/science.1209038 |
[21] | Winnay, J.N., Solheim, M.H., Sakaguchi, M., et al. (2020) Inhibition of the PI 3-Kinase Pathway Disrupts the Unfolded Protein Response and Reduces Sensitivity to ER Stress-Dependent Apoptosis. The FASEB Journal, 34, 12521-12532. https://doi.org/10.1096/fj.202000892R |
[22] | Nishida, T., Hattori, K. and Watanabe, K. (2017) The Regulatory and Signaling Mechanisms of the ASK Family. Advances in Biological Regulation, 66, 2-22. https://doi.org/10.1016/j.jbior.2017.05.004 |
[23] | Harding, H.P., Zhang, Y. and Ron, D. (1999) Protein Translation and Folding Are Coupled by an Endoplasmic-Reticulum-Resident Kinase. Nature, 397, 271-274. https://doi.org/10.1038/16729 |
[24] | Liu, C.Y., Schroder, M. and Kaufman, R.J. (2000) Ligand-Independent Dimerization Activates the Stress Response Kinases IRE1 and PERK in the Lumen of the Endoplasmic Reticulum. Journal of Biological Chemistry, 275, 24881-24885. https://doi.org/10.1074/jbc.M004454200 |
[25] | Harding, H.P., Novoa, I., Zhang, Y., et al. (2000) Regulated Translation Initiation Controls Stress-Induced Gene Expression in Mammalian Cells. Molecular Cell, 6, 1099-1108. https://doi.org/10.1016/S1097-2765(00)00108-8 |
[26] | Schindler, A.J. and Schekman, R. (2009) In vitro Reconstitution of ER-Stress Induced ATF6 Transport in COPII Vesicles. Proceedings of the National Academy of Sciences of the United States of America, 106, 17775-17780. https://doi.org/10.1073/pnas.0910342106 |
[27] | 吉登仁, 齐永芬. 内质网应激与心血管疾病关系的研究进展[J]. 生理学报, 2020, 72(2): 190-204. |
[28] | 滕旭, 齐永芬, 唐朝枢. 内质网应激与心脏疾病[J]. 生理科学进展, 2009, 40(2): 106-110. |
[29] | Okada, K.-I., Minamino, T., Tsukamoto, Y., et al. (2004) Prolonged Endoplasmic Reticulum Stress in Hypertrophic and Failing Heart after Aortic Constriction: Possible Contribution of Endoplasmic Reticulum Stress to Cardiac Myocyte Apoptosis. Circulation, 110, 705-712. https://doi.org/10.1161/01.CIR.0000137836.95625.D4 |
[30] | Liu, X., Kwak, D., Lu, Z., Xu, X., Fassett, J., Wang, H., Wei, Y., Cavener, D.R., Hu, X., Hall, J., Bache, R.J. and Chen, Y. (2014) Endoplasmic Reticulum Stress Sensor Protein Kinase R-Like Endoplasmic Reticulum Kinase (PERK) Protects against Pressure Overload-Induced Heart Failure and Lung Remodeling. Hypertension, 64, 738-744. https://doi.org/10.1161/HYPERTENSIONAHA.114.03811 |
[31] | 祝慧, 李昕玺, 商雪, 等. 沙库巴曲缬沙坦对不同类型心力衰竭患者疗效及安全性的Meta分析[J]. 中国现代医药杂志, 2023, 25(4): 38-44. |
[32] | 赵千增, 赵振群, 刘万林. 激素性股骨头缺血坏死过程中内质网应激调控自噬与凋亡的作用[J]. 中国组织工程研究, 2021, 25(29): 4685-4690. |
[33] | 王晓燕. 心衰Ⅰ号治疗慢性心力衰竭大鼠的作用和机制研究[D]: [硕士学位论文]. 南京: 南京中医药大学, 2017. |
[34] | 崔杰, 李萍, 程晓曙. 内质网应激的调控及其与心血管疾病的干预前景[J]. 中华心脏与心律电子杂志, 2014, 2(2): 55-57. |
[35] | 徐磊, 张双, 胡厚祥. 内质网应激与心血管疾病[J]. 国际心血管病杂志, 2013, 40(5): 288-290. |
[36] | Liu, M., Xue, M., Wang, X.-R., et al. (2015) Panax Quinquefolium Saponin Attenuates Cardiomyocyte Apoptosis Induced by Thapsigargin through Inhibition of Endoplasmic Reticulum Stress. Journal of Geriatric Cardiology, 12, 540-546. |
[37] | 叶婷. 强心胶囊对慢性心力衰竭大鼠内质网应激PERK-eIF2α通路影响的研究[D]: [博士学位论文]. 哈尔滨: 黑龙江中医药大学, 2016. |
[38] | 李璐, 蔡志亮, 贺翼飞, 等. 内质网应激在黄芪甲苷诱导的心肌线粒体保护中的作用[J]. 中国药理学通报, 2017, 33(6): 854-858. |
[39] | 张思泉, 帅瑜, 张莹雯, 等. 当归补血汤对内质网应激特有Caspase-12凋亡途径影响[J]. 辽宁中医药大学学报, 2018, 20(3): 20-24. |
[40] | Lou, L.-X., Wu, A.-M., Zhang, D.-M., et al. (2014) Yiqi Huoxue Recipe Improves Heart Function through Inhibiting Apoptosis Related to Endoplasmic Reticulum Stress in Myocardial Infarction Model of Rats. Evidence-Based Complementary and Alternative Medicine, 2014, Article ID: 745919. https://doi.org/10.1155/2014/745919 |
[41] | Chen, Y., Tang, Y., Xiang, Y., et al. (2015) Shengmai Injection Improved Doxorubicin-Induced Cardiomyopathy by Alleviating Myocardial Endoplasmic Reticulum Stress and Caspase-12 Dependent Apoptosis. Biomed Research International, 2015, Article ID: 952671. https://doi.org/10.1155/2015/952671 |