ribavirin has been researched along with umifenovir in 23 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (8.70) | 29.6817 |
2010's | 6 (26.09) | 24.3611 |
2020's | 15 (65.22) | 2.80 |
Authors | Studies |
---|---|
Keller, PA; Mahalingam, S; Rashad, AA | 1 |
Chen, X; Lin, W; Liu, D; Proksch, P; Si, L; Zhang, L; Zhou, D | 1 |
Lin, W; Liu, D; Niu, S; Shao, Z; Si, L; Wang, S; Zhang, L; Zhang, Z; Zhou, A; Zhou, D | 1 |
Aquino, TM; Araújo-Júnior, JX; da Silva-Júnior, EF; Leoncini, GO; Rodrigues, ÉES | 1 |
Çapan, G; Cihan-Üstündağ, G; Naesens, L; Ozkirimli, E; Persoons, L; Vanderlinden, E; Zopun, M | 1 |
Duan, Z; Gu, Q; Li, D; Li, J; Liu, Y; Wang, W; Wu, G; Yang, S; Yu, G; Yu, R; Yu, Y; Zhu, T | 1 |
Dranchak, PK; Huang, R; Inglese, J; Lamy, L; Oliphant, E; Queme, B; Tao, D; Wang, Y; Xia, M | 1 |
Fediakina, IT; Glushkov, RG; Gus'kova, TA; Leneva, IA | 1 |
Drozdov, IG; Durymanov, AM; Leneva, IA; Romanovskaia, AA; Sharshov, KA; Shestopalov, AM; Susloparov, IM; Zaĭkovskaia, AV | 1 |
Deriabin, PG; Fediakina, IT; Gudova, NV; Kondrat'eva, TV; L'vov, DK; Leneva, IA; Shchelkanov, MIu | 1 |
Bernreuther, C; de Lamballerie, X; Emmerich, P; Günther, S; Krasemann, S; Lehmann, M; Neumann, M; Oestereich, L; Ölschläger, S; Rieger, T; Wurr, S | 1 |
Wang, Y; Zhu, LQ | 1 |
Cutrell, JB; Jodlowski, TZ; Monogue, ML; Sanders, JM | 1 |
Chen, K; Couban, RJ; Du, X; Gong, X; Guyatt, G; He, N; Ibrahim, QI; Li, X; Li, Y; Liu, F; Liu, J; Liu, W; Shen, N; Tang, Q; Wu, Z; Xu, X; Ye, Z; Ying, Y; Zhai, S; Zhang, Q; Zhang, Y; Zhou, P | 1 |
Amore, A; Bimonte, S; Cascella, M; Celentano, E; Crispo, A; Cuomo, A | 1 |
Chen, D; Dong, L; Pan, X; Peng, C; Yang, L | 1 |
Li, C; Ren, L; Wang, L | 1 |
Li, Z; Liu, Y; Wang, D | 1 |
Chen, FF; Liu, Y; Meng, X; Su, DZ; Zhang, K; Zhang, Y; Zhong, M | 1 |
Fätkenheuer, G; Malin, JJ; Rybniker, J; Simonis, A; Theobald, SJ | 1 |
Chen, X; Huang, Z; Kuang, Y; Liu, C; Liu, P; Pan, P; Yin, M | 1 |
Wen, S; Xu, X; Yadav, AK; Yu, L | 1 |
Azebi, S; Barbier, J; Cintrat, JC; Cokelaer, T; Da Fonseca, JP; Gillet, D; Jallet, C; Kali, S; Tordo, N; Wu, Y | 1 |
10 review(s) available for ribavirin and umifenovir
Article | Year |
---|---|
The medicinal chemistry of Chikungunya virus.
Topics: Animals; Antiviral Agents; Biological Products; Chemistry, Pharmaceutical; Chikungunya Fever; Chikungunya virus; Dose-Response Relationship, Drug; Humans; Microbial Sensitivity Tests; Molecular Structure; Structure-Activity Relationship | 2017 |
Pharmaceutical care recommendations for antiviral treatments in children with coronavirus disease 2019.
Topics: Adolescent; Age Factors; Antiviral Agents; Child; Child, Preschool; China; Chloroquine; Coronavirus Infections; COVID-19; Female; Humans; Indoles; Infant; Infant, Newborn; Interferon-alpha; Lopinavir; Male; Pandemics; Pharmaceutical Services; Pneumonia, Viral; Practice Guidelines as Topic; Prognosis; Ribavirin; Risk Assessment; Severe Acute Respiratory Syndrome; Treatment Outcome | 2020 |
Pharmacologic Treatments for Coronavirus Disease 2019 (COVID-19): A Review.
Topics: Adenosine Monophosphate; Adrenal Cortex Hormones; Alanine; Amides; Angiotensin Receptor Antagonists; Angiotensin-Converting Enzyme Inhibitors; Antiviral Agents; Azithromycin; Betacoronavirus; Chloroquine; Coronavirus Infections; COVID-19; COVID-19 Drug Treatment; Humans; Hydroxychloroquine; Immunoglobulins; Immunologic Factors; Indoles; Lopinavir; Oseltamivir; Pandemics; Pneumonia, Viral; Pyrazines; Ribavirin; Ritonavir; SARS-CoV-2; Withholding Treatment | 2020 |
Efficacy and safety of antiviral treatment for COVID-19 from evidence in studies of SARS-CoV-2 and other acute viral infections: a systematic review and meta-analysis.
Topics: Amides; Antiviral Agents; Betacoronavirus; Chloroquine; Coronavirus Infections; COVID-19; COVID-19 Drug Treatment; Evidence-Based Medicine; Humans; Hydroxychloroquine; Indoles; Influenza, Human; Lopinavir; Observational Studies as Topic; Pandemics; Pneumonia, Viral; Pyrazines; Ribavirin; Ritonavir; SARS-CoV-2 | 2020 |
Potential Antiviral Drugs for SARS-Cov-2 Treatment: Preclinical Findings and Ongoing Clinical Research.
Topics: Adenosine Monophosphate; Alanine; Animals; Antibodies, Monoclonal, Humanized; Antiviral Agents; Betacoronavirus; Chloroquine; Clinical Trials as Topic; Coronavirus Infections; COVID-19; Drug Combinations; Drug Evaluation, Preclinical; Drug Synergism; Drug Therapy, Combination; Drugs, Investigational; Humans; Indoles; Lopinavir; Multicenter Studies as Topic; Neuraminidase; Pandemics; Pneumonia, Viral; Primates; Ribavirin; Ritonavir; SARS-CoV-2; Treatment Outcome | 2020 |
Potential drugs for the treatment of the novel coronavirus pneumonia (COVID-19) in China.
Topics: Adenosine Monophosphate; Alanine; Amides; Antiviral Agents; Betacoronavirus; China; Chloroquine; Coronavirus Infections; COVID-19; Drug Combinations; Drugs, Chinese Herbal; Humans; Indoles; Interferons; Lopinavir; Lung; Pandemics; Pneumonia, Viral; Pyrazines; Ribavirin; Ritonavir; SARS-CoV-2; Survival Analysis | 2020 |
Antiviral mechanisms of candidate chemical medicines and traditional Chinese medicines for SARS-CoV-2 infection.
Topics: Adenosine Monophosphate; Alanine; Amides; Antiviral Agents; Betacoronavirus; China; Coronavirus Infections; COVID-19; Drug Combinations; Drugs, Chinese Herbal; Humans; Hydroxychloroquine; Indoles; Interferons; Lopinavir; Pandemics; Pneumonia, Viral; Pyrazines; Ribavirin; Ritonavir; SARS-CoV-2; Survival Analysis; Teicoplanin | 2020 |
An overview of the safety, clinical application and antiviral research of the COVID-19 therapeutics.
Topics: Adenosine Monophosphate; Alanine; Amides; Angiotensin-Converting Enzyme Inhibitors; Antimalarials; Antiviral Agents; Betacoronavirus; Biomedical Research; Coronavirus Infections; COVID-19; COVID-19 Serotherapy; Drug Combinations; Drug Development; Drugs, Chinese Herbal; Humans; Hydroxychloroquine; Immunization, Passive; Indoles; Interferons; Lopinavir; Pandemics; Pneumonia, Viral; Pyrazines; Ribavirin; Ritonavir; SARS-CoV-2 | 2020 |
A comparative analysis of remdesivir and other repurposed antivirals against SARS-CoV-2.
Topics: Adenosine Monophosphate; Alanine; Amides; Antiviral Agents; Benzamidines; COVID-19 Drug Treatment; Drug Repositioning; Esters; Guanidines; Guanine; Humans; Indoles; Lopinavir; Protease Inhibitors; Pyrazines; Ribavirin; Ritonavir; SARS-CoV-2; Virus Internalization; Virus Replication | 2021 |
Antiviral treatment in COVID-19: which is the most promising?-a narrative review.
Topics: Adenosine Monophosphate; Alanine; Amides; Antibodies, Monoclonal, Humanized; Antiviral Agents; Azetidines; Chloroquine; COVID-19; COVID-19 Serotherapy; Drug Combinations; Humans; Hydroxychloroquine; Immunization, Passive; Indoles; Interferons; Ivermectin; Lopinavir; Nitro Compounds; Oseltamivir; Purines; Pyrazines; Pyrazoles; Ribavirin; Ritonavir; Sulfonamides; Thiazoles | 2021 |
1 trial(s) available for ribavirin and umifenovir
Article | Year |
---|---|
Safety and Efficacy of Ixekizumab and Antiviral Treatment for Patients with COVID-19: A structured summary of a study protocol for a Pilot Randomized Controlled Trial.
Topics: Adult; Aged; Antibodies, Monoclonal, Humanized; Antimalarials; Antiviral Agents; Case-Control Studies; China; Chloroquine; COVID-19; COVID-19 Drug Treatment; Drug Therapy, Combination; Humans; Indoles; Interleukin-17; Lopinavir; Middle Aged; Ribavirin; Ritonavir; Safety; SARS-CoV-2; Th17 Cells; Treatment Outcome | 2020 |
12 other study(ies) available for ribavirin and umifenovir
Article | Year |
---|---|
Chikungunya virus: emerging targets and new opportunities for medicinal chemistry.
Topics: Alphavirus Infections; Chikungunya Fever; Chikungunya virus; Disease Outbreaks; Europe; Humans; Models, Molecular | 2014 |
Neoechinulin B and its analogues as potential entry inhibitors of influenza viruses, targeting viral hemagglutinin.
Topics: Alkaloids; Animals; Antiviral Agents; Cell Line, Tumor; Cell Survival; Cytopathogenic Effect, Viral; Dogs; Dose-Response Relationship, Drug; Drug Resistance, Viral; Eurotium; HEK293 Cells; Hemagglutinin Glycoproteins, Influenza Virus; Humans; Influenza A Virus, H1N1 Subtype; Madin Darby Canine Kidney Cells; Molecular Structure; Piperazines; Structure-Activity Relationship; Viral Plaque Assay | 2015 |
Spiromastilactones: A new class of influenza virus inhibitors from deep-sea fungus.
Topics: Animals; Antiviral Agents; Aquatic Organisms; Benzofurans; Dogs; Dose-Response Relationship, Drug; Influenza A virus; Lactones; Madin Darby Canine Kidney Cells; Microbial Sensitivity Tests; Onygenales; Structure-Activity Relationship | 2016 |
Superior inhibition of influenza virus hemagglutinin-mediated fusion by indole-substituted spirothiazolidinones.
Topics: Animals; Antiviral Agents; Dogs; Dose-Response Relationship, Drug; Hemagglutinin Glycoproteins, Influenza Virus; Humans; Hydrogen-Ion Concentration; Indoles; Influenza A Virus, H3N2 Subtype; Influenza, Human; Madin Darby Canine Kidney Cells; Microbial Sensitivity Tests; Molecular Docking Simulation; Molecular Structure; Protein Refolding; Spiro Compounds; Structure-Activity Relationship; Thiazolidines | 2020 |
Chemoreactive-Inspired Discovery of Influenza A Virus Dual Inhibitor to Block Hemagglutinin-Mediated Adsorption and Membrane Fusion.
Topics: Acetophenones; Adsorption; Animals; Antiviral Agents; Dogs; Drug Discovery; Drug Resistance, Viral; Female; Hemagglutinin Glycoproteins, Influenza Virus; Influenza A virus; Madin Darby Canine Kidney Cells; Membrane Fusion; Mice; Tissue Distribution; Virus Internalization; Virus Replication | 2020 |
In vivo quantitative high-throughput screening for drug discovery and comparative toxicology.
Topics: Animals; Caenorhabditis elegans; Drug Discovery; High-Throughput Screening Assays; Humans; Proteomics; Small Molecule Libraries | 2023 |
[Sensitivity of various influenza virus strains to arbidol. Influence of arbidol combination with different antiviral drugs on reproduction of influenza virus A].
Topics: Amantadine; Animals; Antiviral Agents; Dogs; Drug Therapy, Combination; Embryo, Mammalian; Indoles; Influenza A virus; Influenza B virus; Influenza, Human; Microbial Sensitivity Tests; Ribavirin; Virus Replication | 2005 |
[Investigation of susceptibility of influenza viruses A (H1N1), the cause of infection in humans in April-May 2009, to antivirals in MDCK cell culture].
Topics: Amino Acid Substitution; Animals; Antiviral Agents; Cell Line; Dogs; Drug Resistance, Viral; Genome, Viral; Humans; Indoles; Influenza A Virus, H1N1 Subtype; Influenza, Human; Mutation, Missense; Ribavirin; Viral Matrix Proteins; Virus Replication | 2009 |
[Susceptibility of pandemic influenza virus A 2009 H1N1 and highly pathogenic avian influenza virus A H5N1 to antiinfluenza agents in cell culture].
Topics: Animals; Antiviral Agents; Birds; Cell Line; Drug Resistance, Viral; Humans; Indoles; Influenza A Virus, H1N1 Subtype; Influenza A Virus, H5N1 Subtype; Influenza in Birds; Influenza, Human; Oseltamivir; Ribavirin; Rimantadine; Virus Replication | 2011 |
Evaluation of antiviral efficacy of ribavirin, arbidol, and T-705 (favipiravir) in a mouse model for Crimean-Congo hemorrhagic fever.
Topics: Amides; Animals; Antiviral Agents; Chlorocebus aethiops; Disease Models, Animal; Female; Hemorrhagic Fever Virus, Crimean-Congo; Hemorrhagic Fever, Crimean; Indoles; Liver; Male; Mice; Mice, Transgenic; Pyrazines; Receptor, Interferon alpha-beta; Ribavirin; Vero Cells | 2014 |
The characteristics and outcomes of 681 severe cases with COVID-19 in China.
Topics: Adult; Aged; Angiotensin Receptor Antagonists; Angiotensin-Converting Enzyme Inhibitors; Area Under Curve; C-Reactive Protein; CD3 Complex; China; COVID-19 Drug Treatment; Female; Humans; Indoles; L-Lactate Dehydrogenase; Lymphocyte Count; Lymphocytes; Male; Middle Aged; Multivariate Analysis; Neutrophils; Retrospective Studies; Ribavirin; ROC Curve; Young Adult | 2020 |
Broad spectrum compounds targeting early stages of rabies virus (RABV) infection.
Topics: Adamantane; Animals; Antiviral Agents; Benzylamines; Cell Line; Drug Resistance, Viral; Drug Synergism; Endosomes; Indoles; Mutation; Rabies virus; Ribavirin; Viral Proteins; Virus Internalization | 2021 |