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3D-Lab: a collaborative web-based platform for molecular modeling
Author(s) -
Christoph Grebner,
Magnus Norrby,
Jonatan Enström,
Ingemar Nilsson,
Anders Hogner,
Jonas Henriksson,
Johan Westin,
Farzad Faramarzi,
Philip Werner,
Jonas Boström
Publication year - 2016
Publication title -
future medicinal chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.708
H-Index - 69
eISSN - 1756-8927
pISSN - 1756-8919
DOI - 10.4155/fmc-2016-0081
Subject(s) - computer science , modular design , human–computer interaction , virtual screening , interface (matter) , 3d modeling , 3d model , web application , virtual reality , world wide web , drug discovery , software engineering , chemistry , artificial intelligence , biochemistry , bubble , maximum bubble pressure method , parallel computing , operating system
Aim: The use of 3D information has shown impact in numerous applications in drug design. However, it is often under-utilized and traditionally limited to specialists. We want to change that, and present an approach making 3D information and molecular modeling accessible and easy-to-use ‘for the people’. Methodology/results: A user-friendly and collaborative web-based platform (3D-Lab) for 3D modeling, including a blazingly fast virtual screening capability, was developed. 3D-Lab provides an interface to automatic molecular modeling, like conformer generation, ligand alignments, molecular dockings and simple quantum chemistry protocols. 3D-Lab is designed to be modular, and to facilitate sharing of 3D-information to promote interactions between drug designers. Recent enhancements to our open-source virtual reality tool Molecular Rift are described. Conclusion: The integrated drug-design platform allows drug designers to instantaneously access 3D information and readily apply advanced and automated 3D molecular modeling tasks, with the aim to improve decision-making in drug design projects.

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