[1] |
Ripatti, P.; Rämö, J.T.; Mars, N.J.; Fu, Y.; Lin, J.; Söderlund, S.; Benner, C.; Surakka, I.; Kiiskinen, T.; Havulinna, A.S.; Palta, P.; Freimer, N.B.; Widén, E.; Salomaa, V.; Tukiainen, T.; Pirinen, M.; Palotie, A.; Taskinen, M.R.; Ripatti, S.; FinnGen. Polygenic hyperlipidemias and coronary artery disease risk. Circ. Genom. Precis. Med. 2020, 13, e002725.
|
[2] |
Ranjan, N. Management of hyperlipidemias: an update. Indian J. Dermatol. Venereol. Leprol. 2009, 75, 452.
|
[3] |
Jiang, T.; Cheng D.; Wu, L.; Zhao, L.B.; Ye, C.H. Li Mingquan’s Experience in Treating Hyperlipidemia from Spleen Deficiency and Phlegm Turbidity. Shanxi J. Chin. Tradit. Med. 2021, 5, 9–10.
|
[4] |
Han, J.H.; Yang, H.Y. TCM's understanding of cardiovascular event chain and the importance of pulse accumulation disease. Acta Chin. Med. 2020, 11, 2311–2314.
|
[5] |
Xu, W.J.; Yang, L.H. Discussion on hyperlipidemia by warming yang. Cardiovasc. Dis. Electr. J. Integr. Tradit. Chin. West. Med. 2020, 21, 144.
|
[6] |
Liu, J.; Huang, Y.M.; Wang, H. Research progress of network pharmacology. West China J. Pharm. Sci. 2014, 6, 723–725.
|
[7] |
Gao, S.S.; Hou, L.X.; Qiu, Q.; Sun, J.J.; Gou, X.J. Excavation of key components and analysis of synergy mechanism for Lingguizhugan Decoction in the treatment of nonalcoholic fatty liver disease based upon systematic pharmacology. Chin. J. Hosp. Pharm. 2021, 23, 1–12.
|
[8] |
Zhao, W.; Ye, P.; Hu, D.Y.; Zhao, S.P. Re-analysis of DYSIS-China cross-sectional survey according to "Chinese guidelines forthe prevention and treatment of dyslipidemia in adults (2016 revision)". Chin. J. Cardiovasc. Med. 2020, 1, 55–61.
|
[9] |
Zu, J.R.; Gao, R.L.; Zhao, S,P.; Lu, G.P.; Zhao, D.; Li, J.J. Guidelines for the prevention and treatment of dyslipidemia in Chinese adults (revised in 2016). Chin. J. Health Manage. 2017, 1, 7–28.
|
[10] |
Ma, K.; Yuan, Y.; Chen, Y.X.; Yuan, B.C.; Wang, K.L.; Tian, C.D.; Li, J.N. Efficacy of Bushen Culuan Decoction on ovarian follicle and follicular granulosa cells in mice with premature ovarian insufficiency induced by tripterygium wilfordii polyglycoside. J. Tradit. Chin. Med. 2022, 42, 23–29.
|
[11] |
Sun, Y.; Qi, X.H. Excessive seven emotions impairing qi of five Zang-viscera with the theory of chill and fever. China J. Tradit. Chin. Med. Pharm. 2018, 33, 55–57.
|
[12] |
McKenna, M.; Balasuriya, N.; Zhong, S.S.; Li, S.S.C.; O’Donoghue, P. Phospho-form specific substrates of protein kinase B (AKT1). Front. Bioeng. Biotechnol. 2021, 8, 619252.
|
[13] |
Gough, P.; Myles, I.A. Tumor necrosis factor receptors: pleiotropic signaling complexes and their differential effects. Front. Immunol. 2020, 11, 585880.
|
[14] |
Fang, X.L.; Chen, J.; Wang, W.; Feng, G.S.; Li, X.D.; Zhang, X.; Zhang, Y.M.; Zhang, J.; Xu, Z.F.; Tai, J.; Ni, X. Matrix metalloproteinase 9 (MMP9) level and MMP9-1562C>T in patients with obstructive sleep apnea: a systematic review and meta-analysis of case-control studies. Sleep Med. 2020, 67, 110–119.
|
[15] |
Fojtík, P.; Beckerová, D.; Holomková, K.; Šenfluk, M.; Rotrekl, V. Both hypoxia-inducible factor 1 and MAPK signaling pathway attenuate PI3K/AKT via suppression of reactive oxygen species in human pluripotent stem cells. Front. Cell Dev. Biol. 2021, 8, 607444.
|
[16] |
Łukaszewicz-Zając, M.; Pączek, S.; Muszyński, P.; Kozłowski, M.; Mroczko, B. Comparison between clinical significance of serum CXCL-8 and classical tumor markers in oesophageal cancer (OC) patients. Clin. Exp. Med. 2019, 19, 191–199.
|
[17] |
Łukaszewicz-Zając, M.; Pączek, S.; Mroczko, B. The significance of chemokine CXCL-8 in esophageal carcinoma. Arch Med. Sci. 2020, 16, 475–480.
|
[18] |
Ou, M.H.; Liu, S.D.; Ma, X.P.; Xing, X.L.; He, W.T.; Gao, H.M. IL-6 promoter polymorphism increased risks of recurrent stroke in the young patients with moderate internal carotid artery stenosis. J. Cell Biochem. 2018, 119, 2886–2890.
|
[19] |
Pouladi, N.; Shavali, M.; Abdolahi, S. Combined genotype effects of TP53 and PAI-1 polymorphisms in breast cancer susceptibility: multifactor dimensionality reduction and in silico analysis. Hum. Hered. 2020, 85, 51–60.
|