Accès ouvert déclaré
2016
article
Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.
Wesley C. Van Voorhis, John H. Adams, Roberto Adelfio, Vida Ahyong, Myles H. Akabas, Pietro Alano, Alday Aintzane, Aishah M. Alsibaee, Ainhoa Alzualde, Katherine T. Andrews, Simon V. Avery, Vicky M. Avery, Lawrence Ayong, Stephen Baker, Choukri Ben Mamoun, Sangeeta N. Bhatia, Lotfi Bounaadja, Tana Bowling, Jürgen Bosch, Lauren Boucher, Fabrice Fekam Boyom, José Brea, Marian Brennan, Burton Audrey, Conor R. Caffrey, Grazia Camarda, Manuela Carrasquilla, Carter Dee, Chindaudomsate Worathad, Chubb Anthony, Beatrice L. Colon, Daisy D. Colón-López, Yolanda Corbett, Gregory J. Crowther, Noemi Cowan, Na Le Dang, Michael J. Delves, Joseph L. DeRisi, Alan Y. Du, Sandra Duffy, Michael T. Ferdig, David A. Fidock, Isabelle Florent, Patrick Valère Tsouh Fokou, Ani Galstian, Francisco‐Javier Gamo, Suzanne Gokool, Todd R. Golub, Gregory M. Goldgof, Rajarshi Guha, W. Armand Guiguemde, Nil Gural, R. Kiplin Guy, Michael A. E. Hansen, Kirsten K. Hanson, Andrew Hemphill, Paul Horrocks, Tyler B. Hughes, Christopher D. Huston, Ikuo Igarashi, Katrin Ingram-Sieber, Maurice A. Itoe, Ajit Jadhav, Laran T. Jensen, Rays H. Y. Jiang, Annette Kaiser, Jennifer Keiser, Thomas J. Ketas, Sébastien Kicka, Kiaran Kirk, Vidya P. Kumar, Dennis E. Kyle, María José Lafuente, Scott M. Landfear, Lee Nathan, Sukjun Lee, Adele M. Lehane, Fengwu Li, David Little, Liqiong Liu, Manuel Llinás, Marı́a Isabel Loza, Leonardo Lucantoni, Isabelle S. Lucet, Louis Maes, Dalu Mancama, Nuha R. Mansour, Sandra March, Sheena McGowan, Stephan Meister, Luke Mercer, Jordi Mestres, Alvine Ngoutane Mfopa, Raj N. Misra, Moon Seunghyun, John P. Moore, Arantza Muriana, Bakela Nare, Carl Nathan, Nathalie Narraidoo, Sujeevi Nawaratna, Kayode K. Ojo, Diana Ortiz, Gordana Panić, George Papadatos, Silvia Parapini, Kailash P. Patra, Ngoc Bich Pham, Prats Sarah, David Plouffe, Sally‐Ann Poulsen, Anupam Pradhan, Celia Quevedo, Ronald J. Quinn, Christopher A. Rice, Andrea Ruecker, Natalie G. Robinett, Ulrich Schlecht, Marjorie Schmitt, Francesco Silvestrini, Robert E. Sinden, Dennis A. Smith, Thierry Soldati, Andreas Spitzmüller, Serge M. Stamm, David Sullivan, Sundari Suresh, Yo Suzuki, S. Joshua Swamidass, Donatella Taramelli, Lauve Rachel Yamthe Tchokouaha, Anjo Theron, David Thomas, Kathryn F. Tonissen, Simon Townson, Abhai K. Tripathi, Valentin Trofimov, Kenneth Udenze, Imran Ullah, Cindy Vallières, Edgar Vigil, Joseph M. Vinetz, Watanabe Nao-aki, Kate Weatherby, Pamela White, Andrew F. Wilks, Elizabeth A. Winzeler, Edward Wojcik, Melanie Wree, Wesley Wu, Naoaki Yokoyama, Nada Abla, Benjamin Blasco, Jeremy Burrows, Benoı̂t Laleu, Didier Leroy, Thomas Spangenberg, Timothy N. C. Wells, Paul Willis
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Le résumé fourni par la source
A major cause of the paucity of new starting points for drug discovery is the lack of interaction between academia and industry. Much of the global resource in biology is present in universities, whereas the focus of medicinal chemistry is still largely within industry. Open source drug discovery, with sharing of information, is clearly a first step towards overcoming this gap. But the interface could especially be bridged through a scale-up of open sharing of physical compounds, which would accelerate the finding of new starting points for drug discovery. The Medicines for Malaria Venture Malaria Box is a collection of over 400 compounds representing families of structures identified in phenotypic screens of pharmaceutical and academic libraries against the Plasmodium falciparum malaria parasite. The set has now been distributed to almost 200 research groups globally in the last two years, with the only stipulation that information from the screens is deposited in the public domain. This paper reports for the first time on 236 screens that have been carried out against the Malaria Box and compares these results with 55 assays that were previously published, in a format that allows a meta-analysis of the combined dataset. The combined biochemical and cellular assays presented here suggest mechanisms of action for 135 (34%) of the compounds active in killing multiple life-cycle stages of the malaria parasite, including asexual blood, liver, gametocyte, gametes and insect ookinete stages. In addition, many compounds demonstrated activity against other pathogens, showing hits in assays with 16 protozoa, 7 helminths, 9 bacterial and mycobacterial species, the dengue fever mosquito vector, and the NCI60 human cancer cell line panel of 60 human tumor cell lines. Toxicological, pharmacokinetic and metabolic properties were collected on all the compounds, assisting in the selection of the most promising candidates for murine proof-of-concept experiments and medicinal chemistry programs. The data for all of these assays are presented and analyzed to show how outstanding leads for many indications can be selected. These results reveal the immense potential for translating the dispersed expertise in biological assays involving human pathogens into drug discovery starting points, by providing open access to new families of molecules, and emphasize how a small additional investment made to help acquire and distribute compounds, and sharing the data, can catalyze drug discovery for dozens of different indications. Another lesson is that when multiple screens from different groups are run on the same library, results can be integrated quickly to select the most valuable starting points for subsequent medicinal chemistry efforts.
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Les sujets associés
Malaria Research and ControlComputational Drug Discovery MethodsGenetics, Bioinformatics, and Biomedical Research