Serveur d'exploration Covid (26 mars) - Exploration (Accueil)

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List of bibliographic references indexed by inhibitors

Number of relevant bibliographic references: 21.
[0-20] [0 - 20][0 - 21][20-20][20-40]
Ident.Authors (with country if any)Title
000060 (2020) M L Sun [République populaire de Chine] ; J M Yang [République populaire de Chine] ; Y P Sun [République populaire de Chine] ; G H Su [République populaire de Chine][Inhibitors of RAS Might Be a Good Choice for the Therapy of COVID-19 Pneumonia].
000363 (2020) Gabriela M. Kuster [Suisse] ; Otmar Pfister [Suisse] ; Thilo Burkard [Suisse] ; Qian Zhou [Suisse] ; Raphael Twerenbold [Suisse] ; Philip Haaf [Suisse] ; Andreas F. Widmer [Suisse] ; Stefan Osswald [Suisse]SARS-CoV2: should inhibitors of the renin-angiotensin system be withdrawn in patients with COVID-19?
000421 (2020) Anh-Tien Ton [Canada] ; Francesco Gentile [Canada] ; Michael Hsing [Canada] ; Fuqiang Ban [Canada] ; Artem Cherkasov [Canada]Rapid Identification of Potential Inhibitors of SARS-CoV-2 Main Protease by Deep Docking of 1.3 Billion Compounds.
000564 (2020) Mirko Baglivo [Italie] ; Manuela Baronio [Italie] ; Giuseppe Natalini [Italie] ; Tommaso Beccari [Italie] ; Pietro Chiurazzi [Italie] ; Ezio Fulcheri [Italie] ; Paolo Pietro Petralia [Italie] ; Sandro Michelini [Italie] ; Giovanni Fiorentini [Italie] ; Giacinto Abele Miggiano [Italie] ; Assunta Morresi [Italie] ; Gerolamo Tonini [Italie] ; Matteo Bertelli [Italie]Natural small molecules as inhibitors of coronavirus lipid-dependent attachment to host cells: a possible strategy for reducing SARS-COV-2 infectivity?
000682 (2020) James H. Diaz [États-Unis]Hypothesis: angiotensin-converting enzyme inhibitors and angiotensin receptor blockers may increase the risk of severe COVID-19.
000854 (2020) Linlin Zhang [Allemagne] ; Daizong Lin [Allemagne] ; Xinyuanyuan Sun [Allemagne] ; Ute Curth [Allemagne] ; Christian Drosten [Allemagne] ; Lucie Sauerhering [Allemagne] ; Stephan Becker [Allemagne] ; Katharina Rox [Allemagne] ; Rolf Hilgenfeld [Allemagne]Crystal structure of SARS-CoV-2 main protease provides a basis for design of improved α-ketoamide inhibitors.
000A92 (2020) George ThomsonCOVID-19: social distancing, ACE 2 receptors, protease inhibitors and beyond?
000B77 (2020) Ankit B. Patel [États-Unis] ; Ashish Verma [États-Unis]COVID-19 and Angiotensin-Converting Enzyme Inhibitors and Angiotensin Receptor Blockers: What Is the Evidence?
000C25 (2020) Abdo A. ElfikyAnti-HCV, nucleotide inhibitors, repurposing against COVID-19
000D32 (2019) Belén Martínez-Gualda [Espagne] ; Liang Sun [Belgique] ; Olaia Martí-Marí [Espagne] ; Carmen Mirabelli [Belgique] ; Leen Delang [Belgique] ; Johan Neyts [Belgique] ; Dominique Schols [Belgique] ; María-José Camarasa [Espagne] ; Ana San-Félix [Espagne]Modifications in the branched arms of a class of dual inhibitors of HIV and EV71 replication expand their antiviral spectrum.
001153 (2014) Hussain Badani [États-Unis] ; Robert F. Garry [États-Unis] ; William C. Wimley [États-Unis]Peptide entry inhibitors of enveloped viruses: The importance of interfacial hydrophobicity☆
001231 (2013) Adeyemi O. Adedeji ; William Severson ; Colleen Jonsson ; Kamalendra Singh ; Susan R. Weiss ; Stefan G. SarafianosNovel Inhibitors of Severe Acute Respiratory Syndrome Coronavirus Entry That Act by Three Distinct Mechanisms
001240 (2013) S. Deiab [États-Unis] ; E. Mazzio [États-Unis] ; S. Messeha [États-Unis] ; N. Mack [États-Unis] ; K. F. A. Soliman [États-Unis]High-Throughput Screening to Identify Plant Derived Human LDH-A Inhibitors
001259 (2013) Andy Kilianski ; Susan C. BakerCell-based antiviral screening against coronaviruses: Developing virus-specific and broad-spectrum inhibitors
001274 (2013) Esra Tatar [Turquie] ; Lkay Küçükgüzel [Turquie] ; Dirk Daelemans [Belgique] ; Tanaji T. Talele [États-Unis] ; Neerja Kaushik-Basu [États-Unis] ; Erik De Clercq [Belgique] ; Christophe Pannecouque [Belgique]Some Hydrazones of 2‐Aroylamino‐3‐methylbutanohydrazide: Synthesis, Molecular Modeling Studies, and Identification as Stereoselective Inhibitors of HIV‐1
001279 (2013) Holger Stephan [Allemagne] ; Manja Kubeil ; Franziska Emmerling [Allemagne] ; Christa E. Müller [Allemagne]Polyoxometalates as Versatile Enzyme Inhibitors
001282 (2013) Amit K. Halder [Inde] ; Achintya Saha [Inde] ; Tarun Jha [Inde]Exploration of structural and physicochemical requirements and search of virtual hits for aminopeptidase N inhibitors
001474 (2010) Falgun Shah [États-Unis] ; Prasenjit Mukherjee ; Prashant Desai ; Mitchell AveryComputational approaches for the discovery of cysteine protease inhibitors against malaria and SARS.
001673 (2007) William E. Severson [États-Unis] ; Nice Shindo ; Mindy Sosa [États-Unis] ; Thomas Fletcher [États-Unis] ; E. Lucile White [États-Unis] ; Subramaniam Ananthan [États-Unis] ; Colleen B. Jonsson [États-Unis]Development and Validation of a High-Throughput Screen for Inhibitors of SARS CoV and Its Application in Screening of a 100,000-Compound Library
001737 (2006) Brigitte Bauvois [France] ; Daniel Dauzonne [France]Aminopeptidase‐N/CD13 (EC 3.4.11.2) inhibitors: Chemistry, biological evaluations, and therapeutic prospects
001F17 (1977) J. Frank Henderson [Canada] ; Larry Brox [Canada] ; George Zombor [Canada] ; Darel Hunting [Canada] ; Christopher A. Lomax [Canada]Specificity of adenosine deaminase inhibitors

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