Main active components of Si-Miao-Yong-An decoction (SMYAD) attenuate autophagy and apoptosis via the PDE5A-AKT and TLR4-NOX4 pathways in isoproterenol (ISO)-induced heart failure models
Tài liệu tham khảo
Oka, 2014, Angiogenesis and cardiac hypertrophy: maintenance of cardiac function and causative roles in heart failure, Circ. Res., 114, 565, 10.1161/CIRCRESAHA.114.300507
Bacmeister, 2019, Inflammation and fibrosis in murine models of heart failure, Basic Res. Cardiol., 114, 19, 10.1007/s00395-019-0722-5
Benjamin, 2019, Heart disease and stroke statistics-2019 update: a report from the American Heart Association, Circulation, 139, e56, 10.1161/CIR.0000000000000659
Corsetti, 2021, How can malnutrition affect autophagy in chronic heart failure? Focus and perspectives, Int. J. Mol. Sci., 22, 10.3390/ijms22073332
Du, 2020, Autophagy and heart failure, Adv. Exp. Med. Biol., 1207, 223, 10.1007/978-981-15-4272-5_16
Fan, 2019, Qi-Li-Qiang-Xin alleviates isoproterenol-induced myocardial injury by inhibiting excessive autophagy activating AKT/mTOR pathway, Front. Pharmacol., 10, 1329, 10.3389/fphar.2019.01329
Liu, 2018, Curcumin alleviates isoproterenol-induced cardiac hypertrophy and fibrosis through inhibition of autophagy and activation of mTOR, Eur. Rev. Med. Pharmacol. Sci., 22, 7500
Li, 2020, Taurine attenuates isoproterenol-induced H9C2 cardiomyocytes hypertrophy by improving antioxidative ability and inhibiting calpain-1-mediated apoptosis, Mol. Cell. Biochem., 469, 119, 10.1007/s11010-020-03733-7
Thangaiyan, 2018, Preventive effect of apigenin against isoproterenol-induced apoptosis in cardiomyoblasts, J. Biochem. Mol. Toxicol., 32, 10.1002/jbt.22213
Kumari, 2020, Musa balbisiana fruit rich in polyphenols attenuates isoproterenol-induced cardiac hypertrophy in rats via inhibition of inflammation and oxidative stress, Oxid. Med. Cell. Longev., 2020, 10.1155/2020/7147498
Chiu, 2017, Autophagy-inflammasome interplay in heart failure: a systematic review on basics, pathways, and therapeutic perspectives, Ann. Clin. Lab. Sci., 47, 243
Yu, 2019, Traditional Chinese medicine use in the treatment of acute heart failure in western medicine hospitals in china: analysis from the China PEACE Retrospective Heart Failure Study, J. Am. Heart Assoc., 8, 10.1161/JAHA.119.012776
Seto, 2018, Chinese herbal medicine as a potential treatment of abdominal aortic aneurysm, Front. Cardiovasc. Med., 5, 33, 10.3389/fcvm.2018.00033
Zhao, 2020, Dissection of mechanisms of Chinese medicinal formula Si-Miao-Yong-an decoction protects against cardiac hypertrophy and fibrosis in isoprenaline-induced heart failure, J. Ethnopharmacol., 248, 10.1016/j.jep.2019.112050
Ren, 2019, Si-Miao-Yong-An decoction ameliorates cardiac function through restoring the equilibrium of SOD and NOX2 in heart failure mice, Pharmacol. Res., 146, 10.1016/j.phrs.2019.104318
Su, 2020, Si-Miao-Yong-An decoction attenuates cardiac fibrosis via suppressing TGF-β1 pathway and interfering with MMP-TIMPs expression, Biomed. Pharmacother., 127, 10.1016/j.biopha.2020.110132
Su, 2019, Si-Miao-Yong-an decoction protects against cardiac hypertrophy and dysfunction by inhibiting platelet aggregation and activation, Front. Pharmacol., 10, 990, 10.3389/fphar.2019.00990
Li, 2020, Si-Miao-Yong-An decoction preserves cardiac function and regulates GLC/AMPK/NF-κB and GLC/PPARα/PGC-1α pathways in diabetic mice, Biomed. Pharmacother., 132, 10.1016/j.biopha.2020.110817
Wang, 2016, Protective effect of bioactive compounds from Lonicera japonica Thunb. against H2O2-induced cytotoxicity using neonatal rat cardiomyocytes, Iran. J. Basic Med. Sci., 19, 97
Jeong, 2009, Rutin from Lonicera japonica inhibits myocardial ischemia/reperfusion-induced apoptosis in vivo and protects H9C2 cells against hydrogen peroxide-mediated injury via ERK1/2 and PI3K/Akt signals in vitro, Food Chem. Toxicol., 47, 1569, 10.1016/j.fct.2009.03.044
Huang, 2012, Effects of ethanolic extract from Radix Scrophulariae on ventricular remodeling in rats, Phytomed. Int. J. Phytother. Phytopharmacol., 19, 193
Huang, 2014, Protective effect of Danggui (Radix Angelicae Sinensis) on angiotensin II-induced apoptosis in H9C2 cardiomyoblast cells, BMC Complement. Altern. Med., 14, 358, 10.1186/1472-6882-14-358
Ma, 2016, Protection against cardiac hypertrophy by geniposide involves the GLP-1 receptor / AMPKα signalling pathway, Br. J. Pharmacol., 173, 1502, 10.1111/bph.13449
Niu, 2018, Polysaccharide from Angelica sinensis protects H9C2 cells against oxidative injury and endoplasmic reticulum stress by activating the ATF6 pathway, The, J. Int. Med. Res., 46, 1717, 10.1177/0300060518758863
Yang, 2015, I-TASSER server: new development for protein structure and function predictions, Nucleic Acids Res., 43, W174, 10.1093/nar/gkv342
Yang, 2015, The I-TASSER Suite: protein structure and function prediction, Nat. Methods, 12, 7, 10.1038/nmeth.3213
Shirey, 2020, Select targeting of intracellular Toll-interleukin-1 receptor resistance domains for protection against influenza-induced disease, Innate Immun., 26, 26, 10.1177/1753425919846281
Reginauld, 2019, Differential Regulation of ANP and BNP in acute decompensated heart failure: deficiency of ANP, JACC Heart Fail., 7, 891, 10.1016/j.jchf.2019.05.012
Tripathi, 2016, Depressed corin levels indicate early systolic dysfunction before increases of atrial natriuretic peptide/B-type natriuretic peptide and heart failure development, Hypertension, 67, 362, 10.1161/HYPERTENSIONAHA.115.06300
Ning, 2017, Luteolin-7-diglucuronide attenuates isoproterenol-induced myocardial injury and fibrosis in mice, Acta Pharmacol. Sin., 38, 331, 10.1038/aps.2016.142
Khdhiri, 2021, Cardiopreventive capacity of a novel (E)-N’-(1-(7-methoxy-2-oxo-2H-chromen-3-yl) ethylidene)-4-methylbenzenesulfonohydrazide against isoproterenol-induced myocardial infarction by moderating biochemical, oxidative stress, and histological parameters, J. Biochem. Mol. Toxicol., 35, 10.1002/jbt.22747
Ganapathy, 2020, Cardioprotective potential of polyphenols rich Thraatchathi Chooranam against isoproterenol induced myocardial necrosis in experimental rats, BMC Complement. Med. Ther., 20, 356, 10.1186/s12906-020-03124-x
Sun, 2021, Xanthohumol attenuates isoprenaline-induced cardiac hypertrophy and fibrosis through regulating PTEN/AKT/mTOR pathway, Eur. J. Pharmacol., 891, 10.1016/j.ejphar.2020.173690
Chiong, 2011, Cardiomyocyte death: mechanisms and translational implications, Cell Death Dis., 2, 10.1038/cddis.2011.130
Mialet-Perez, 2017, Autophagy in health and disease: focus on the cardiovascular system, Essays Biochem., 61, 721, 10.1042/EBC20170022
Kostin, 2005, Pathways of myocyte death: implications for development of clinical laboratory biomarkers, Adv. Clin. Chem., 40, 37, 10.1016/S0065-2423(05)40002-5
De Meyer, 2010, Role of autophagy in heart failure associated with aging, Heart Fail. Rev., 15, 423, 10.1007/s10741-010-9166-6
Hein, 2003, Progression from compensated hypertrophy to failure in the pressure-overloaded human heart: structural deterioration and compensatory mechanisms, Circulation, 107, 984, 10.1161/01.CIR.0000051865.66123.B7
Rabinowitz Joshua, 2010, Autophagy and metabolism, Science, 330, 1344, 10.1126/science.1193497
Wohlgemuth, 2007, Autophagy in the heart and liver during normal aging and calorie restriction, Rejuvenation Res., 10, 281, 10.1089/rej.2006.0535
Ahn, 2013, Nutritional status and cardiac autophagy, Diabetes Metab. J., 37, 30, 10.4093/dmj.2013.37.1.30
Corsetti, 2019, Autophagy and oncosis/necroptosis are enhanced in cardiomyocytes from heart failure patients, Med. Sci. Monit. Basic Res., 25, 33, 10.12659/MSMBR.913436
Maiuri, 2007, Self-eating and self-killing: crosstalk between autophagy and apoptosis, Nat. Rev. Mol. Cell Biol., 8, 741, 10.1038/nrm2239
Kroemer, 2008, Autophagic cell death: the story of a misnomer, Nat. Rev. Mol. Cell Biol., 9, 1004, 10.1038/nrm2529
Lin, 2018, Molecular mechanisms of autophagy in cardiac ischemia/reperfusion injury (Review), Mol. Med. Rep., 18, 675
Chen-Scarabelli, 2010, Warm blood cardioplegia induces myocyte autophagy, whose magnitude and severity are proportional to the duration of cardioplegic arrest, Circulation, 122, A142
Griffiths, 2012, Mitochondria and heart disease, 249
Ong, 2015, The mitochondrial permeability transition pore and its role in myocardial ischemia reperfusion injury, J. Mol. Cell. Cardiol., 78, 23, 10.1016/j.yjmcc.2014.11.005
Chen, 2015, Inhibition of Bcl-2 sensitizes mitochondrial permeability transition pore (MPTP) opening in ischemia-damaged mitochondria, PLoS One, 10
Halestrap, 2015, The mitochondrial permeability transition: a current perspective on its identity and role in ischaemia/reperfusion injury, J. Mol. Cell. Cardiol., 78, 129, 10.1016/j.yjmcc.2014.08.018
Z. Hongmei, Extrinsic and Intrinsic Apoptosis Signal Pathway Review, 2012.
Niessner, 2009, Prognostic value of apoptosis markers in advanced heart failure patients, Eur. Heart J., 30, 789, 10.1093/eurheartj/ehp004
Mani, 2008, Programmed cell death in cardiac myocytes: strategies to maximize post-ischemic salvage, Heart Fail. Rev., 13, 193, 10.1007/s10741-007-9073-7
van Empel, 2005, Myocyte apoptosis in heart failure, Cardiovasc. Res., 67, 21, 10.1016/j.cardiores.2005.04.012
Yin, 2018, Progress in gene therapy for chronic heart failure, Heart Surg. Forum, 21, E075, 10.1532/hsf.1865
Biala, 2014, The interplay between cell death signaling pathways in the heart, Trends Cardiovasc. Med., 24, 325, 10.1016/j.tcm.2014.08.002
Orogo, 2013, Cell death in the myocardium: my heart won’t go on, IUBMB Life, 65, 651, 10.1002/iub.1180
Levine, 1990, Elevated circulating levels of tumor necrosis factor in severe chronic heart failure, N. Engl. J. Med., 323, 236, 10.1056/NEJM199007263230405
Mann, 2015, Innate immunity and the failing heart: the cytokine hypothesis revisited, Circ. Res., 116, 1254, 10.1161/CIRCRESAHA.116.302317
Ren, 2020, Yangxinkang tablet protects against cardiac dysfunction and remodelling after myocardial infarction in rats through inhibition of AMPK/mTOR-mediated autophagy, Pharm. Biol., 58, 321, 10.1080/13880209.2020.1748662
Liu, 2019, [Moxibustion improves cardiac function by up-regulating autophagy-related proteins of cardiomyocytes in rats with chronic heart failure], Zhen ci yan jiu = Acupunct. Res., 44, 25
Li, 2016, Xinmailong mitigated epirubicin-induced cardiotoxicity via inhibiting autophagy, J. Ethnopharmacol., 192, 459, 10.1016/j.jep.2016.08.031
Cao, 2017, Stachydrine protects against pressure overload-induced cardiac hypertrophy by suppressing autophagy, Cell. Physiol. Biochem. Int. J. Exp. Cell. Physiol. Biochem. Pharmacol., 42, 103, 10.1159/000477119
Yi, 2020, Effect and mechanism of asiatic acid on autophagy in myocardial ischemia-reperfusion injury in vivo and in vitro, Exp. Ther. Med., 20, 54, 10.3892/etm.2020.9182
Fan, 2020, Fuziline alleviates isoproterenol-induced myocardial injury by inhibiting ROS-triggered endoplasmic reticulum stress via PERK/eIF2α/ATF4/Chop pathway, J. Cell. Mol. Med., 24, 1332, 10.1111/jcmm.14803
Zang, 2020, An updated role of astragaloside IV in heart failure, Biomed. Pharmacother., 126, 10.1016/j.biopha.2020.110012
Chang, 2017, QSKL protects against myocardial apoptosis on heart failure via PI3K/Akt-p53 signaling pathway, Sci. Rep., 7, 16986, 10.1038/s41598-017-17163-x
Xu, 2020, LongShengZhi capsule inhibits doxorubicin-induced heart failure by anti-oxidative stress, Biomed. Pharmacother., 123, 10.1016/j.biopha.2019.109803
Wang, 2015, Mechanism of QSYQ on anti-apoptosis mediated by different subtypes of cyclooxygenase in AMI induced heart failure rats, BMC Complement. Altern. Med., 15, 352, 10.1186/s12906-015-0869-z
Wang, 2020, Baoyuan decoction ameliorates apoptosis via AT1-CARP signaling pathway in H9C2 cells and heart failure post-acute myocardial infarction rats, J. Ethnopharmacol., 252, 10.1016/j.jep.2019.112536
Li, 2014, Liguzinediol improved the heart function and inhibited myocardial cell apoptosis in rats with heart failure, Acta Pharmacol. Sin., 35, 1257, 10.1038/aps.2014.75
Wu, 2016, Higenamine protects ischemia/reperfusion induced cardiac injury and myocyte apoptosis through activation of β2-AR/PI3K/AKT signaling pathway, Pharmacol. Res., 104, 115, 10.1016/j.phrs.2015.12.032
Cheng, 2020, Ethanol extract of Chinese Hawthorn (Crataegus pinnatifida) fruit reduces inflammation and oxidative stress in rats with doxorubicin-induced chronic heart failure, Med. Sci. Monit. Int. Med. J. Exp. Clin. Res., 26
Han, 2018, Qiliqiangxin attenuates cardiac remodeling via inhibition of TGF-β1/Smad3 and NF-κB signaling pathways in a rat model of myocardial infarction, Cell. Physiol. Biochem. Int. J. Exp. Cell. Physiol. Biochem. Pharmacol., 45, 1797, 10.1159/000487871
Chen, 2021, Lutein attenuates angiotensin II- induced cardiac remodeling by inhibiting AP-1/IL-11 signaling, Redox Biol., 44, 10.1016/j.redox.2021.102020
Westermann, 2012, Selective PDE5A inhibition with sildenafil rescues left ventricular dysfunction, inflammatory immune response and cardiac remodeling in angiotensin II-induced heart failure in vivo, Basic Res. Cardiol., 107, 308, 10.1007/s00395-012-0308-y
Li, 2015, Phosphodiesterase 5a inhibition with adenoviral short hairpin RNA benefits infarcted heart partially through activation of Akt signaling pathway and reduction of inflammatory cytokines, PLoS One, 10, 10.1371/journal.pone.0145766
Katare, 2020, Activation of toll like receptor 4 (TLR4) promotes cardiomyocyte apoptosis through SIRT2 dependent p53 deacetylation, Sci. Rep., 10, 19232, 10.1038/s41598-020-75301-4
Chen, 2019, Role of TLR4/NADPH oxidase 4 pathway in promoting cell death through autophagy and ferroptosis during heart failure, Biochem. Biophys. Res. Commun., 516, 37, 10.1016/j.bbrc.2019.06.015
Huang, 2016, Stress management by autophagy: Implications for chemoresistance, Int. J. Cancer, 139, 23, 10.1002/ijc.29990