Institute of Environmental Research at Greater Bay, Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou, 510006, China.
The Rutgers Center for Computational and Integrative Biology, Camden, NJ, 08102, USA.
Nat Commun. 2020 May 20;11(1):2519. doi: 10.1038/s41467-020-16413-3.
Modern nanotechnology research has generated numerous experimental data for various nanomaterials. However, the few nanomaterial databases available are not suitable for modeling studies due to the way they are curated. Here, we report the construction of a large nanomaterial database containing annotated nanostructures suited for modeling research. The database, which is publicly available through http://www.pubvinas.com/, contains 705 unique nanomaterials covering 11 material types. Each nanomaterial has up to six physicochemical properties and/or bioactivities, resulting in more than ten endpoints in the database. All the nanostructures are annotated and transformed into protein data bank files, which are downloadable by researchers worldwide. Furthermore, the nanostructure annotation procedure generates 2142 nanodescriptors for all nanomaterials for machine learning purposes, which are also available through the portal. This database provides a public resource for data-driven nanoinformatics modeling research aimed at rational nanomaterial design and other areas of modern computational nanotechnology.
现代纳米技术研究产生了大量各种纳米材料的实验数据。然而,现有的少数纳米材料数据库由于其编目方式并不适合建模研究。在这里,我们报告了一个大型纳米材料数据库的构建,该数据库包含适合建模研究的注释纳米结构。该数据库可通过 http://www.pubvinas.com/ 公开获取,其中包含 705 种独特的纳米材料,涵盖 11 种材料类型。每种纳米材料具有多达六种物理化学性质和/或生物活性,导致数据库中有超过十个端点。所有的纳米结构都经过注释并转化为蛋白质数据库文件,这些文件可供全球研究人员下载。此外,纳米结构注释过程为所有纳米材料生成了 2142 个纳米描述符,用于机器学习目的,也可通过门户获取。该数据库为基于数据的纳米信息学建模研究提供了一个公共资源,旨在实现合理的纳米材料设计和现代计算纳米技术的其他领域。