Journal of Chinese Pharmaceutical Sciences ›› 2021, Vol. 30 ›› Issue (9): 705-715.DOI: 10.5246/jcps.2021.09.058
• Original articles • Next Articles
Taixiang Gao, Feng Zhao, Liyao Shi, Rui Wang*()
Received:
2021-04-20
Revised:
2021-05-11
Accepted:
2021-06-18
Online:
2021-09-27
Published:
2021-09-27
Contact:
Rui Wang
Supporting:
Taixiang Gao, Feng Zhao, Liyao Shi, Rui Wang. Exploring the mechanism of Fu-Zi Decoction in treatment of chronic heart failure based on network pharmacology and molecular docking technology[J]. Journal of Chinese Pharmaceutical Sciences, 2021, 30(9): 705-715.
[1] |
Yancy, C.W.; Jessup, M.; Bozkurt, B.; Butler, J.; Casey, D.E.; Colvin, M.M.; Drazner, M.H.; Filippatos, G.S.; Fonarow, G.C.; Givertz, M.M.; Hollenberg, S.M.; Lindenfeld, J.; Masoudi, F.A.; McBride, P.E.; Peterson, P.N.; Stevenson, L.W.; Westlake, C. 2017 ACC/AHA/HFSA focused update of the 2013 ACCF/AHA guideline for the management of heart failure: a report of the American college of cardiology/American heart association task force on clinical practice guidelines and the heart failure society of America. J. Am. Coll. Cardiol. 2017, 70, 776–803.
|
[2] |
Ma, R.Q.; Yang, Z.Q.; Kou, J.P.; Yu, B.Y. Analysis on new research and development ideas and technical points of traditional Chinese medicine for prevention and treatment of chronic heart failure. China J. Chin. Mater. Med. 2020, 45, 2720–2724.
|
[3] |
Wang, R.; Yan, X.M.; Wang, Y.; Yuan, H.X.; Pei, M.R. Pharmacodynamic evaluation and mechanism discussion of Fu-Zi Decoction based on rat model of chronic heart failure. Chin. Arch. Traditi. Chin. Med. 2019, 37, 788–792, 1026.
|
[4] |
Hou, X.L.; Hong, J.K.; Xiao, X.Y.; Cai, H.Y.; Zhang, X.L. Effect of Fu-Zi Decoction on cardiac function and plasma NT-Pro-BNP in patients with chronic heart failure. J. N. Chin. Med. 2013, 45, 32–34.
|
[5] |
Zhang, S.Q.; Li, Y.F.; Li, X.M. Research progress of targeted ACE2-ANG1-7 axis of monoester alkaloid components in Aconite root for the treatment of chronic heart failure. Sci. Technol. View. J. Press. 2019, 23, 212–215.
|
[6] |
Wang, Q.; Yao, G.Z.; Pan. G.M.; Huang, J.Y.; An, Y.P.; Zhou, X. Drug law analysis of qi-deficiency and Blood-stasis syndrome in chronic heart failure based on data Mining. China J. Chin. Mater. Med. 2017, 42, 182–186.
|
[7] |
Zhu, H. Clinical observation of ginseng in the treatment of chronic heart failure. Guangming J. Chin. Med. 2019, 34, 1208–1210.
|
[8] |
Zhu, F.F.; Zhao, J.L.; Guan, Y.G. Clinical Observation on the addition and reduction of ShenlingBaizhu Powder in the treatment of 40 cases of chronic heart failure with qi deficiency and blood stasis. Electron. J. Clin. Med. Lit. 2017, 4, 5100–5101.
|
[9] |
Gao, Q.C.; Wu, H.K.; Lin, X.J. Efficacy of total glucosides of paeonia in patients with stable chronic heart failure and its effect on inflammation. J. Clin. Cardiol. 2018, 34, 918–921.
|
[10] |
Chen, H.D.; Xie, Y.M.; Wang, L.X.; Wu, J.B. Systematic review of efficacy and safety of Shenmai injection for chronic heart failure. China J. Chin. Mater. Med. 2014, 39, 3650–3661.
|
[11] |
Liu, C.X.; Hou, Y.Z.; Wang, X.L.; Zhao, Z.Q.; Liu, Z.; Zhai, J.B.; Mao, J.Y.; Shang, H.C. Clinical assessment of Shenfu injection loading in the treatment of patients with exacerbation of chronic heart failure due to coronary heart disease: study protocol for a randomized controlled trial. Trials. 2015, 16, 222.
|
[12] |
Tsai, M.Y.; Hu, W.L.; Lin, C.C.; Lee, Y.C.; Chen, S.Y.; Hung, Y.C.; Chen, Y.H. Prescription pattern of Chinese herbal products for heart failure in Taiwan: a population-based study. Int. J. Cardiol. 2017, 228, 90–96.
|
[13] |
Wu, J.F.; Li, X. Clinical efficacy and safety evaluation of Zhenwu decoction in treating chronic heart failure of water overflowing due to Yang insufficiency syndrome. J. Shandong Univ. Tradit. Chin. Med. 2016, 40, 458–460.
|
[14] |
Sun, J.; Zhang, K.; Xiong, W.J.; Yang, G.Y.; Zhang, Y.J.; Wang, C.C.; Lai, L.; Han, M.; Ren, J.; Lewith, G.; Liu, J.P. Clinical effects of a standardized Chinese herbal remedy, Qili Qiangxin, as an adjuvant treatment in heart failure: systematic review and meta-analysis. BMC Complementary Altern. Med. 2016, 16, 201.
|
[15] |
Tsutsui, H.; Kinugawa, S.; Matsushima, S. Oxidative stress and heart failure. Am. J. Physiol. Heart Circ. Physiol. 2011, 301, H2181–H2190.
|
[16] |
Kamal, F.A.; Travers, J.G.; Schafer, A.E.; Ma, Q.; Devarajan, P.; Blaxall, B.C. G protein-coupled receptor-G-proteinβγ-subunit signaling mediates renal dysfunction and fibrosis in heart failure. J. Am. Soc. Nephrol. 2017, 28, 197–208.
|
[17] |
Baeyens, N.; Bandyopadhyay, C.; Coon, B.G.; Yun, S.; Schwartz, M.A. Endothelial fluid shear stress sensing in vascular health and disease. J. Clin. Investig. 2016, 126, 821–828.
|
[18] |
Sabourin, J.; Boet, A.; Rucker-Martin, C.; Lambert, M.; Gomez, A.M.; Benitah, J.P.; Perros, F.; Humbert, M.; Antigny, F. Ca2+ handling remodeling and STIM1L/Orai1/TRPC1/TRPC4 upregulation in monocrotaline-induced right ventricular hypertrophy. J. Mol. Cell Cardiol. 2018, 118, 208–224.
|
[19] |
Chang, S.L.; Hsiao, Y.W.; Tsai, Y.N.; Lin, S.F.; Liu, S.H.; Lin, Y.J.; Lo, L.W.; Chung, F.P.; Chao, T.F.; Hu, Y.F.; Tuan, T.C.; Liao, J.N.; Hsieh, Y.C.; Wu, T.J.; Higa, S.; Chen, S.A. Interleukin-17 enhances cardiac ventricular remodeling via activating MAPK pathway in ischemic heart failure. J. Mol. Cell Cardiol. 2018, 122, 69–79.
|
[20] |
Song, A.W. Paeonol attenuates progression of atherosclerotic lesion formation through lipid regulation, anti-inflammatory and antioxidant activities. J. Chin. Pharm. Sci. 2018, 27, 565–575.
|
[21] |
Boschetto, P.; Campo, I.; Stendardo, M.; Casimirri, E.; Tinelli, C.; Gorrini, M.; Ceconi, C.; Fucili, A.; Potena, A.; Papi, A.; Ballerin, L.; Fabbri, L.M.; Luisetti, M. Plasma sRAGE and N-(carboxymethyl) lysine in patients with CHF and/or COPD. Eur. J. Clin. Invest. 2013, 43, 562–569.
|
[22] |
Li, X.; Sun, Y.; Zhang, X.; Wang, J. Reductions in gut microbiota-derived metabolite trimethylamine N-oxide in the circulation may ameliorate myocardial infarction-induced heart failure in rats, possibly by inhibiting interleukin-8 secretion. Mol. Med. Rep. 2019, 20, 779–786.
|
[23] |
Cabassi, A.; Binno, S.M.; Tedeschi, S.; Graiani, G.; Galizia, C.; Bianconcini, M.; Coghi, P.; Fellini, F.; Ruffini, L.; Govoni, P.; Piepoli, M.; Perlini, S.; Regolisti, G.; Fiaccadori, E. Myeloperoxidase-related chlorination activity is positively associated with circulating ceruloplasmin in chronic heart failure patients: relationship with neurohormonal, inflammatory, and nutritional parameters. Biomed. Res. Int. 2015, 2015, 691693.
|
[24] |
Damås, J.K.; Eiken, H.G.; Øie, E.; Bjerkeli, V.; Yndestad, A.; Ueland, T.; Tønnessen, T.; Geiran, O.R.; Aass, H.; Simonsen, S.; Christensen, G.; Frøland, S.S.; Attramadal, H.; Gullestad, L.; Aukrust, P. Myocardial expression of CC- and CXC-chemokines and their receptors in human end-stage heart failure. Cardiovasc. Res. 2000, 47, 778–787.
|
[25] |
Nymo, S.H.; Hulthe, J.; Ueland, T.; McMurray, J.; Wikstrand, J.; Askevold, E.T.; Yndestad, A.; Gullestad, L.; Aukrust, P. Inflammatory cytokines in chronic heart failure: interleukin-8 is associated with adverse outcome. Results from CORONA. Eur. J. Heart Fail. 2014, 16, 68–75.
|
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