[1] Xu H, Jin L, Chen Y, et al. Downregulation of microRNA-429 protects cardiomyocytes against hypoxia-induced apoptosis by increasing Notch1 expression. Int J Mol Med, 2016; 37, 1677-85. doi:  10.3892/ijmm.2016.2558
[2] Saghir SA. Determination of ADME and bioavailability following intravenous, oral, and dermal routes of exposure. Curr Protoc Toxicol, 2009; 5, Unit 5.8. http://europepmc.org/abstract/MED/22714106
[3] Ru J, Li P, Wang J, et al. TCMSP:A database of systems pharmacology for drug discovery from herbal medicines. J Cheminform, 2014; 6, 13. doi:  10.1186/1758-2946-6-13
[4] Fang J, Wang L, Wu T, et al. Network Pharmacology-based Study on the Mechanism of Action for Herbal Medicines in Alzheimer Treatment. J Ethnopharmacol, 2016; 196, 281-92. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=5ce9ae5a2859c79a02bb01121ac09df7
[5] Tannahill GM, O'Neill LAJ. The emerging role of metabolic regulation in the functioning of Toll-like receptors and the NOD-like receptor Nlrp3. FEBS Lett, 2011; 585, 1568-72. doi:  10.1016/j.febslet.2011.05.008
[6] Sha Y, Lv Y, Xu Z, et al. MGF E peptide pretreatment improves the proliferation and osteogenic differentiation of BMSCs via MEK-ERK1/2 and PI3K-Akt pathway under severe hypoxia. Life Sci, 2017; 189, 52-62. doi:  10.1016/j.lfs.2017.09.017
[7] Ding W, Chen X, Li W, et al. Genistein Protects Genioglossus Myoblast Against Hypoxia-induced Injury through PI3K-Akt and ERK MAPK Pathways. Sci Rep, 2017; 7, 5085. doi:  10.1038/s41598-017-03484-4
[8] Chi Y, Shi C, Li W, et al. Forkhead box O (FOXO) 3 modulates hypoxia-induced autophagy through AMPK signalling pathway in cardiomyocytes. Biosci Rep, 2016; 36, 5085. http://europepmc.org/articles/PMC5293586/
[9] Ishitsuka K, Ago T, Nakamura K, et al. Neurotrophin production in brain pericytes during hypoxia:a role of pericytes for neuroprotection. Microvasc Res, 2012; 83, 352. doi:  10.1016/j.mvr.2012.02.009