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Cited by in F6Publishing
For: Zhu YD, Guan XQ, Chen J, Peng S, Finel M, Zhao YY, Wang RM, Bi HC, Lei M, Wang DD, Ge GB. Neobavaisoflavone Induces Bilirubin Metabolizing Enzyme UGT1A1 via PPARα and PPARγ. Front Pharmacol 2020;11:628314. [PMID: 33628187 DOI: 10.3389/fphar.2020.628314] [Cited by in Crossref: 2] [Cited by in F6Publishing: 2] [Article Influence: 2.0] [Reference Citation Analysis]
Number Citing Articles
1 Wang X, Cao Y, Chen S, Lin J, Bian J, Huang D. Anti-Inflammation Activity of Flavones and Their Structure-Activity Relationship. J Agric Food Chem 2021;69:7285-302. [PMID: 34160206 DOI: 10.1021/acs.jafc.1c02015] [Reference Citation Analysis]
2 Xu Y, Lu J, Guo Y, Zhang Y, Liu J, Huang S, Zhang Y, Gao L, Wang X. Hypercholesterolemia reduces the expression and function of hepatic drug metabolizing enzymes and transporters in rats. Toxicol Lett 2022;364:1-11. [PMID: 35654319 DOI: 10.1016/j.toxlet.2022.05.009] [Reference Citation Analysis]
3 Wu SC, Chen TA, Cheng HT, Chang YJ, Wang YC, Tzeng CW, Hsu CH, Muo CH. Lipid-Free PN is Associated with an Increased Risk of Hyperbilirubinemia in Surgical Critically Ill Patients with Admission Hepatic Disorder: A Retrospective Observational Study. Ther Clin Risk Manag 2021;17:1001-10. [PMID: 34548793 DOI: 10.2147/TCRM.S322341] [Reference Citation Analysis]
4 Jin Q, Wu J, Wu Y, Li H, Finel M, Wang D, Ge G. Optical substrates for drug-metabolizing enzymes: Recent advances and future perspectives. Acta Pharm Sin B 2022;12:1068-99. [PMID: 35530147 DOI: 10.1016/j.apsb.2022.01.009] [Cited by in Crossref: 2] [Article Influence: 2.0] [Reference Citation Analysis]
5 Jiménez-Avalos G, Vargas-Ruiz AP, Delgado-Pease NE, Olivos-Ramirez GE, Sheen P, Fernández-Díaz M, Quiliano M, Zimic M; COVID-19 Working Group in Perú. Comprehensive virtual screening of 4.8 k flavonoids reveals novel insights into allosteric inhibition of SARS-CoV-2 MPRO. Sci Rep 2021;11:15452. [PMID: 34326429 DOI: 10.1038/s41598-021-94951-6] [Cited by in F6Publishing: 1] [Reference Citation Analysis]