Haptic-driven applications to molecular modeling: state-of-the-art and perspectives

Author:

Ricci Antonio1,Anthopoulos Athanasios1,Massarotti Alberto2,Grimstead Ian3,Brancale Andrea4

Affiliation:

1. School of Pharmacy & Pharmaceutical Sciences, Cardiff University, Cardiff, CF10 3NB, UK

2. Dipartimento di Scienze del Farmaco, Università degli Studi del Piemonte Orientale ‘A. Avogadro’, Novara, Italy

3. School of Computer Science, Cardiff University, Cardiff, UK, CF24 3AA

4. School of Pharmacy & Pharmaceutical Sciences, Cardiff University, Cardiff, CF10 3NB, UK.

Abstract

Drug design is a creative process that combines different scientific expertise. With the development of increasingly powerful computers, disciplines such as molecular modeling and, in particular, drug design, are becoming an important component of drug discovery. However, modern software often limits the user interaction with the computer calculation, reducing the potential for researchers to use their knowledge in the design process. For this reason, interactive methodologies have been investigated in recent years. In particular, haptic-driven simulators offer the possibility for users to drive and control the modeling simulations, efficiently combining human knowledge and computational power. In this article, we will discuss the state-of-the-art and future perspectives of such methodologies.

Publisher

Future Science Ltd

Subject

Drug Discovery,Pharmacology,Molecular Medicine

Cited by 11 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Wielding the power of interactive molecular simulations;WIREs Computational Molecular Science;2021-12-14

2. Haptic-Assisted Interactive Molecular Docking Incorporating Receptor Flexibility;Journal of Chemical Information and Modeling;2019-04-10

3. Protein Structure Visualization;Encyclopedia of Bioinformatics and Computational Biology;2019

4. Virtual Environment for Studying the Docking Interactions of Rigid Biomolecules with Haptics;Journal of Chemical Information and Modeling;2017-05-03

5. Determination of locked interfaces in biomolecular complexes using Haptimol_RD;Biophysics and Physicobiology;2016

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