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For: Tharappel AM, Samrat SK, Li Z, Li H. Targeting Crucial Host Factors of SARS-CoV-2. ACS Infect Dis 2020;6:2844-65. [PMID: 33112126 DOI: 10.1021/acsinfecdis.0c00456] [Cited by in Crossref: 14] [Cited by in F6Publishing: 10] [Article Influence: 7.0] [Reference Citation Analysis]
Number Citing Articles
1 Lam C, Siefkas A, Zelin NS, Barnes G, Dellinger RP, Vincent JL, Braden G, Burdick H, Hoffman J, Calvert J, Mao Q, Das R. Machine Learning as a Precision-Medicine Approach to Prescribing COVID-19 Pharmacotherapy with Remdesivir or Corticosteroids. Clin Ther 2021:S0149-2918(21)00128-4. [PMID: 33865643 DOI: 10.1016/j.clinthera.2021.03.016] [Cited by in Crossref: 2] [Cited by in F6Publishing: 2] [Article Influence: 2.0] [Reference Citation Analysis]
2 García-Dorival I, Cuesta-Geijo MÁ, Barrado-Gil L, Galindo I, Garaigorta U, Urquiza J, Puerto AD, Campillo NE, Martínez A, Gastaminza P, Gil C, Alonso C. Identification of Niemann-Pick C1 protein as a potential novel SARS-CoV-2 intracellular target. Antiviral Res 2021;194:105167. [PMID: 34450201 DOI: 10.1016/j.antiviral.2021.105167] [Reference Citation Analysis]
3 Hu X, Chen CZ, Xu M, Hu Z, Guo H, Itkin Z, Shinn P, Ivin P, Leek M, Liang TJ, Shen M, Zheng W, Hall MD. Discovery of Small Molecule Entry Inhibitors Targeting the Fusion Peptide of SARS-CoV-2 Spike Protein. ACS Med Chem Lett 2021;12:1267-74. [PMID: 34394844 DOI: 10.1021/acsmedchemlett.1c00263] [Cited by in Crossref: 4] [Cited by in F6Publishing: 3] [Article Influence: 4.0] [Reference Citation Analysis]
4 Selvaraj C, Panwar U, Dinesh DC, Boura E, Singh P, Dubey VK, Singh SK. Microsecond MD Simulation and Multiple-Conformation Virtual Screening to Identify Potential Anti-COVID-19 Inhibitors Against SARS-CoV-2 Main Protease. Front Chem 2020;8:595273. [PMID: 33585398 DOI: 10.3389/fchem.2020.595273] [Cited by in Crossref: 4] [Cited by in F6Publishing: 6] [Article Influence: 4.0] [Reference Citation Analysis]
5 Maas MN, Hintzen JCJ, Löffler PMG, Mecinović J. Targeting SARS-CoV-2 spike protein by stapled hACE2 peptides. Chem Commun (Camb) 2021;57:3283-6. [PMID: 33651072 DOI: 10.1039/d0cc08387a] [Cited by in Crossref: 5] [Cited by in F6Publishing: 3] [Article Influence: 5.0] [Reference Citation Analysis]
6 Tripathi N, Goel B, Bhardwaj N, Vishwakarma RA, Jain SK. Exploring the Potential of Chemical Inhibitors for Targeting Post-translational Glycosylation of Coronavirus (SARS-CoV-2). ACS Omega. [DOI: 10.1021/acsomega.2c02345] [Reference Citation Analysis]
7 Kumawat A, Namsani S, Pramanik D, Roy S, Singh JK. Integrated docking and enhanced sampling-based selection of repurposing drugs for SARS-CoV-2 by targeting host dependent factors. J Biomol Struct Dyn 2021;:1-12. [PMID: 34155961 DOI: 10.1080/07391102.2021.1937319] [Reference Citation Analysis]
8 Hu Y, Meng X, Zhang F, Xiang Y, Wang J. The in vitro antiviral activity of lactoferrin against common human coronaviruses and SARS-CoV-2 is mediated by targeting the heparan sulfate co-receptor. Emerg Microbes Infect 2021;10:317-30. [PMID: 33560940 DOI: 10.1080/22221751.2021.1888660] [Cited by in Crossref: 25] [Cited by in F6Publishing: 29] [Article Influence: 25.0] [Reference Citation Analysis]
9 Luo Y, Tan CW, Xie SZ, Chen Y, Yao YL, Zhao K, Zhu Y, Wang Q, Liu MQ, Yang XL, Wang LF, Shi ZL. Identification of ZDHHC17 as a Potential Drug Target for Swine Acute Diarrhea Syndrome Coronavirus Infection. mBio 2021;12:e0234221. [PMID: 34700373 DOI: 10.1128/mBio.02342-21] [Reference Citation Analysis]
10 Luo R, Delaunay-Moisan A, Timmis K, Danchin A. SARS-CoV-2 biology and variants: anticipation of viral evolution and what needs to be done. Environ Microbiol 2021;23:2339-63. [PMID: 33769683 DOI: 10.1111/1462-2920.15487] [Cited by in Crossref: 4] [Cited by in F6Publishing: 4] [Article Influence: 4.0] [Reference Citation Analysis]
11 Niemeyer BF, Benam KH. Untapping host-targeting cross-protective efficacy of anticoagulants against SARS-CoV-2. Pharmacol Ther 2021;:108027. [PMID: 34718070 DOI: 10.1016/j.pharmthera.2021.108027] [Reference Citation Analysis]