Kormeier Benjamin, Hippe Klaus, Arrigo Patrizio, Töpel Thoralf, Janowski Sebastian, Hofestädt Ralf
Bioinformatics Department, Bielefeld University, PO Box 100131, 33501 Bielefeld, Germany.
J Integr Bioinform. 2010 Oct 27;7(2):428. doi: 10.2390/biecoll-jib-2010-146.
For the implementation of the virtual cell, the fundamental question is how to model and simulate complex biological networks. Therefore, based on relevant molecular database and information systems, biological data integration is an essential step in constructing biological networks. In this paper, we will motivate the applications BioDWH--an integration toolkit for building life science data warehouses, CardioVINEdb--a information system for biological data in cardiovascular-disease and VANESA--a network editor for modeling and simulation of biological networks. Based on this integration process, the system supports the generation of biological network models. A case study of a cardiovascular-disease related gene-regulated biological network is also presented.
对于虚拟细胞的实现,根本问题在于如何对复杂的生物网络进行建模和模拟。因此,基于相关分子数据库和信息系统,生物数据整合是构建生物网络的关键步骤。在本文中,我们将介绍BioDWH(一个用于构建生命科学数据仓库的集成工具包)、CardioVINEdb(一个心血管疾病生物数据信息系统)和VANESA(一个用于生物网络建模与模拟的网络编辑器)的应用。基于此整合过程,该系统支持生成生物网络模型。本文还给出了一个与心血管疾病相关的基因调控生物网络的案例研究。