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Macrocycles in Drug Discovery, CHAPTER 7 Linear and Macrocyclic Hepatitis C Virus Protease Inhibitors: Inhibitor Design and Macrocyclization Strategies for HCV Protease and Related Targets . Wieslaw M. Kazmierski, Richard L. Jarvest, Jacob J. Plattner, Xianfeng Li
, 2015
, Pages 235-282
The Coronavirus Pandemic and the Future: Virology, Epidemiology, Translational Toxicology and Therapeutics, Volume 2, CHAPTER 1 In Silico Approaches for Drug Repurposing for SARS-CoV-2 Infection . Sudhir A. Kulkarni, Kundan Ingale
, 2022
, Volume 2
, Pages 1-80
Successful Strategies for the Discovery of Antiviral Drugs, CHAPTER 7 HCV NS3/4a Protease Inhibitors: Simeprevir (TMC‐435350), Vaniprevir (MK‐7009) and MK‐5172 . John A. McCauley, Michael T. Rudd, Nigel J. Liverton
, 2013
, Pages 189-247
Successful Strategies for the Discovery of Antiviral Drugs, Subject index
, 2013
, Pages 509-534
Sustainable Synthesis of Pharmaceuticals: Using Transition Metal Complexes as Catalysts, Chapter 9 Metal-catalysed Metathesis Reactions for Greener Synthon/Drug Synthesis . E. N. dos Santos, A. V. Granato, A. G. Santos
, 2018
, Pages 230-252
Macrocycles in Drug Discovery, Subject Index
, 2015
, Pages 487-499
Successful Strategies for the Discovery of Antiviral Drugs, Contents
, 2013
, Pages P009-P016
Antiviral Discovery for Highly Pathogenic Emerging Viruses, Chapter 1 Overview of Antiviral Drug Discovery and Development: Viral Versus Host Targets . Guangdi Li, Erik De Clercq
, 2022
, Pages 1-27
Privileged Scaffolds in Medicinal Chemistry: Design, Synthesis, Evaluation, Chapter 9 Heterocycles Containing Nitrogen and Sulfur as Potent Biologically Active Scaffolds . Ana Martinez, Carmen Gil
, 2016
, Pages 231-261
The Handbook of Medicinal Chemistry: Principles and Practice, CHAPTER 20 Lead Generation . Mark Furber, Frank Narjes, John Steele
, 2015
, Pages 505-528