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探索虚拟现实化学空间中的 DrugBank。

Exploring DrugBank in Virtual Reality Chemical Space.

机构信息

Department of Chemistry and Biochemistry, National Center for Competence in Research NCCR TransCure , University of Berne , Freiestrasse 3 , 3012 Berne , Switzerland.

出版信息

J Chem Inf Model. 2018 Sep 24;58(9):1731-1735. doi: 10.1021/acs.jcim.8b00402. Epub 2018 Aug 24.

Abstract

The recent general availability of low-cost virtual reality headsets and accompanying three-dimensional (3D) engine support presents an opportunity to bring the concept of chemical space into virtual environments. While virtual reality applications represent a category of widespread tools in other fields, their use in the visualization and exploration of abstract data such as chemical spaces has been experimental. In our previous work, we established the concept of interactive two-dimensional (2D) maps of chemical spaces followed by interactive web-based 3D visualizations, culminating in the interactive web-based 3D visualization of extremely large chemical spaces. Virtual reality chemical spaces are a natural extension of these concepts. As 2D and 3D embeddings and projections of high-dimensional chemical fingerprint spaces have been shown to be valuable tools in chemical space visualization and exploration, existing pipelines of data mining and preparation can be extended to be used in virtual reality applications. Here we present an application based on the Unity engine and the Virtual Reality Toolkit, allowing for the interactive exploration of chemical space populated by DrugBank compounds in virtual reality. The source code of the application as well as the most recent build are available on GitHub ( https://github.com/reymond-group/virtual-reality-chemical-space ).

摘要

最近,低成本虚拟现实耳机和配套的三维 (3D) 引擎支持已经普及,这为将化学空间的概念引入虚拟环境提供了机会。虽然虚拟现实应用程序在其他领域是一类广泛使用的工具,但它们在可视化和探索化学空间等抽象数据方面的应用仍处于实验阶段。在我们之前的工作中,我们建立了化学空间的交互式二维 (2D) 地图的概念,随后是基于网络的交互式 3D 可视化,最终实现了极其庞大的化学空间的基于网络的交互式 3D 可视化。虚拟现实化学空间是这些概念的自然延伸。由于高维化学指纹空间的 2D 和 3D 嵌入和投影已被证明是化学空间可视化和探索的有价值的工具,现有的数据挖掘和准备管道可以扩展到虚拟现实应用中。在这里,我们展示了一个基于 Unity 引擎和虚拟现实工具包的应用程序,允许在虚拟现实中使用 DrugBank 化合物填充的化学空间进行交互式探索。该应用程序的源代码以及最新版本都可以在 GitHub 上获得 (https://github.com/reymond-group/virtual-reality-chemical-space)。

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