Sarajlić Anida, Pržulj Nataša
Department of Computing, Imperial College London, 180 Queen's Gate, South Kensington Campus, London SW72AZ, UK.
Biomed Res Int. 2014;2014:527029. doi: 10.1155/2014/527029. Epub 2014 Mar 20.
Cardiovascular diseases (CVDs) are the leading health problem worldwide. Investigating causes and mechanisms of CVDs calls for an integrative approach that would take into account its complex etiology. Biological networks generated from available data on biomolecular interactions are an excellent platform for understanding interconnectedness of all processes within a living cell, including processes that underlie diseases. Consequently, topology of biological networks has successfully been used for identifying genes, pathways, and modules that govern molecular actions underlying various complex diseases. Here, we review approaches that explore and use relationships between topological properties of biological networks and mechanisms underlying CVDs.
心血管疾病(CVDs)是全球首要的健康问题。研究心血管疾病的病因和机制需要一种综合方法,该方法应考虑到其复杂的病因。根据生物分子相互作用的现有数据生成的生物网络,是理解活细胞内所有过程(包括疾病背后的过程)相互联系的绝佳平台。因此,生物网络的拓扑结构已成功用于识别控制各种复杂疾病潜在分子作用的基因、途径和模块。在此,我们综述探索和利用生物网络拓扑特性与心血管疾病潜在机制之间关系的方法。